NMPFamsDB

NMPFamsDB

NMPFamsDB

A database of Novel Metagenome Protein Families

A database of Novel Metagenome Protein Clusters

A database of Novel Metagenome Protein Clusters
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Metagenome Family F074821

Metagenome Family F074821

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Overview Alignments Structure & Topology Phylogeny Ecosystems Sequences
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Overview

Basic Information
Family ID F074821
Family Type Metagenome
Number of Sequences 119
Average Sequence Length 222 residues
Representative Sequence SKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Number of Associated Samples 53
Number of Associated Scaffolds 119

Quality Assessment
Transcriptomic Evidence No
Most common taxonomic group Unclassified
% of genes with valid RBS motifs 0.00 %
% of genes near scaffold ends (potentially truncated) 96.64 %
% of genes from short scaffolds (< 2000 bps) 94.12 %
Associated GOLD sequencing projects 35
AlphaFold2 3D model prediction No

Note: High quality evidence is represented by blue. Low quality evidence is represented by red.
Hidden Markov Model
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Most Common Taxonomy
Group Unclassified (78.151 % of family members)
NCBI Taxonomy ID N/A
Taxonomy N/A

Most Common Ecosystem
GOLD Ecosystem Environmental → Aquatic → Marine → Coastal → Unclassified → Aqueous
(84.874 % of family members)
Environment Ontology (ENVO) Unclassified
(93.277 % of family members)
Earth Microbiome Project Ontology (EMPO) Free-living → Saline → Water (saline)
(86.555 % of family members)



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Multiple Sequence Alignments

Select alignment to view:      


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Structure & Topology

Predicted Secondary Structure and Topology

Predicted Topology & Secondary Structure
Classification: Globular Signal Peptide: No Secondary Structure distribution: α-helix: 12.95%    β-sheet: 45.09%    Coil/Unstructured: 41.96%
Feature Viewer
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Phylogeny

NCBI Taxonomy

Select NCBI taxonomy Level:
NameRankTaxonomyDistribution
UnclassifiedrootN/A78.15 %
All OrganismsrootAll Organisms21.85 %

Visualization
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Associated Scaffolds


ScaffoldTaxonomyLengthIMG/M Link
3300000116|DelMOSpr2010_c10105414All Organisms → Viruses → Predicted Viral1052Open in IMG/M
3300000116|DelMOSpr2010_c10116766Not Available971Open in IMG/M
3300006025|Ga0075474_10041991Not Available1570Open in IMG/M
3300006025|Ga0075474_10043943Not Available1528Open in IMG/M
3300006025|Ga0075474_10060022All Organisms → Viruses → Predicted Viral1272Open in IMG/M
3300006025|Ga0075474_10074581All Organisms → Viruses → Predicted Viral1118Open in IMG/M
3300006026|Ga0075478_10059339Not Available1246Open in IMG/M
3300006026|Ga0075478_10068956Not Available1146Open in IMG/M
3300006026|Ga0075478_10124113Not Available814Open in IMG/M
3300006026|Ga0075478_10127803Not Available800Open in IMG/M
3300006027|Ga0075462_10065603Not Available1145Open in IMG/M
3300006029|Ga0075466_1145296Not Available614Open in IMG/M
3300006637|Ga0075461_10067111All Organisms → Viruses → Predicted Viral1149Open in IMG/M
3300006637|Ga0075461_10202716Not Available593Open in IMG/M
3300006802|Ga0070749_10018041All Organisms → cellular organisms → Bacteria → FCB group → Bacteroidetes/Chlorobi group → Bacteroidetes → Cytophagia → Cytophagales → Hymenobacteraceae → Hymenobacter4492Open in IMG/M
3300006802|Ga0070749_10081293Not Available1934Open in IMG/M
3300006802|Ga0070749_10095019All Organisms → Viruses → Predicted Viral1767Open in IMG/M
3300006802|Ga0070749_10366525Not Available799Open in IMG/M
3300006810|Ga0070754_10089380Not Available1539Open in IMG/M
3300006810|Ga0070754_10141319All Organisms → Viruses → Predicted Viral1158Open in IMG/M
3300006810|Ga0070754_10356005Not Available647Open in IMG/M
3300006810|Ga0070754_10534232Not Available502Open in IMG/M
3300006868|Ga0075481_10349607Not Available511Open in IMG/M
3300006869|Ga0075477_10070903Not Available1524Open in IMG/M
3300006869|Ga0075477_10242237Not Available728Open in IMG/M
3300006869|Ga0075477_10252708Not Available709Open in IMG/M
3300006869|Ga0075477_10281916Not Available663Open in IMG/M
3300006870|Ga0075479_10077854Not Available1389Open in IMG/M
3300006870|Ga0075479_10097469Not Available1222Open in IMG/M
3300006874|Ga0075475_10070235Not Available1619Open in IMG/M
3300006874|Ga0075475_10180888Not Available911Open in IMG/M
3300006916|Ga0070750_10109357Not Available1276Open in IMG/M
3300006916|Ga0070750_10158489All Organisms → Viruses → Predicted Viral1021Open in IMG/M
3300006919|Ga0070746_10121196Not Available1292Open in IMG/M
3300006919|Ga0070746_10204746Not Available938Open in IMG/M
3300007344|Ga0070745_1115515All Organisms → Viruses → Predicted Viral1038Open in IMG/M
3300007344|Ga0070745_1213877Not Available708Open in IMG/M
3300007344|Ga0070745_1320875Not Available548Open in IMG/M
3300007345|Ga0070752_1121818All Organisms → Viruses → Predicted Viral1096Open in IMG/M
3300007345|Ga0070752_1141605Not Available995Open in IMG/M
3300007346|Ga0070753_1084633Not Available1254Open in IMG/M
3300007346|Ga0070753_1211251Not Available715Open in IMG/M
3300007346|Ga0070753_1219280Not Available698Open in IMG/M
3300007346|Ga0070753_1234054Not Available670Open in IMG/M
3300007346|Ga0070753_1249111Not Available645Open in IMG/M
3300007346|Ga0070753_1360744Not Available511Open in IMG/M
3300007539|Ga0099849_1271107Not Available619Open in IMG/M
3300007542|Ga0099846_1147421Not Available848Open in IMG/M
3300007640|Ga0070751_1134777Not Available997Open in IMG/M
3300007640|Ga0070751_1161939Not Available889Open in IMG/M
3300007640|Ga0070751_1198410Not Available781Open in IMG/M
3300007640|Ga0070751_1247704Not Available678Open in IMG/M
3300007640|Ga0070751_1266871Not Available646Open in IMG/M
3300007640|Ga0070751_1285407Not Available618Open in IMG/M
3300007960|Ga0099850_1132498Not Available1012Open in IMG/M
3300007960|Ga0099850_1361061Not Available543Open in IMG/M
3300008012|Ga0075480_10060260All Organisms → Viruses → Predicted Viral2200Open in IMG/M
3300008012|Ga0075480_10114963All Organisms → Viruses → Predicted Viral1494Open in IMG/M
3300008012|Ga0075480_10277206Not Available859Open in IMG/M
3300008012|Ga0075480_10281603Not Available850Open in IMG/M
3300010296|Ga0129348_1116347Not Available936Open in IMG/M
3300010299|Ga0129342_1302967Not Available549Open in IMG/M
3300010299|Ga0129342_1338838Not Available513Open in IMG/M
3300010300|Ga0129351_1043208All Organisms → Viruses → Predicted Viral1854Open in IMG/M
3300010300|Ga0129351_1154404Not Available905Open in IMG/M
3300010300|Ga0129351_1217725Not Available737Open in IMG/M
3300010318|Ga0136656_1086504Not Available1106Open in IMG/M
3300010368|Ga0129324_10409022Not Available523Open in IMG/M
3300010389|Ga0136549_10228929Not Available797Open in IMG/M
3300017813|Ga0188953_11809Not Available2569Open in IMG/M
3300017963|Ga0180437_10966022Not Available610Open in IMG/M
3300017987|Ga0180431_10422567Not Available943Open in IMG/M
3300018080|Ga0180433_10161052All Organisms → Viruses → Predicted Viral1861Open in IMG/M
3300018080|Ga0180433_10164057All Organisms → Viruses → Predicted Viral1839Open in IMG/M
3300018080|Ga0180433_10219046Not Available1538Open in IMG/M
3300021379|Ga0213864_10442099Not Available654Open in IMG/M
3300022057|Ga0212025_1051205Not Available712Open in IMG/M
3300022067|Ga0196895_1046711Not Available500Open in IMG/M
3300022068|Ga0212021_1029313Not Available1068Open in IMG/M
3300022071|Ga0212028_1020035All Organisms → Viruses → Predicted Viral1164Open in IMG/M
3300022167|Ga0212020_1029595Not Available912Open in IMG/M
3300022187|Ga0196899_1064408Not Available1159Open in IMG/M
3300022187|Ga0196899_1111243Not Available799Open in IMG/M
3300022187|Ga0196899_1114364Not Available784Open in IMG/M
3300022187|Ga0196899_1136759Not Available692Open in IMG/M
3300025610|Ga0208149_1083629Not Available783Open in IMG/M
3300025610|Ga0208149_1105720Not Available672Open in IMG/M
3300025655|Ga0208795_1102078Not Available767Open in IMG/M
3300025671|Ga0208898_1047531Not Available1585Open in IMG/M
3300025671|Ga0208898_1049441Not Available1538Open in IMG/M
3300025671|Ga0208898_1061782All Organisms → Viruses → Predicted Viral1294Open in IMG/M
3300025687|Ga0208019_1055013Not Available1359Open in IMG/M
3300025687|Ga0208019_1119719Not Available781Open in IMG/M
3300025687|Ga0208019_1165611Not Available610Open in IMG/M
3300025759|Ga0208899_1049749Not Available1802Open in IMG/M
3300025759|Ga0208899_1080158All Organisms → Viruses → Predicted Viral1276Open in IMG/M
3300025759|Ga0208899_1202721Not Available629Open in IMG/M
3300025769|Ga0208767_1023299All Organisms → Viruses → Predicted Viral3365Open in IMG/M
3300025769|Ga0208767_1058754All Organisms → Viruses → Predicted Viral1742Open in IMG/M
3300025769|Ga0208767_1252910Not Available549Open in IMG/M
3300025815|Ga0208785_1065228Not Available974Open in IMG/M
3300025828|Ga0208547_1035175All Organisms → Viruses → Predicted Viral1853Open in IMG/M
3300025828|Ga0208547_1092236Not Available947Open in IMG/M
3300025840|Ga0208917_1110213Not Available995Open in IMG/M
3300025840|Ga0208917_1261269Not Available551Open in IMG/M
3300025853|Ga0208645_1109059All Organisms → Viruses → Predicted Viral1128Open in IMG/M
3300025853|Ga0208645_1130064Not Available989Open in IMG/M
3300025889|Ga0208644_1075159All Organisms → Viruses → Predicted Viral1754Open in IMG/M
3300034374|Ga0348335_055334All Organisms → Viruses → Predicted Viral1496Open in IMG/M
3300034375|Ga0348336_052390Not Available1668Open in IMG/M
3300034375|Ga0348336_133278Not Available770Open in IMG/M
3300034375|Ga0348336_176134Not Available602Open in IMG/M
3300034418|Ga0348337_017642All Organisms → Viruses → Duplodnaviria → Heunggongvirae → Uroviricota → Caudoviricetes → Caudovirales → Siphoviridae → unclassified Siphoviridae → Synechococcus phage S-CBS43737Open in IMG/M
3300034418|Ga0348337_068387All Organisms → Viruses → Predicted Viral1305Open in IMG/M
3300034418|Ga0348337_076433Not Available1190Open in IMG/M
3300034418|Ga0348337_100227Not Available946Open in IMG/M
3300034418|Ga0348337_125887Not Available775Open in IMG/M



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Environmental Properties

Associated Habitat Types

Select Environment Taxonomy Level:
HabitatTaxonomyDistribution
AqueousEnvironmental → Aquatic → Marine → Coastal → Unclassified → Aqueous84.87%
Freshwater To Marine Saline GradientEnvironmental → Aquatic → Marine → Coastal → Unclassified → Freshwater To Marine Saline Gradient6.72%
Hypersaline Lake SedimentEnvironmental → Aquatic → Non-Marine Saline And Alkaline → Hypersaline → Sediment → Hypersaline Lake Sediment4.20%
MarineEnvironmental → Aquatic → Marine → Neritic Zone → Unclassified → Marine1.68%
SeawaterEnvironmental → Aquatic → Marine → Coastal → Unclassified → Seawater0.84%
Saline WaterEnvironmental → Aquatic → Non-Marine Saline And Alkaline → Unclassified → Unclassified → Saline Water0.84%
Marine Methane Seep SedimentEnvironmental → Aquatic → Sediment → Unclassified → Unclassified → Marine Methane Seep Sediment0.84%

Visualization
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Associated Samples

Taxon OIDSample NameHabitat TypeIMG/M Link
3300000116Marine microbial communities from Delaware Coast, sample from Delaware MO Spring March 2010EnvironmentalOpen in IMG/M
3300006025Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_22_D_<0.8_DNAEnvironmentalOpen in IMG/M
3300006026Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_29_D_<0.8_DNAEnvironmentalOpen in IMG/M
3300006027Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Fall_30_<0.8_DNAEnvironmentalOpen in IMG/M
3300006029Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Spr_20_<0.8_DNAEnvironmentalOpen in IMG/M
3300006637Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Fall_15_>0.8_DNAEnvironmentalOpen in IMG/M
3300006802Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Nov_18EnvironmentalOpen in IMG/M
3300006810Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Sep_01EnvironmentalOpen in IMG/M
3300006868Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_29_N_>0.8_DNAEnvironmentalOpen in IMG/M
3300006869Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_22_N_>0.8_DNAEnvironmentalOpen in IMG/M
3300006870Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_29_D_>0.8_DNAEnvironmentalOpen in IMG/M
3300006874Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_22_D_>0.8_DNAEnvironmentalOpen in IMG/M
3300006916Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Nov_24EnvironmentalOpen in IMG/M
3300006919Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Mar_21EnvironmentalOpen in IMG/M
3300007344Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Mar_4EnvironmentalOpen in IMG/M
3300007345Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Aug_30EnvironmentalOpen in IMG/M
3300007346Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Aug_31EnvironmentalOpen in IMG/M
3300007539Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_1M Viral MetaGEnvironmentalOpen in IMG/M
3300007542Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1504_1 Viral MetaGEnvironmentalOpen in IMG/M
3300007640Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Aug_28EnvironmentalOpen in IMG/M
3300007960Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_1D Viral MetaGEnvironmentalOpen in IMG/M
3300008012Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_29_N_<0.8_DNAEnvironmentalOpen in IMG/M
3300010296Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Sum_27_0.8_DNAEnvironmentalOpen in IMG/M
3300010299Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Sum_15_0.2_DNAEnvironmentalOpen in IMG/M
3300010300Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Sum_27_0.2_DNAEnvironmentalOpen in IMG/M
3300010318Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Sum_15_0.8_DNAEnvironmentalOpen in IMG/M
3300010368Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Spr_15_0.2_DNAEnvironmentalOpen in IMG/M
3300010389Marine sediment microbial communities from methane seeps within Baltimore Canyon, US Atlantic Margin - Baltimore Canyon MUC-11 12-14 cmbsfEnvironmentalOpen in IMG/M
3300017813Saline water viral communities from Saloum River inverse estuary, Senegal ? P2EnvironmentalOpen in IMG/M
3300017963Hypersaline lake sediment archaeal communities from the Salton Sea, California, USA - SS_3_D_1 metaGEnvironmentalOpen in IMG/M
3300017987Hypersaline lake sediment archaeal communities from the Salton Sea, California, USA - SS_1_MS_1 metaGEnvironmentalOpen in IMG/M
3300018080Hypersaline lake sediment archaeal communities from the Salton Sea, California, USA - SS_1_D_1 metaGEnvironmentalOpen in IMG/M
3300021379Coastal seawater microbial communities near Pivers Island, North Carolina, United States - PICO247EnvironmentalOpen in IMG/M
3300022057Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Aug_28 (v2)EnvironmentalOpen in IMG/M
3300022067Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Aug_30 (v3)EnvironmentalOpen in IMG/M
3300022068Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Mar_21 (v2)EnvironmentalOpen in IMG/M
3300022071Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Sep_01 (v2)EnvironmentalOpen in IMG/M
3300022167Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Mar_4 (v2)EnvironmentalOpen in IMG/M
3300022187Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Sep_01 (v3)EnvironmentalOpen in IMG/M
3300025610Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_29_D_<0.8_DNA (SPAdes)EnvironmentalOpen in IMG/M
3300025655Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_2 Viral MetaG (SPAdes)EnvironmentalOpen in IMG/M
3300025671Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Mar_4 (SPAdes)EnvironmentalOpen in IMG/M
3300025687Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_1D Viral MetaG (SPAdes)EnvironmentalOpen in IMG/M
3300025759Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Nov_24 (SPAdes)EnvironmentalOpen in IMG/M
3300025769Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Mar_21 (SPAdes)EnvironmentalOpen in IMG/M
3300025815Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_22_D_<0.8_DNA (SPAdes)EnvironmentalOpen in IMG/M
3300025828Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_22_N_<0.8_DNA (SPAdes)EnvironmentalOpen in IMG/M
3300025840Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - DEBay_Sum_22_D_>0.8_DNA (SPAdes)EnvironmentalOpen in IMG/M
3300025853Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Sep_01 (SPAdes)EnvironmentalOpen in IMG/M
3300025889Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Nov_18 (SPAdes)EnvironmentalOpen in IMG/M
3300034374Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Aug_31 (v4)EnvironmentalOpen in IMG/M
3300034375Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Aug_30 (v4)EnvironmentalOpen in IMG/M
3300034418Aqueous microbial communities from the Delaware River and Bay under freshwater to marine salinity gradient to study organic matter cycling in a time-series - Viral MetaG DEL_Aug_28 (v4)EnvironmentalOpen in IMG/M

Geographical Distribution
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Family Sequences

Protein ID Sample Taxon ID Habitat Sequence
DelMOSpr2010_1010541413300000116MarineRVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTIADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMSDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
DelMOSpr2010_1011676623300000116MarineDGAGVTEYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0075474_1004199113300006025AqueousALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075474_1004394323300006025AqueousNFKKHWLVFGCEFKSDGAGVTEYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0075474_1006002213300006025AqueousDQSPNPANFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDESNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075474_1007458123300006025AqueousKVTITNNGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTANKAIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075478_1005933913300006026AqueousEFAVLVEFDALQTFTTVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQDQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTAADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075478_1006895623300006026AqueousYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0075478_1012411313300006026AqueousQPNPLLDINLTVNYTSTDQSPSPGNFQKHWLVFGCEFKSDGIGTTQYYKREVTITNTGFEYSKPEWVTDSNARVEFPVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYDISGNQISLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQMVGTIADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMR
Ga0075478_1012780313300006026AqueousHDDSPQLFASLEDIDITQTNPLLDINLTVNYKSTDQSPNPANFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNNGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTANKAIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFP
Ga0075462_1006560313300006027AqueousEWTTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075466_114529613300006029AqueousLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTAADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075461_1006711113300006637AqueousSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQDQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTAADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075461_1020271613300006637AqueousTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQG
Ga0070749_1001804143300006802AqueousLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070749_1008129313300006802AqueousNFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNNGFEYSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNATIIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGLDWVNTTKWQVVGTTADKPIGQLTINEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070749_1009501913300006802AqueousYSKPEWTTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070749_1036652513300006802AqueousSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQSGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVESTNWQVVGTTADKPIGQLTVNETIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0070754_1008938023300006810AqueousGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATINFQILNLASVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070754_1014131923300006810AqueousFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDESNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070754_1035600513300006810AqueousTEYYSRKVTITSSGFEFSKPEWTTDSTARVEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLNIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSDWVDTTNWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNY
Ga0070754_1053423213300006810AqueousLQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENLYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPH
Ga0075481_1034960713300006868AqueousLNLPSVFDYLMGFELLRAYDLSGNSVSLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWNGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGG
Ga0075477_1007090313300006869AqueousSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075477_1024223713300006869AqueousSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDESNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075477_1025270813300006869AqueousDQSPNPANFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARIEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTAGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFSSTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLA
Ga0075477_1028191613300006869AqueousKVTITNNGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTANKAIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLM
Ga0075479_1007785413300006870AqueousLQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQDQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075479_1009746913300006870AqueousKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0075475_1007023523300006874AqueousYYSRKVTITSTGFEFSKPEWTTDSTARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQYAVDNDDFASTNYKTGTLIGQGPTQNSPGHLQIWDGSDWVQTTAWQVIGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGEWWKISDFS*
Ga0075475_1018088813300006874AqueousDQSPNPANFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070750_1010935723300006916AqueousSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQSGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVESTNWQVVGTTADKPIGQLTVNETIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0070750_1015848913300006916AqueousYSKPEWTTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTANKAIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070746_1012119623300006919AqueousVTEYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQSGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVESTNWQVVGTTADKPIGQLTVNETIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0070746_1020474623300006919AqueousKSDGAGVTEYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENLYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0070745_111551523300007344AqueousTDQSPNPANFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDESNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070745_121387723300007344AqueousLLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSEWVNTTSWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFIMNDAKANFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070745_132087513300007344AqueousARVEFAVLVEFDALQTFTTVNFQILNLPSIFDYLMGFELLRAYNLNGTEIYLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASSNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTSKWQVVGTTADKAIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAI
Ga0070752_112181813300007345AqueousGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070752_114160513300007345AqueousVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070753_108463313300007346AqueousANFQKHWLVFGCEFKSDGIGITQYYSRKVTITNNGFEYSKPEWVTDSNARIEFAVLVDFDDLQRFATVNFQILNLPSVFDYLMGFELLRAYNLSGTEIDLTPGITYLDIEWLIENVYVEFIATGYYKDQNDVYQYAADNDDFASSNYKTGTLIGQGPTQNSPGNLQVWDGSEWVNTTSWQEVGTVADKPIGQLTVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070753_121125113300007346AqueousTQYYSRKVTITNNGFEYSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQDQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTAADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKIS
Ga0070753_121928013300007346AqueousFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQG
Ga0070753_123405413300007346AqueousDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIQWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWNGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0070753_124911113300007346AqueousGVTEYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENLYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYK
Ga0070753_136074413300007346AqueousFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTANKAIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLM
Ga0099849_127110713300007539AqueousILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTIADKPIGQLTVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0099846_114742123300007542AqueousTSSGFEFSKPEWTTDSNARIEFPLLVEFDALQHFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0070751_113477723300007640AqueousWLVFGCEFKSDGAGVTEYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENLYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0070751_115357413300007640AqueousAHDDSPQLFASLEDIDITQTNPLLDINLTVNYTSTDQSLNPANFQKHWLVFGCEFKSDGVGVTQYYSRKVTITNNGFEYSKPEWTTDSSARIEFALLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070751_116193923300007640AqueousSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0070751_119841013300007640AqueousKSDGAGVTNYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIQWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWNGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0070751_124770413300007640AqueousLQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0070751_126687113300007640AqueousTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSN
Ga0070751_128540713300007640AqueousGAGVTEYYSRKVTITSSGFEFSKPEWTTDSNARVEFAILVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIYLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASSNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNSTYWQVVGVTADKPIGQLTVNEIIKGQLKPVEYFSGMTFIMNDAKGN
Ga0099850_113249813300007960AqueousFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0099850_136106113300007960AqueousKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTIADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDA
Ga0075480_1006026033300008012AqueousQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQDQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTAADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0075480_1011496313300008012AqueousKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0075480_1027720613300008012AqueousSDGIGTTQYYKREVTITNTGFEYSKPEWVTDSNARVEFPVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYDISGNQISLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTSKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNNPKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFRGDWWKISDFS*
Ga0075480_1028160313300008012AqueousEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0129348_111634723300010296Freshwater To Marine Saline GradientGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVYDGSDWVNTTNWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0129342_130296713300010299Freshwater To Marine Saline GradientQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTG
Ga0129342_133883813300010299Freshwater To Marine Saline GradientFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSEWVNTTSWQVVGTAADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHL
Ga0129351_104320813300010300Freshwater To Marine Saline GradientDGIGTTQYYSRKVTITNNGFEYSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWNGSDWVNTTSWQVVGTTADKAIGQLIVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0129351_115440413300010300Freshwater To Marine Saline GradientWTTDSTARVEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0129351_121772513300010300Freshwater To Marine Saline GradientTNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQDQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTIADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0136656_108650413300010318Freshwater To Marine Saline GradientYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDDLQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS*
Ga0129324_1040902213300010368Freshwater To Marine Saline GradientMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTIADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTIYLMRDEFT
Ga0136549_1022892913300010389Marine Methane Seep SedimentNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFIMNDASGNFLFPHLAIKYKGNYYVFQGGTINLMRDEFTGDWWKISDFS*
Ga0188953_1180933300017813Saline WaterYSKPEWTTDSSARVEFPVLVEFDALQTFVTVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTAGITYLSIEWQIENVYVEFVALGYYQQQNDIYQYAVDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQVVGTTADKPIGQLVVNELIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKSNYYVFQGGSINLMRDEFTGDWWKITDFS
Ga0180437_1096602213300017963Hypersaline Lake SedimentIGLNQYYLRKVTITNNGFEYSKPEWTTDSNARVEFAVLVEFDALQTLATVNFQIQNLPSKFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIFQYAVDNDDFASSNYKTGTLIGQGPTQNSPGNLQIWDGSEWVNTTNWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFIMNDAKG
Ga0180431_1042256723300017987Hypersaline Lake SedimentVEFDALQTLATVNFQIQNLPSKFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIFQYASDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSEWVNTTNWQVVGTTADKPIGQLTVNEIIKGQLKPIEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0180433_1016105213300018080Hypersaline Lake SedimentRVEFAVLVEFDALQTLATVNFQIQNLPGKFDYLMGFELLRAYNLSGTEIDLTPGITYLDIEWLIENVYVEFIATGYYKDQNDVYQYAADNDDLASTNYNTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTVADKPIGQLTVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTVNLMRDEFTGDWWKISDFS
Ga0180433_1016405723300018080Hypersaline Lake SedimentVLVEFDALQTLATVNFQIQNLPSKFDYLMGFELLRAYNLNGTEIDLTPGLTYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASSNYKTGTLIGQGPTQNSPGNLQIYDGSDWVNTTNWQVVGTTADKPIGQLTVNEIIKGQLKPIEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0180433_1021904623300018080Hypersaline Lake SedimentVLVEFDALQTLATVNFQIQNLPSKFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIFQYAADNDDFASSNYKTGTLIGQGPTQNSPGNLQIWDGSEWVNTTNWQVVGTTANKPIGQLTVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLSIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0213864_1044209923300021379SeawaterPSVFDYLMGFELLRAYNLSGTEIDLTPGITYLDIEWLIENVYVEFIATGYYKDQNDVYQYAADNDDFASSNYKTGTLIGQGPTQNSPGNLQIWDGSEWVNTTSWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0212025_105120513300022057AqueousRIEFAVLVEFDALQTFATINFQILNLASVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0196895_104671113300022067AqueousLNLPSVFDYLMGFELLRAYDISGNQISLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTSKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNNPKGNFLFPHLAIKYKSNYYV
Ga0212021_102931313300022068AqueousEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS
Ga0212028_102003513300022071AqueousKVTITNNGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTANKAIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0212020_102959523300022167AqueousDVTEYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS
Ga0196899_106440813300022187AqueousNFQILNLPSIFDYLMGFELLRAYNLNGTEIYLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASSNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTSKWQVVGTTADKAIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0196899_111124323300022187AqueousNYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIQWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWNGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS
Ga0196899_111436413300022187AqueousLVFGCEFKSDGIGTTQYYSRKVTITNNGFEYSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0196899_113675913300022187AqueousSRKVTITNNGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQDQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQVYDGSDWVNTTNWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDW
Ga0208149_108362913300025610AqueousDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS
Ga0208149_110572023300025610AqueousMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQYAVDNDDFASTNYKTGTLIGQGPTQNSPGHLQIWDGSDWVQTTAWQVIGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS
Ga0208795_110207813300025655AqueousNPLLDINLTVNYTSTDQSVNPANFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNNGFEYSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKN
Ga0208898_104753123300025671AqueousFDALQTFATINFQILNLASVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208898_104944123300025671AqueousFGCEFKSDGAGVTEYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS
Ga0208898_106178223300025671AqueousSTDQSPNPANFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDESNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208019_105501323300025687AqueousFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS
Ga0208019_109898723300025687AqueousTQTNPLLDINLTVNYTSTDQSANPANFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQDQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTAADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208019_111971913300025687AqueousASLEDIDITQPNPLLDINLTVNYTSTDQSVNPANFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNNGFEYSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTIADKPIGQLTVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHL
Ga0208019_116561113300025687AqueousEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTIADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYV
Ga0208899_104974923300025759AqueousFEYSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNATIIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGLDWVNTTKWQVVGTTADKPIGQLTINEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208899_108015813300025759AqueousYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208899_120272113300025759AqueousFGCEFKSDGAGVTEYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMND
Ga0208767_102329913300025769AqueousEYSKPEWTTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTANKAIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208767_105875413300025769AqueousEYSKPEWTTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208767_125291013300025769AqueousDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQYAVDNDDFASTNYKTGTLIGQGPTQNSPGHLQIWDGSDWVQTTAWQVIGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGG
Ga0208785_106522823300025815AqueousGCEFKSDGAGVTEYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS
Ga0208547_103517533300025828AqueousFATINFQILNLASVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208547_109223623300025828AqueousDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQDQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTAADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208917_111021313300025840AqueousEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENVYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS
Ga0208917_126126913300025840AqueousFATVNFQILNLPSVFDYLMGFELLRAYDISGNQISLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLM
Ga0208645_110905913300025853AqueousEFKSDGIGTTQYYSRKVTITNNGFEYSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTSWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208645_113006423300025853AqueousEFAVLVEFDALQTFATINFQILNLASVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0208644_107515923300025889AqueousIGTTQYYSRKVTITNNGFEYSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNATIIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGLDWVNTTKWQVVGTTADKPIGQLTINEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0348335_055334_706_14943300034374AqueousANFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0348336_052390_1016_16663300034375AqueousSSARVEFAVLVEFDALQTFATINFQILNLASVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0348336_133278_1_7683300034375AqueousNFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWK
Ga0348336_176134_2_6013300034375AqueousVTITNNGFEYSKPEWTTDSNARVEFAVLVEFDALQTFATVNFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTSKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNNPKGNFLFPHL
Ga0348337_017642_68_6103300034418AqueousMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDIYQYATDNDDFASTNYKTGTLIGQGPTQNSPGNLQVWDGSDWVNTTSWQVVGTVADKPIGQLAVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0348337_068387_3_7883300034418AqueousNFQKHWLVFGCEFKSDGIGTTQYYSRKVTITNTGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATVNFQILNLPSIFDYLMGFELLRAYNLNGTEIDLTIGITYLDIQWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSNWVNTTNWQLVGNTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0348337_076433_580_11223300034418AqueousMGFELLRAYNLSGTEIDLTPGITYLDIEWLIENVYVEFIATGYYKDQNDVYQYAADNDDFASSNYKTGTLIGQGPTQNSPGNLQVWDGSEWVNTTSWQEVGTVADKPIGQLTVNEIIKGQLKPVEYFSGMTFIMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0348337_100227_1_8013300034418AqueousSPNPANFQKHWLVFGCEFKSDGIGTTQYYSKKVTITNNGFEYSKPEWTTDSSARVEFAVLVEFDALQTFATINFQILNLPSVFDYLMGFELLRAYNLNGTEIDLTPGITYLDIEWQIENVYVEFIALGYYQEQNDVYQYAADNDDFASTNYKTGTLIGQGPTQNSPGNLQIWDGSDWVNTTNWQLVGNTANKAIGQLTVNEIIKGQLKPVEYFSGMTFVMNDAKGNFLFPHLAIKYKSNYYVFQGGTINLMRDEFTGDWWKISDFS
Ga0348337_125887_56_7753300034418AqueousYYSRKVTITSSGFEFSKPEWTTDSNARIEFPLLVEFDALQQFATVNFQILNLPSVFDYLMGFELLRAYDLSGNSISLQAGITYLDIEWQIENLYVEFVALGYYQQQNDIYQFAVDNDDFASTNYKTGTLIGQGPTQNSPGHLEIWDGSEWVETTKWQVVGTTADKPIGQLTVNEIIKGQLKPVEYFSGMTFVMNDPVNNFLFPHLAIKYKNNYYVFQGGEINLMRDEFTGDWWKISDFS


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