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 / Metatranscriptome Family F088550

Metagenome / Metatranscriptome Family F088550

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Overview Alignments Structure & Topology Gene Neighborhood Phylogeny Ecosystems Sequences
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Overview

Basic Information
Family ID F088550
Family Type Metagenome / Metatranscriptome
Number of Sequences 109
Average Sequence Length 188 residues
Representative Sequence RKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSLYNAALEGYYKCTITQTALSSAGNFNNCSIMFDYVYHLSIQSAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPIFVLYPNQSAGETMPIEVRLTKLDF
Number of Associated Samples 40
Number of Associated Scaffolds 109

Quality Assessment
Transcriptomic Evidence Yes
Most common taxonomic group Unclassified
% of genes with valid RBS motifs 1.90 %
% of genes near scaffold ends (potentially truncated) 95.41 %
% of genes from short scaffolds (< 2000 bps) 69.72 %
Associated GOLD sequencing projects 27
AlphaFold2 3D model prediction Yes
3D model pTM-score0.76

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 (80.734 % of family members)
NCBI Taxonomy ID N/A
Taxonomy N/A

Most Common Ecosystem
GOLD Ecosystem Environmental → Aquatic → Marine → Coastal → Unclassified → Aqueous
(88.073 % of family members)
Environment Ontology (ENVO) Unclassified
(95.413 % of family members)
Earth Microbiome Project Ontology (EMPO) Free-living → Saline → Water (saline)
(84.404 % of family members)



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Multiple Sequence Alignments

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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: 1.52%    β-sheet: 31.47%    Coil/Unstructured: 67.01%
Feature Viewer
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Predicted 3D Structure

Structure Viewer
Per-residue confidence (pLDDT):
  0-50   51-70   71-90   91-100  
pTM-score: 0.76
Powered by PDBe Molstar

Structural matches with SCOPe domains

SCOP familySCOP domainRepresentative PDBTM-score
b.32.1.1: gp9d1qexa_1qex0.53261
b.121.4.0: automated matchesd3cjia_3cji0.52367
d.171.1.1: Fibrinogen C-terminal domain-liked1lwuc11lwu0.50721
d.171.1.0: automated matchesd6euaa16eua0.50467
d.171.1.0: automated matchesd2wnpf_2wnp0.50323


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Gene Neighborhood

Neighboring Pfam domains

Pfam IDName % Frequency in 109 Family Scaffolds
PF01764Lipase_3 7.34
PF02511Thy1 6.42
PF00692dUTPase 3.67
PF08706D5_N 0.92
PF01541GIY-YIG 0.92
PF03175DNA_pol_B_2 0.92

Neighboring Clusters of Orthologous Genes (COGs)

COG IDNameFunctional Category % Frequency in 109 Family Scaffolds
COG1351Thymidylate synthase ThyX, FAD-dependent familyNucleotide transport and metabolism [F] 6.42
COG0717dCTP deaminaseNucleotide transport and metabolism [F] 3.67
COG0756dUTP pyrophosphatase (dUTPase)Defense mechanisms [V] 3.67


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Phylogeny

NCBI Taxonomy

Select NCBI taxonomy Level:
NameRankTaxonomyDistribution
UnclassifiedrootN/A80.73 %
All OrganismsrootAll Organisms19.27 %

Visualization
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Associated Scaffolds


ScaffoldTaxonomyLengthIMG/M Link
3300006802|Ga0070749_10032973Not Available3218Open in IMG/M
3300006802|Ga0070749_10034169Not Available3151Open in IMG/M
3300006802|Ga0070749_10041439Not Available2830Open in IMG/M
3300006802|Ga0070749_10270425Not Available958Open in IMG/M
3300006810|Ga0070754_10011387All Organisms → cellular organisms → Bacteria → PVC group → Planctomycetes → Phycisphaerae → unclassified Phycisphaerae → Phycisphaerae bacterium5559Open in IMG/M
3300006810|Ga0070754_10026795All Organisms → cellular organisms → Bacteria3275Open in IMG/M
3300006810|Ga0070754_10053532All Organisms → cellular organisms → Bacteria2121Open in IMG/M
3300006810|Ga0070754_10073734Not Available1738Open in IMG/M
3300006810|Ga0070754_10123498Not Available1259Open in IMG/M
3300006810|Ga0070754_10145895Not Available1135Open in IMG/M
3300006810|Ga0070754_10183693Not Available983Open in IMG/M
3300006810|Ga0070754_10209750Not Available904Open in IMG/M
3300006810|Ga0070754_10517868Not Available512Open in IMG/M
3300006810|Ga0070754_10537266Not Available501Open in IMG/M
3300006868|Ga0075481_10087887Not Available1162Open in IMG/M
3300006868|Ga0075481_10208151Not Available698Open in IMG/M
3300006868|Ga0075481_10236290Not Available647Open in IMG/M
3300006870|Ga0075479_10163026Not Available907Open in IMG/M
3300006874|Ga0075475_10256687Not Available732Open in IMG/M
3300006916|Ga0070750_10176788Not Available955Open in IMG/M
3300006916|Ga0070750_10213979Not Available848Open in IMG/M
3300007234|Ga0075460_10206660Not Available667Open in IMG/M
3300007344|Ga0070745_1002820All Organisms → cellular organisms → Bacteria9163Open in IMG/M
3300007344|Ga0070745_1016257All Organisms → cellular organisms → Bacteria3387Open in IMG/M
3300007344|Ga0070745_1081208Not Available1288Open in IMG/M
3300007344|Ga0070745_1095137Not Available1170Open in IMG/M
3300007344|Ga0070745_1107745All Organisms → cellular organisms → Bacteria1084Open in IMG/M
3300007344|Ga0070745_1157269Not Available858Open in IMG/M
3300007344|Ga0070745_1163867Not Available836Open in IMG/M
3300007344|Ga0070745_1170253Not Available817Open in IMG/M
3300007345|Ga0070752_1061053Not Available1695Open in IMG/M
3300007345|Ga0070752_1067935All Organisms → cellular organisms → Bacteria1585Open in IMG/M
3300007346|Ga0070753_1002200All Organisms → cellular organisms → Bacteria10468Open in IMG/M
3300007346|Ga0070753_1003916All Organisms → cellular organisms → Bacteria7690Open in IMG/M
3300007539|Ga0099849_1101921Not Available1144Open in IMG/M
3300007539|Ga0099849_1132139Not Available976Open in IMG/M
3300007539|Ga0099849_1291798Not Available590Open in IMG/M
3300007539|Ga0099849_1301029Not Available579Open in IMG/M
3300007539|Ga0099849_1368008Not Available509Open in IMG/M
3300007640|Ga0070751_1008518Not Available5358Open in IMG/M
3300007640|Ga0070751_1012801All Organisms → cellular organisms → Bacteria4204Open in IMG/M
3300007640|Ga0070751_1022131All Organisms → cellular organisms → Bacteria3031Open in IMG/M
3300007640|Ga0070751_1196614Not Available786Open in IMG/M
3300007640|Ga0070751_1278409Not Available628Open in IMG/M
3300007640|Ga0070751_1331503Not Available561Open in IMG/M
3300007640|Ga0070751_1370667Not Available521Open in IMG/M
3300007778|Ga0102954_1108524Not Available783Open in IMG/M
3300008012|Ga0075480_10049162Not Available2478Open in IMG/M
3300008012|Ga0075480_10077350Not Available1898Open in IMG/M
3300008012|Ga0075480_10602686Not Available520Open in IMG/M
3300009001|Ga0102963_1353900Not Available576Open in IMG/M
3300009027|Ga0102957_1296974Not Available591Open in IMG/M
3300010296|Ga0129348_1063977Not Available1316Open in IMG/M
3300010296|Ga0129348_1314218Not Available522Open in IMG/M
3300010300|Ga0129351_1061154Not Available1534Open in IMG/M
3300010318|Ga0136656_1136669Not Available844Open in IMG/M
3300010318|Ga0136656_1168452Not Available744Open in IMG/M
3300012520|Ga0129344_1388248Not Available511Open in IMG/M
3300017744|Ga0181397_1091012Not Available808Open in IMG/M
3300017781|Ga0181423_1180781Not Available804Open in IMG/M
3300020595|Ga0206126_10349889Not Available659Open in IMG/M
3300021960|Ga0222715_10531420Not Available619Open in IMG/M
3300022057|Ga0212025_1035789All Organisms → cellular organisms → Bacteria845Open in IMG/M
3300022057|Ga0212025_1062716Not Available642Open in IMG/M
3300022057|Ga0212025_1089762Not Available527Open in IMG/M
3300022071|Ga0212028_1003206Not Available2116Open in IMG/M
3300022168|Ga0212027_1029250Not Available733Open in IMG/M
3300022168|Ga0212027_1044641Not Available565Open in IMG/M
3300022187|Ga0196899_1022170Not Available2319Open in IMG/M
3300022187|Ga0196899_1077284Not Available1025Open in IMG/M
3300022187|Ga0196899_1147548Not Available656Open in IMG/M
3300025653|Ga0208428_1110055Not Available769Open in IMG/M
3300025671|Ga0208898_1012599All Organisms → cellular organisms → Bacteria4112Open in IMG/M
3300025671|Ga0208898_1046564Not Available1612Open in IMG/M
3300025671|Ga0208898_1053272Not Available1453Open in IMG/M
3300025671|Ga0208898_1095934Not Available914Open in IMG/M
3300025671|Ga0208898_1103334All Organisms → cellular organisms → Bacteria860Open in IMG/M
3300025671|Ga0208898_1109115Not Available824Open in IMG/M
3300025674|Ga0208162_1081099Not Available1004Open in IMG/M
3300025674|Ga0208162_1148002Not Available646Open in IMG/M
3300025769|Ga0208767_1164645Not Available789Open in IMG/M
3300025769|Ga0208767_1171756Not Available762Open in IMG/M
3300025769|Ga0208767_1261029Not Available533Open in IMG/M
3300025818|Ga0208542_1139427Not Available667Open in IMG/M
3300025853|Ga0208645_1016490All Organisms → cellular organisms → Bacteria4234Open in IMG/M
3300025853|Ga0208645_1019624All Organisms → cellular organisms → Bacteria3760Open in IMG/M
3300025853|Ga0208645_1072978Not Available1521Open in IMG/M
3300025853|Ga0208645_1108696Not Available1131Open in IMG/M
3300025853|Ga0208645_1142961Not Available921Open in IMG/M
3300025889|Ga0208644_1053614Not Available2218Open in IMG/M
3300025889|Ga0208644_1360852Not Available550Open in IMG/M
3300034374|Ga0348335_008668Not Available5832Open in IMG/M
3300034374|Ga0348335_012454Not Available4546Open in IMG/M
3300034374|Ga0348335_014061All Organisms → cellular organisms → Bacteria4173Open in IMG/M
3300034374|Ga0348335_022750All Organisms → cellular organisms → Bacteria2955Open in IMG/M
3300034374|Ga0348335_069144Not Available1246Open in IMG/M
3300034374|Ga0348335_113300All Organisms → Viruses → Duplodnaviria → Heunggongvirae → Uroviricota → Caudoviricetes → environmental samples → uncultured Caudovirales phage821Open in IMG/M
3300034375|Ga0348336_015700All Organisms → cellular organisms → Bacteria4192Open in IMG/M
3300034375|Ga0348336_023965Not Available3056Open in IMG/M
3300034418|Ga0348337_009914Not Available5606Open in IMG/M
3300034418|Ga0348337_010715Not Available5310Open in IMG/M
3300034418|Ga0348337_022035Not Available3175Open in IMG/M
3300034418|Ga0348337_055324All Organisms → cellular organisms → Bacteria1557Open in IMG/M
3300034418|Ga0348337_057118Not Available1517Open in IMG/M
3300034418|Ga0348337_060842Not Available1439Open in IMG/M



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Environmental Properties

Associated Habitat Types

Select Environment Taxonomy Level:
HabitatTaxonomyDistribution
AqueousEnvironmental → Aquatic → Marine → Coastal → Unclassified → Aqueous88.07%
Freshwater To Marine Saline GradientEnvironmental → Aquatic → Marine → Coastal → Unclassified → Freshwater To Marine Saline Gradient4.59%
SeawaterEnvironmental → Aquatic → Marine → Strait → Unclassified → Seawater2.75%
Pond WaterEnvironmental → Aquatic → Non-Marine Saline And Alkaline → Saline → Unclassified → Pond Water1.83%
Estuarine WaterEnvironmental → Aquatic → Marine → Unclassified → Unclassified → Estuarine Water0.92%
SeawaterEnvironmental → Aquatic → Marine → Pelagic → Unclassified → Seawater0.92%
WaterEnvironmental → Aquatic → Non-Marine Saline And Alkaline → Saline → Unclassified → Water0.92%

Visualization
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Associated Samples

Taxon OIDSample NameHabitat TypeIMG/M Link
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
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
3300007234Aqueous 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
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
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
3300007778Water microbial communities from South San Francisco under conditions of wetland restoration - Salt Pond MetaG R2A_C_H2O_MGEnvironmentalOpen 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
3300009001Salt pond water microbial communities from South San Francisco under conditions of wetland restoration - Salt Pond MetaG SF2_C_H2O_MGEnvironmentalOpen in IMG/M
3300009027Salt pond water microbial communities from South San Francisco under conditions of wetland restoration - Salt Pond MetaG SF2_A_H2O_MGEnvironmentalOpen in IMG/M
3300010296Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Sum_27_0.8_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
3300012520Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Sum_15_0.2_RNA2 (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300017744Marine viral communities from the oligotrophic San Pedro Time Series (SPOT) site, San Pedro Channel, CA, USA ? 20 SPOT_SRF_2011-02-23EnvironmentalOpen in IMG/M
3300017767Marine viral communities from the oligotrophic San Pedro Time Series (SPOT) site, San Pedro Channel, CA, USA ? 29 SPOT_SRF_2011-12-20EnvironmentalOpen in IMG/M
3300017781Marine viral communities from the oligotrophic San Pedro Time Series (SPOT) site, San Pedro Channel, CA, USA ? 46 SPOT_SRF_2013-08-14EnvironmentalOpen in IMG/M
3300020595Pelagic subsurface seawater microbial communities from Kabeltonne, Helgoland, North Sea - Helgoland_Spring_Bloom_20160412_1EnvironmentalOpen in IMG/M
3300021960Estuarine water microbial communities from San Francisco Bay, California, United States - C33_9DEnvironmentalOpen 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
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
3300022168Aqueous 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 (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
3300025653Aqueous 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_DNA (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
3300025674Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_1M Viral MetaG (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
3300025818Aqueous 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_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
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
Ga0070749_1003297363300006802AqueousAGLLTVKKTSVDLGTSIPLNFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWIRVNDNTSVSMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSANETMQIEVRLTKLNF*
Ga0070749_1003416953300006802AqueousESGNNLLIDQNDANSETQVRDNTNNPIVSFRKTAVVVSNPLPLQFGAYSFRPIQYTLNRTITIAASADTSTFTNMAFNCRTDTWTNVNTNQSVSLYNGALEGFYKCTISQIGASSSGNFNTCDIMFDYVFHLSLQTSPDINFTPSFNYRIKPSNQSPPTIRVDHTNTPSQSQPVFVLYPNQSSNETMDITVRLTHLNF*
Ga0070749_1004143923300006802AqueousDNSNNPIVSFRKTAVVISNPLPIQFGAYNFRPIQYKLNRTITIAAAADTSNFTNMAFNCQSDTWTNVNTNQSISMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDITEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPIFVLYPNQSAGETMDIEVRLTKLDY*
Ga0070749_1027042523300006802AqueousGEGIFFGTTGVHNNITESGNNLLIDQNDATSETQIRDNSNNPIVSFRKTAVVVSNPLPIEFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSMYNVAYEGYYKCTISQIGASSSGNFDTCDIMFDYVYHLSIQTSPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMQVEIRLTKLDF*
Ga0070754_1001138753300006810AqueousETQIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYRLTRTLTIAATPDTTNFTNMAFNCQSDTWTRVNDNTSVSMYNLALEGYYKCTITQTADSSSGNFSACDLMFDYILHLSIQTAPDIDITEPSFNYRKKPSNQARPTIEIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF*
Ga0070754_1002679513300006810AqueousNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAQNADTTNFTNMAFNCQSDTWTNVNTGLPISMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVAEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF*
Ga0070754_1005353213300006810AqueousNDAASETQIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFIPIQYKLNRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNAALEGYYKCTISQTGASSSNNFNTCDIMFDYVYRLSTQASPDITITPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYQNQSAGETMPIEVRLTKLDF*
Ga0070754_1007373413300006810AqueousTGTDTNNLVITAGDGANAEIRFKNNSGVDIANIRDTALVLANPIPLQFGAYSFRPIQYKLNKTLTIAAAADTVNFTNMAFNCQSDTWLNVNTNQNVSMYNVLLEGYYKVTITQTGDSSAGNFIACDLMFDYVYHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNNPAQSQPVFVLYPNQSAGETMPIEVRLTFLNY*
Ga0070754_1012349813300006810AqueousNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPTSLYNGALEGYYKVTISQTGPSSSNNFNTCDIMFDYVYHLSTQASPDITLTPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYPNQSAGETMPIEVRLTHLHF*
Ga0070754_1014589513300006810AqueousETNNLLVKIGSTNGTIKFQNQSGTNLMLVEESNVTNKGRLFIGEAIYFGTTGIHNSIAESGNNLLIDQNDANSETQIRDNTNNPIVSFRKTGVVIANPLPIQFGAYSFRPIQYKLNKTLTIAAAADTTNFTNMAFNCQSDTWTVVNTNQSISLYNVALEGYYKCTISQIGSSSAGNFDTCDIMFDYVFHLSIQTAPDIDITEPAFNYRKKPTNQASPTIRIDHLNTPPQSQPVFVLYPNQSAGETMQIEVRLTQLNF*
Ga0070754_1018369323300006810AqueousFFGTTGVHNNITESGNNLLIDQNDATSETQIRDNSNNPIVSFRKTAVVVSNPLPIEFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSMYNVAYEGYYKCTISQIGASSSGNFDTCDIMFDYVYHLSIQTSPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMQVEIRLTKLDF*
Ga0070754_1020975033300006810AqueousASSSSETQIRDNGNTPIVSFRKTEVVLANNIPLNYGLLSTLPTQYVLNKSITIESNADITNFGNMAFNCRSDTWTRVNDGASVSLYNALLEGNYKCVVQQTALSSNGNFNNCSIMFDYVYRLSIQTAPDIDITEPAFNYQKKPLNQARPTIRIDHLNTPIQSQPVYVLYPNQNQNPPETMAIQVRLTSLFY*
Ga0070754_1051786813300006810AqueousGNNLLIDQNDAASETQIRDNSNNPIVSFRKTAVVVSNPLPIEFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSLYNAALEGYYKCTITQTALSSAGNFNNCSIMFDYVYHLSIQSAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQS
Ga0070754_1053726613300006810AqueousDNQGGQIIRIRKTQVEFKENIPILFGALPFQPIQYRLTRTLTIAANADTTNFTNMAFNCRSDTWTKVNDGSTMSMYNVLLEGYYKCTITQTADSSSSNFSACDLMFDYILHLSIQTAPDIDITEPSFNYRKKPTNQARPTIRIDHLNNPVQSQPVFVLYPNQSAGET
Ga0075481_1008788713300006868AqueousVYFKQATEFHEFIFEDNSGGQIIRIRKTQVEFKENIPILFGALPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY*
Ga0075481_1020815113300006868AqueousGTNLMLLEEASATNKGRIYIGEGIFFGTTGIHNNITESGNNLLIDQNDASSETQIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSMYNASLEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVAEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTK
Ga0075481_1023629013300006868AqueousTNGNRIYQLRNGLTNLNVYFKQATEFHEFIFEDNSGGQIIRIRKTQVEFKENIPILFGALPFQPIQYKLTRTITIAAAADTTNFTNMAFNCQSDTWTKVNDGASMTMYNALLEGYYKVTITQTAASSSNNFSNCDIMFDYVYRLSIQTAPDIDVTEPAFNYRKKPTNQARPTIRIDHLNNPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF*
Ga0075479_1016302623300006870AqueousRIRKTQVEFKENIPILFGALPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY*
Ga0075475_1025668713300006874AqueousTFYTGTGGNSFYLKQDRVGANSADPLQIKAPSATASVNFKDNLNGDILVIKNNSIDLKTTAPINFGLYAFRPVQYILNRTLTIAAAADTTNFTNRAFNCQSDTWAVVNTGVTGVSLYNALLEGVYKCVIEQTGSSSSGNFEANTLVFDYILRLSTQTDPDIAISQPGFNYRKKPTNQARPTIEIDHLNTPVQSQPVFVLYPNQSAGETMPIQVRLTKMDY*
Ga0070750_1017678823300006916AqueousMLVEEASATNKGRIYIGEGIFFGTTGVHNNITESGNNLLIDQNDATSETQIRDNSNNPIVSFRKTAVVVSNPLPIEFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNGALEGYYKCTISQIGASSGSLFNTCDIMFDYIYRLSTQTGPDIDFTPAFNYRIKPSNQSPPTIKIDHLNSSQSQPVFVLYPNQSAG
Ga0070750_1021397923300006916AqueousGTNIPLNFGAYSFRPIQYKLTRTLTIAATPDTTNFTNMAFNCQSDTFTRVNDNTSVSLYNVLLEGYYKCTITQTADSSSNNFSACDLMFDYILHLSIQTAPDIDITEPAFNYRKKPTNQARPTIEINHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF*
Ga0075460_1020666013300007234AqueousIRFKNNSGADIANIRETAIVLANPIPLQFGAYSFRPVQYKLTKTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSISMYNAALEGYYKCTITQTALSSAGNFNKCDIMFDYIYHLSIQTAPDIDVTEPAFNYQAKPSNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMAIEVRLTKLDF*
Ga0070745_100282013300007344AqueousTEFHEFIFEDNQGGQIIRIRKTQVGFKENIPILFGALPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY*
Ga0070745_101625773300007344AqueousNIGAGLLTVKKTSVDLGTSIPLNFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWIRVNDNTSVSMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMQVEIRLTKVDF*
Ga0070745_108120813300007344AqueousETQIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPTSLYNGALEGYYKVTISQTGPSSSNNFNTCDIMFDYVYHLSTQASPDITLTPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYPNQSAGETMPIEVRLTHLHF*
Ga0070745_109513723300007344AqueousSASDFVIEKPKSGAETNNLLVKIGSTNGTIKFQNQSGTNLMLVEESNVTNKGRLFIGEAIYFGTTGIHNSIAESGNNLLIDQNDANSETQIRDNTNNPIVSFRKTGVVIANPLPIQFGAYSFRPIQYKLNKTLTIAAAADTTNFTNMAFNCQSDTWTVVNTNQSISLYNVALEGYYKCTISQIGSSSAGNFDTCDIMFDYVFHLSIQTAPDIDITEPAFNYRKKPTNQASPTIRIDHLNTPPQSQPVFVLYPNQSAGETMQIEVRLTQLNF*
Ga0070745_110774523300007344AqueousEEASATNKGRLYIGEGVFFGTTGIHNNITESGNNLLIDQNDAASETQIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFIPIQYKLNRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNAALEGYYKCTISQTGASSSNNFNTCDIMFDYVYRLSTQASPDITITPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYQNQSAGETMPIEVRLTKLDF*
Ga0070745_115726923300007344AqueousRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSLYNAALEGYYKCTITQTALSSAGNFNNCSIMFDYVYHLSIQSAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPIFVLYPNQSAGETMPIEVRLTKLDF*
Ga0070745_116386713300007344AqueousNKGRIYIGEGIFFGTTGVHNNITESGNNLLIDQNDATSETQIRDNSNNPIVSFRKTAVVVSNPLPIEFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSMYNVAYEGYYKCTISQIGASSSGNFDTCDIMFDYVYHLSIQTSPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMQVEIRLTKLDF*
Ga0070745_117025313300007344AqueousNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAQNADTTNFTNMAFNCQSDTWTNVNTGLPISLYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVAEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYQNQSAGETMPIEVRLTKLDF*
Ga0070752_106105323300007345AqueousQYRLTRTLTIAAAADTTNFTNMAFNCQSDTWTVVNTNQSISLYNVALEGYYKCTISQIGSSSAGNFDTCDIMFDYVFHLSIQTAPDIDITEPAFNYRKKPTNQASPTIRIDHLNTPPQSQPVFVLYPNQSAGETMQIEVRLTQLNF*
Ga0070752_106793513300007345AqueousNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPTSLYNGALEGYYKVTISQTGPSSSNNFNTCDIMFDYVYHLSTQASPDITLTPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYQNQSAGETMPIEVRLTKLDF*
Ga0070752_122226723300007345AqueousQFGAYSFRPIQYTLNRTITIAASADTSTFTNMAFNCRTDTWTNVNTNQSVSLYNGALEGFYKCTISQIGASSSGNFNTCDIMFDYVFHLSLQTSPDINFTPAFNYRIKPSNQSPPTIRIDHTNVPTQSQPVYVLYPNQSAGETMDITVRLTHLDF*
Ga0070753_1002200133300007346AqueousDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFIPIQYKLNRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNAALEGYYKCTISQTGASSSNNFNTCDIMFDYVYRLSTQASPDITITPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYQNQSAGETMPIEVRLTKLDF*
Ga0070753_1003916143300007346AqueousIQYKLTRTITIAAAADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY*
Ga0099849_110192123300007539AqueousLNLGVNSASDFVIEKPKSGAETNNLLVKIGSTNGTIKFQNQSGTNLMLVEESNVTNKGRLFIGEAIYFGTTGIHNSIAESGNNLLIDQNDANSETQIRDNTNNPIVSFRKTGVVIANPLPIQFGAYSFRPIQYKLNKTLTIAAAADTTNFTNMAFNCQSDTWTVVNTNQSISLYNVALEGYYKCTISQIGSSSAGNFDTCDIMFDYVFHLSIQTAPDIDITEPAFNYRKKPTNQASPTIRIDHLNTPPQSQPVFVLYPNQSAGETMQIEVRLTQLNF*
Ga0099849_113213913300007539AqueousLNLGVNSASDFVIEKPKSGAETNNLLVKIGSTNGTIKFQNQSGTNLMLLEEASATNKGRIYIGEGIFFGTTGIHNNITESGNNLLIDQNDASSETLIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNGALEGYYKVTISQTGPSSSNIFNTCDIMFDYVYRLSTQASPDITLTPSFNYRIKPTNQNPPTIEIDHDGGTQSQPVFVLYPNQSAGETMPIEVRLTKLDF*
Ga0099849_115187113300007539AqueousDTTNFTNMAFNCQSDTWTNVNTGLPISMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVAEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF*
Ga0099849_129179813300007539AqueousFIFEDNSGGQIIRIRKTQVEFKENMPILFGALPFQPIQYKLTRTLTIAASADTTNFTNMAFNCQSDTWTKVNDGTSVSMYNILLEGYYKCTITQTADSSSNNFSACDLMFDYILHLSIQTAPDIDITEPSFNYRKKPTNQARPTIRIDHLNNPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY*
Ga0099849_130102913300007539AqueousNNPIVSFKKTEVVLGTNIPLNYGLYSTRPIQYKLTRTLTISSTPDTSNFTNMAFNCQSDTWIRVNDNASVSMYNILLEGYYKCTITQTADSSSGNFSACDIMFDYILHLSIQTAPDIDISEPAFNYRKKPTNQARPTIEIDHLNTPVQSQPVFVLYPNQSAGETMDIEVRLTKLDF*
Ga0099849_136800813300007539AqueousTRTLTIAANSDTTNFTNMAFNCQSDTWTVVNTGATGVSMYNALLEGVYKCVIEQTGSSSSGNFEFNTLVFDYVFRLSTQTDPDIIITEPFYGYRIKPTNQARPTVEIDHFNTPVQSQPVFVRYPNQSAGETMPIQVRLTKMPY*
Ga0070751_100851813300007640AqueousAIEFETNGNKIYQLRNGLTNLNVYFKQATEFHEFIFEDNSGGQIIRIRKTQVEFKENMPILFGSLPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY*
Ga0070751_101280113300007640AqueousVKKTSVDLGTSIPLNFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWIRVNDNTSVSMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMQVEIRLTKVDF*
Ga0070751_102213153300007640AqueousNNPIVSFRKTAVVVSNPLPIQFGAYSFIPIQYKLNRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNAALEGYYKCTISQTGASSSNNFNTCDIMFDYVYRLSTQASPDITITPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYQNQSAGETMPIEVRLTKLDF*
Ga0070751_119661413300007640AqueousMLVEESNVTNKGRLFIGEAIYFGTTGIHNSIAESGNNLLIDQNDANSETQIRDNTNNPIVSFRKTGVVIANPLPIQFGAYSFRPIQYKLNKTLTIAAAADTTNFTNMAFNCQSDTWTVVNTNQSISLYNVALEGYYKCTISQIGSSSAGNFDTCDIMFDYVFHLSIQTAPDIDITEPAFNYRKKPTNQASPTIRIDHLNTPPQSQPVFVLYPNQSAGETMQIEVRLTQLNF*
Ga0070751_127840913300007640AqueousSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVAEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYQNQSAGETMPIEVRLTKLDF*
Ga0070751_133150313300007640AqueousNIPILFGALPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGSTMSMYNLLLEGYYKCTITQTGDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY*
Ga0070751_137066713300007640AqueousSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSLYNAALEGYYKCTITQTALSSAGNFNNCSIMFDYVYHLSIQSAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPIFVLYPNQSAGETMPIEVRLTKLDF*
Ga0102954_110852413300007778WaterPILFGQLPFQPIQYRLTRTLTIAATPDTTNFTNMAFNCQSDTWTKVNDGTSVSMYNVLLEGYYKVTITQTADSSSGNFSACDLMFDYILHLSIQTAPDIDITEPAFNYRKKPTNQARPTIEIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF*
Ga0075480_1004916243300008012AqueousFRPVQYILNRTLTIAAAADTTNFTNMAFNCQSDTWAVVNSGVTGVSMYNALLEGVYKCVIEQTGTSSSGNFEFNTLVFDYVLRLSTQTDPDISIAEPGYGYRKKPTNQARPTIEIDHLNTPVQSQPVFVLYPNQSAGETMPIQVRLTKMDY*
Ga0075480_1007735013300008012AqueousRAIEFETNGNKIYQLRNGLTNLNVYFKQATEFHEFIFEDNSGGQIIRIRKTQVEFKENMPILFGSLPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY*
Ga0075480_1060268613300008012AqueousLPIKFGLYSFRPIQYKLNKTLTIAATADTTNFTNMAFNCRSDTWTFVNTNQTGISMYNAAYEGYYKCTISQIGASSSSLFNTCDIMFDYVYHLSTQTGPDIDITPAFNYRIKPSNQSPPTIKIDHLNSNQSQPVFVLYPNQSAGDTMSIEVRLTKLDF*
Ga0102963_135390013300009001Pond WaterQIIRIRKTQVEFKENIPILFGQLPFQPIQYRLTRTLTIAATPDTTNFTNMAFNCQSDTWTKVNDGTSVSMYNVLLEGYYKVTITQTADSSSGNFSACDLMFDYILHLSIQTAPDIDITEPAFNYRKKPTNQARPTIEIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF*
Ga0102957_129697413300009027Pond WaterNSNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTINFTNMAFNCQSDTWTNVNTNQSVSLYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVSEPAFNYRKKPTNQPRPTIQIDHLNTPVQSQPVFILYGTQSAGETMPIEVRLTKLDF*
Ga0129348_106397713300010296Freshwater To Marine Saline GradientNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNGALEGYYKVTISQTGPSSSNNFNTCDIMFDYVYRLSTQASPDITLTPSFNYRIKPTNQNPPTIEIDHDGGTQSQPVFVLYPNQSAGETMPIEVRLTKLDF*
Ga0129348_131421813300010296Freshwater To Marine Saline GradientQIIRIRKTQVEFKENMPILFGALPFQPIQYRLTRTLTIAAAADTTNFTNMAFNCQSDTWTKVNDGTSVSLYNLLLEGYYKCTITQTGDSSSGNFSACDLMFDYVLHLSIQTAPDIDVSEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMAIEVRLTKLD
Ga0129351_106115423300010300Freshwater To Marine Saline GradientKSGAETNNLLVKIGSTNGTIKFQNQSGTNLMLLEEASATNKGRIYIGEGIFFGTTGIHNNITESGNNLLIDQNDASSETLIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNGALEGYYKVTISQTGPSSSNIFNTCDIMFDYVYRLSTQASPDITLTPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYPNQSAGETMPIEVRLTKLDF*
Ga0136656_113666913300010318Freshwater To Marine Saline GradientPSNPADPLDTFLQIKAGEAGGLATITSSDFAGSEPSIVLDPQNQATGGKIVSSSLNLGVNSASDFVIEKPKSGAETNNLLVKIGSTNGTIKFQNQSGTNLMLLEEASATNKGRIYIGEGIFFGTTGIHNNITESGNNLLIDQNDASSETLIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVAEPAFNY
Ga0136656_116845223300010318Freshwater To Marine Saline GradientILVIKKDAIDLKNTTPINFGLYSFRPIQYKLTRTLTISATPDTANFTNMAFNCQSDTWIRVNDNASVSMYNILLEGYYKCTITQTADSSSGNFSACDIMFDYILHLSIQTAPDIDISEPAFNYRKKPTNQARPTIEIDHLNTPVQSQPVFVLYPNQSAAETMDIEVRLTKMDY*
Ga0129344_138824813300012520AqueousSEVQFRDNNNGNILVIKNDAIDLKNTTPINFGLYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSGTWTRVNDGTSVSLYNLILEGYYKCTITQTADSSSGNFSACDIMFDYILHLSIQTAPDIDISEPAFNYRKKPTNQARPTIEIDHLNTPVQSQPVFVLYPNQSA
Ga0181397_109101213300017744SeawaterNASVDLASTIPLNFGGYSFRPYQYSLTRTLTIAAASDTSGFTNMAFNCRSDTWTDVNNGGSVSMYNAVLEGYYKCTITQTGISSAGNFNFCDIMFDYVLHMSTQTTPDIDITEPAYSYRKKPTGQARPTIEIDHLNTPVQSQPVFVKYPGQSAGETMPIEVRLTKLDY
Ga0181406_117482013300017767SeawaterQDNGGVLDNHLQISAGNASSEVRFRDDAGQSTLRVGKTAVTLGSTIPLSFGGYAFRPHQYSLTRTITIAAASDTSGFTNMAFNCRSDTWTDVNNGGGSVSLYNAALEGYYKCTITQTGISSAGNFNNCDLMFDYVMHMSVQTDPDIVITEPAYSYRKKPTGQARPTIEIDHFNTPVQSQPVFVRYSGQSAGETMPIEVRLTKMNW
Ga0181423_118078123300017781SeawaterYAFRPHQYSLTRTITIAAASDTSGFTNMAFNCRSDTWTDVNNGGGSVSLYNAALEGYYKCTITQTGISSAGNFNNCDLMFDYVMHMSVQTDPDIVITEPAYSYRKKPTGQARPTIEIDHFNTPVQSQPVFVRYSGQSAGETMPIEVRLTKMNW
Ga0206126_1034988913300020595SeawaterPHQYSLTRTLTISASNDTVNFTNMAFNCRSDTWTDVNNGGSVSMYNGALEGYYKCTISQTGLSSAGNFNFCDLIFDYVLHLSIQTSPDIIYTQPGFGYRAKPTNQATPTIEIDHLNIPVQSQPVFVKYPNQSSGETMPIEVRLTKMDY
Ga0222715_1053142013300021960Estuarine WaterGNNLLIDQNDATSETQIRDNTNAVIFNAKKTSVDLGSTIPLNFGLYSFRPLQYKLTRTLTIAATPDTTNFTNMAFNCRSDTWTLVNDNSSVSMYNAALEGYYKCTITQTGLSSASNFDYCDIMFDYVLHLSIQTAPDIDVTEPAFNYRKKPTNQARPTIEIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF
Ga0212025_103578913300022057AqueousAIEFETNGNRIYQLRNGLTNLNVYFKQATEFHEFIFEDNSGGQIIRIRKTQVEFKENMPILFGALPFQPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTKVNDGSTMSMYNLLLEGYYKVTITQTADSSSGNFSACDLMFDYILHLSIQTAPDIDVTEPAFNYRKKPTNQARPTIRIDHLNNPVQSQPVFVLYPNQSSGETMPIEVRLTKLDF
Ga0212025_106271613300022057AqueousLVEESNVTNKGRLFIGEAIYFGTTGIHNSIAESGNNLLIDQNDANSETQIRDNTNNPIVSFRKTGVVIANPLPIQFGAYSFRPIQYKLNKTLTIAAAADTTNFTNMAFNCQSDTWTVVNTNQSISLYNVALEGYYKCTISQIGSSSAGNFDTCDIMFDYVFHLSIQTAPDIDITEPAFNYRKKPTNQASPTIRIDHLNTPPQSQPVFVLYPNQS
Ga0212025_108976213300022057AqueousSFRPIQYKLTKTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSLYNAALEGYYKCTITQTALSSGSNFNKCDIMFDYIYHLSIQTAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF
Ga0212028_100320613300022071AqueousKLTRTLTIAAAADTTNFTNMAFNCQSDTWTKVNDNTSVSLYNVLLEGYYKCTITQTADSSSGNFSACDLMFDYILHLSIQTAPDIDITEPAFNYRKKPTNQARPTIEINHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF
Ga0212027_102925013300022168AqueousGLDPQNQATGGKIVSSSLNLGVNAASDFVIEKPKSGAETNNLLVKVGSTNGTIKIQNQSGTNLMLVEEASATNKGRIYIGEGIFFGTTGVHNNITESGNNLLIDQNDATSETQIRDNSNNPIVSFRKTAVVVSNPLPIEFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVAEPAFN
Ga0212027_104464113300022168AqueousKTAVVVSNPLPIQFGAYSFRPIQYTLNRTITIAASADTSTFTNMAFNCRTDTWTNVNTNQSVSLYNGALEGFYKCTISQIGASSSGNFNTCDIMFDYVFHLSLQTSPDINFTPAFNYRIKPSNQSPPTIRVDHTNTPSQSQPVFVLYPNQSSNETMDITVRLTHLNF
Ga0196899_102217013300022187AqueousPLNFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTKVNDNTSVSLYNVLLEGYYKCTITQTADSSSGNFSACDLMFDYILHLSIQTAPDIDITEPAFNYRKKPTNQARPTIEINHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF
Ga0196899_107728413300022187AqueousTNKGRIYIGEGIFFGTTGVHNNITESGNNLLIDQNDATSETQIRDNSNNPIVSFRKTAVVVSNPLPIEFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSMYNVAYEGYYKCTISQIGASSSGNFDTCDIMFDYVYHLSIQTSPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMQVEIRLTKLDF
Ga0196899_114754813300022187AqueousIYIGEGIFFGTTGVHNNITESGNNLLIDQNDATSETQVRDNTNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYTLNRTITIAASADTSTFTNMAFNCRTDTWTNVNTNQSVSLYNGALEGFYKCTISQIGASSSGNFNTCDIMFDYVFHLSLQTSPDINFTPSFNYRIKPSNQSPPTIRVDHTNVPAQSQPVFVLYPNQSSNETMDITVRLTHLNF
Ga0208428_111005523300025653AqueousFGSLPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY
Ga0208898_101259913300025671AqueousAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWIRVNDNTSVSMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMQVEIRLTKVDF
Ga0208898_104656413300025671AqueousVSFRKTAVVVSNPLPIQFGAYSFRPIQYRLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPTSLYNGALEGYYKVTISQTGPSSSNNFNTCDIMFDYVYHLSTQASPDITLTPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYPNQSAGETMPIEVRLTHLHF
Ga0208898_105327223300025671AqueousFKQATEFHEFIFEDNSGGQIIRIRKTQVEFKENMPILFGSLPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY
Ga0208898_109593423300025671AqueousGIHNNITESGNNLLIDQNDAASETQIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFIPIQYKLNRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNAALEGYYKCTISQTGASSSNNFNTCDIMFDYVYRLSTQASPDITITPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYQNQSAGETMPIEVRLTKLDF
Ga0208898_110333413300025671AqueousAAAADTTNFTNMAFNCQSDTWTNVNTNQSVSLYNAALEGYYKCTITQTALSSAGNFNNCSIMFDYVYHLSIQSAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF
Ga0208898_110911523300025671AqueousNFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTVVNTNQSISLYNVALEGYYKCTISQIGSSSAGNFDTCDIMFDYVFHLSIQTAPDIDITEPAFNYRKKPTNQASPTIRIDHLNTPPQSQPVFVLYPNQSAGETMQIEVRLTQLNF
Ga0208162_108109913300025674AqueousVKFQNQSGTNLMLVEESNVTNKGRLFIGEAIYFGTTGIHNSIAESGNNLLIDQNDANSETQIRDNTNNPIVSFRKTGVVIANPLPIQFGAYSFRPIQYKLNKTLTIAAAADTTNFTNMAFNCQSDTWTVVNTNQSISLYNVALEGYYKCTISQIGSSSAGNFDTCDIMFDYVFHLSIQTAPDIDITEPAFNYRKKPTNQASPTIRIDHLNTPPQSQPVFVLYPNQSAGETMQIEVRLTQLNF
Ga0208162_114800213300025674AqueousIVLANPIPLQFGAYSFRPVQYKLTKTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSISMYNAALEGYYKCTITQTALSSAGNFNKCDIMFDYIYHLSIQTAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNSPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY
Ga0208767_116464523300025769AqueousESGNDLLIDQNNASSSTRFRDNSNNPIFTIKKTEVVLSNNIPLNYGLYSTLPIQYKLTRTLTIAATPDTTNFTNMAFNCQSDTWTRVNDNTSVSMYNLALEGYYKCTITQTADSSSGNFIACDLMFDYVLHLSIQTAPDIDITEPAFNYKKKPTNQARPTIEIDHLNTPVQSQPVFVLYPNQSAGETMSIEVRLTKLDY
Ga0208767_117175613300025769AqueousSDFAGSEPSIVLDPQNQATGGKIVSSSLNLGVNAASDFVIEKPKSGAETNNLLVKVGSTNGTIKIQNQSGTNLMLVEEASATNKGRIYIGEGIFFGTTGVHNNITESGNNLLIDQNDATSETQVRDNSNNPIVSFKKTSVDLGNTIPLQFNQYSFQPIQYKLTRTITIAAGQDTVNYTNMVFNALGTGTGTGGVDSWTRVNDGASGISLYNAALEGFYKCVIQQTNASSANNFIGTRIVFDYILAASIQDTPD
Ga0208767_126102913300025769AqueousLTIAANSDTTNFTNMAFNCQSDTWTVVNTGATGVSMYNALLEGVYKCVIEQTGSSSSGNFEFNTLVFDYVFRLSIQTDPDIIITEPAYGYRTKPTNQARPTIEIDHFNTPVQSQPVFVRYPNQSAGETMPIQVRLTKMPY
Ga0208542_113942713300025818AqueousIRFKNNSGADIANIRETAIVLANPIPLQFGAYSFRPIQYKLTKTLTIAAAADTTNFTNMAFNCQSDTWTNVNTNQSISMYNAALEGYYKCTITQTALSSAGNFNKCDIMFDYIYHLSIQTAPDIDVTEPAFNYQAKPSNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMAIEVRLTKLDF
Ga0208547_112979913300025828AqueousLTIAAAADTTNFTNMAFNCQSDTWTKVNDGSTMSMYNLLLEGYYKVTITQTADSSSGNFSACDLMFDYILHLSIQTAPDIDVTEPAFNYRKKPTNQARPTIRIDHLNNPVQSQPVFVLYPNQSSGETMPIEVRLTKLDF
Ga0208645_101649013300025853AqueousDNIGAGLLTVKKTSVDLGTSIPLNFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWIRVNDNTSVSMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMQVEIRLTKVDF
Ga0208645_101962433300025853AqueousNKGRLYIGEGVFFGTTGIHNNITESGNNLLIDQNDAASETQIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPTSLYNGALEGYYKVTISQTGPSSSNNFNTCDIMFDYVYHLSTQASPDITLTPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYPNQSAGETMPIEVRLTHLHF
Ga0208645_107297813300025853AqueousRAIEFETNGNKIYQLRNGLTNLNVYFKQATEFHEFIFEDNSGGQIIRIRKTQVEFKENMPILFGSLPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY
Ga0208645_110869613300025853AqueousFITAGDGANAEIRFKNNSGVDIANIRDTALVLANPIPLQFGAYSFRPIQYKLNKTLTIAAAADTVNFTNMAFNCQSDTWLNVNTNQNVSMYNVLLEGYYKVTITQTGDSSAGNFIACDLMFDYVYHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNNPAQSQPVFVLYPNQSAGETMPIEVRLTFLNY
Ga0208645_114296113300025853AqueousETNNLLVKIGSTNGTIKFQNQSGTNLMLVEESNVTNKGRLFIGEAIYFGTTGIHNSIAESGNNLLIDQNDANSETQIRDNTNNPIVSFRKTGVVIANPLPIQFGAYSFRPIQYKLNKTLTIAAAADTTNFTNMAFNCQSDTWTVVNTNQSISLYNVALEGYYKCTISQIGSSSAGNFDTCDIMFDYVFHLSIQTAPDIDITEPAFNYRKKPTNQASPTIRIDHLNTPPQSQPVFVLYPNQSAGETMQIEVRLTQLNF
Ga0208644_105361433300025889AqueousDLGTNIPLNFGAYSFRPIQYKLTRTLTIAATPDTTNFTNMAFNCQSDTWIRVNDNTSVSLYNVLLEGYYKCTITQTADSSSNNFSACDLMFDYILHLSIQTAPDIDITEPAFNYRKKPTNQARPTIQVDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF
Ga0208644_136085213300025889AqueousRPIQYKLNRTITIAAAADTSNFTNMAFNCQSDTWTNVNTNQSISMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDITEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPIFVLYPNQSAGETMDIEVRLTKLDY
Ga0348335_008668_1_4953300034374AqueousEFKENIPILFGALPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY
Ga0348335_012454_2_6553300034374AqueousRAIEFETNGNRIYQLRNGLTNLNVYFKQATEFHEFIFEDNQGGQIIRIRKTQVEFKENIPILFGALPFQPIQYKLTRTLTIAASADTTNFTNMAFNCQSDTWTKVNDGSTMSMYNLLLEGYYKCTITQTGDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY
Ga0348335_014061_2_5143300034374AqueousVKKTSVDLGTSIPLNFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWIRVNDNTSVSMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMQVEIRLTKVDF
Ga0348335_022750_3_5273300034374AqueousNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNAALEGYYKCTISQTGASSSNNFNTCDIMFDYVYRLSTQASPDITITPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYQNQSAGETMPIEVRLTKLDF
Ga0348335_069144_694_12453300034374AqueousETQVRDNTNNPIVSFRKTAVVVSNPLPLQFGAYSFRPIQYTLNRTITIAASADTSTFTNMAFNCRTDTWTNVNTNQSVSLYNGALEGFYKCTISQIGASSSGNFNTCDIMFDYVFHLSLQTSPDINFTPAFNYRIKPSNQSPPTIRIDHTNVPTQSQPVYVLYPNQSAGETMDITVRLTHLDF
Ga0348335_113300_245_8203300034374AqueousKQATEFHEFIFEDNSGGQIIRIRKTQVEFKENIPILFGALPFQPIQYKLTRTITIAAAADTTNFTNMAFNCQSDTWTKVNDGASMTMYNALLEGYYKVTITQTAASSSNNFSNCDIMFDYVYRLSIQTAPDIDVTEPAFNYRKKPTNQARPTIRIDHLNNPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF
Ga0348336_015700_3655_41913300034375AqueousNIGAGLLTVKKTSVDLGTSIPLNFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWIRVNDNTSVSMYNAALEGYYKVTITQTALSSAGNFNRCDLMFDYVYHLSIQTAPDIDVTEPAFNYQAKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMQVEIRLTKVDF
Ga0348336_023965_3_5543300034375AqueousSETQIRDNSNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPTSLYNGALEGYYKVTISQTGPSSSNNFNTCDIMFDYVYHLSTQASPDITLTPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYPNQSAGETMPIEVRLTKLDF
Ga0348337_009914_5067_56063300034418AqueousDNIGAGLLTVKKTSVDLGTSIPLNFGAYSFRPIQYKLTRTLTIAATPDTTNFTNMAFNCQSDTWTKVNDNTSVSLYNVLLEGYYKCTITQTADSSSGNFSACDLMFDYILHLSIQTAPDIDITEPAFNYRKKPTNQARPTIEINHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDF
Ga0348337_010715_3_5963300034418AqueousNLNVYFKQATEFHEFIFEDNSGGQIIRIRKTQVEFKENMPILFGSLPFQPIQYRLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGQSMSMYNLLLEGYYKCTITQTSDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY
Ga0348337_022035_2_5293300034418AqueousSNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYKLTRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPTSLYNGALEGYYKVTISQTGPSSSNNFNTCDIMFDYVYHLSTQASPDITLTPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYPNQSAGETMPIEVRLTHLHF
Ga0348337_055324_1_4623300034418AqueousFGAYSFIPIQYKLNRTLTIAAAADTTNFTNMAFNCQSDTWTNVNTGLPISLYNAALEGYYKCTISQTGASSSNNFNTCDIMFDYVYRLSTQASPDITITPSFNYRIKPTNQNPPTIEIDHVGGTQSQPVFVLYQNQSAGETMPIEVRLTKLDF
Ga0348337_057118_2_4813300034418AqueousIPILFGALPFQPIQYKLTRTITIAANADTTNFTNMAFNCQSDTWTKVNDGSTMSMYNLLLEGYYKCTITQTGDSSSGNFSACDLMFDYVLHLSIQTAPDIDITEPAFNYRKKPTNQARPTIRIDHLNTPVQSQPVFVLYPNQSAGETMPIEVRLTKLDY
Ga0348337_060842_3_8393300034418AqueousTSLNLGVDGASDFVIEKPKSGAETNNLLVKVGSTNGTIKIQNQSGTNLMLVEEASATNKGRIYIGEGIFFGTTGVHNNITESGNNLLIDQNDATSETQVRDNTNNPIVSFRKTAVVVSNPLPIQFGAYSFRPIQYTLNRTITIAASADTSTFTNMAFNCRTDTWTNVNTNQSVSLYNGALEGFYKCTISQIGASSSGNFNTCDIMFDYVFHLSLQTSPDINFTPSFNYRIKPSNQSPPTIRVDHTNVPAQSQPVFVLYPNQSSNETMDITVRLTHLNF


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