NMPFamsDB

NMPFamsDB

NMPFamsDB

A database of Novel Metagenome Protein Families

A database of Novel Metagenome Protein Clusters

A database of Novel Metagenome Protein Clusters
x
This website uses cookies to improve user experience. By using NMPFamDB you consent to all cookies in accordance with our privacy policy. OK
Metagenome / Metatranscriptome Family F105028

Metagenome / Metatranscriptome Family F105028

Go to section:
Overview Alignments Structure & Topology Gene Neighborhood Phylogeny Ecosystems Sequences
Select file to download:
   Download


Overview

Basic Information
Family ID F105028
Family Type Metagenome / Metatranscriptome
Number of Sequences 100
Average Sequence Length 161 residues
Representative Sequence MAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYIDPTDADTTAVQVSSSNTAPVILPAGAVVVQINANAAGTGGTTPTFDMGWIGYTDTTAVDPNGLLSAADADAGKQVFNWASATAGDDLGVIMSATQMVKITGGGTTGDEPTGGSITGQILYYVTDPYLGQQNV
Number of Associated Samples 80
Number of Associated Scaffolds 100

Quality Assessment
Transcriptomic Evidence Yes
Most common taxonomic group Unclassified
% of genes with valid RBS motifs 80.00 %
% of genes near scaffold ends (potentially truncated) 3.00 %
% of genes from short scaffolds (< 2000 bps) 4.00 %
Associated GOLD sequencing projects 72
AlphaFold2 3D model prediction Yes
3D model pTM-score0.71

Note: High quality evidence is represented by blue. Low quality evidence is represented by red.
Hidden Markov Model
Powered by Skylign

Most Common Taxonomy
Group Unclassified (93.000 % of family members)
NCBI Taxonomy ID N/A
Taxonomy N/A

Most Common Ecosystem
GOLD Ecosystem Environmental → Aquatic → Freshwater → River → Unclassified → Freshwater
(22.000 % of family members)
Environment Ontology (ENVO) Unclassified
(23.000 % of family members)
Earth Microbiome Project Ontology (EMPO) Free-living → Non-saline → Water (non-saline)
(51.000 % of family members)



 ⦗Top⦘

Multiple Sequence Alignments

Select alignment to view:      


 ⦗Top⦘

Structure & Topology

Predicted Secondary Structure and Topology

Predicted Topology & Secondary Structure
Classification: Globular Signal Peptide: No Secondary Structure distribution: α-helix: 1.55%    β-sheet: 34.02%    Coil/Unstructured: 64.43%
Feature Viewer
Powered by Feature Viewer

Predicted 3D Structure

Structure Viewer
Per-residue confidence (pLDDT):
  0-50   51-70   71-90   91-100  
pTM-score: 0.71
Powered by PDBe Molstar

Structural matches with SCOPe domains

SCOP familySCOP domainRepresentative PDBTM-score
b.18.1.11: CBM15d1gnya_1gny0.61741
b.121.5.1: Microviridae-like VPd2bpa1_2bpa0.61257
b.18.1.13: PepX C-terminal domain-liked1lnsa21lns0.60422
b.121.4.9: Birnaviridae-like VPd2df7a12df70.60407
b.18.1.14: CBM4/9d4bj0a14bj00.6023


 ⦗Top⦘

Gene Neighborhood

Neighboring Pfam domains

Pfam IDName % Frequency in 100 Family Scaffolds
PF10124Mu-like_gpT 17.00
PF09374PG_binding_3 3.00
PF03237Terminase_6N 2.00
PF07728AAA_5 1.00
PF136402OG-FeII_Oxy_3 1.00
PF13385Laminin_G_3 1.00
PF00166Cpn10 1.00
PF02945Endonuclease_7 1.00
PF05838Glyco_hydro_108 1.00

Neighboring Clusters of Orthologous Genes (COGs)

COG IDNameFunctional Category % Frequency in 100 Family Scaffolds
COG0234Co-chaperonin GroES (HSP10)Posttranslational modification, protein turnover, chaperones [O] 1.00
COG3926Lysozyme family proteinGeneral function prediction only [R] 1.00


 ⦗Top⦘

Phylogeny

NCBI Taxonomy

Select NCBI taxonomy Level:
NameRankTaxonomyDistribution
UnclassifiedrootN/A93.00 %
All OrganismsrootAll Organisms7.00 %

Visualization
Powered by ApexCharts

Associated Scaffolds


ScaffoldTaxonomyLengthIMG/M Link
3300002835|B570J40625_100083969All Organisms → Viruses → Predicted Viral4085Open in IMG/M
3300005805|Ga0079957_1003405Not Available13585Open in IMG/M
3300006802|Ga0070749_10001844Not Available14302Open in IMG/M
3300007516|Ga0105050_10005072Not Available17142Open in IMG/M
3300008110|Ga0114343_1024198All Organisms → Viruses → Duplodnaviria → Heunggongvirae → Uroviricota → Caudoviricetes → Caudovirales2629Open in IMG/M
3300008266|Ga0114363_1036284Not Available2043Open in IMG/M
3300010354|Ga0129333_10030812Not Available5065Open in IMG/M
3300020498|Ga0208050_1002065All Organisms → Viruses → Predicted Viral2743Open in IMG/M
3300021961|Ga0222714_10002602Not Available18940Open in IMG/M
3300021961|Ga0222714_10059839All Organisms → Viruses → Duplodnaviria → Heunggongvirae → Uroviricota → Caudoviricetes → environmental samples → uncultured Caudovirales phage2584Open in IMG/M
3300022198|Ga0196905_1083144Not Available870Open in IMG/M
3300025889|Ga0208644_1012176Not Available5786Open in IMG/M
3300027697|Ga0209033_1150980Not Available723Open in IMG/M
3300027976|Ga0209702_10002990Not Available27793Open in IMG/M
3300031758|Ga0315907_10465704Not Available1007Open in IMG/M
3300031951|Ga0315904_10054080All Organisms → Viruses → Predicted Viral4459Open in IMG/M
3300031951|Ga0315904_10366592Not Available1319Open in IMG/M
3300033980|Ga0334981_0014675All Organisms → Viruses → Predicted Viral4392Open in IMG/M
3300033980|Ga0334981_0032046All Organisms → Viruses → Predicted Viral2824Open in IMG/M
3300034073|Ga0310130_0004328Not Available5808Open in IMG/M



 ⦗Top⦘

Environmental Properties

Associated Habitat Types

Select Environment Taxonomy Level:
HabitatTaxonomyDistribution
FreshwaterEnvironmental → Aquatic → Freshwater → River → Unclassified → Freshwater22.00%
AqueousEnvironmental → Aquatic → Marine → Coastal → Unclassified → Aqueous18.00%
FreshwaterEnvironmental → Aquatic → Freshwater → Unclassified → Unclassified → Freshwater13.00%
Freshwater LakeEnvironmental → Aquatic → Freshwater → Lentic → Unclassified → Freshwater Lake7.00%
Freshwater, PlanktonEnvironmental → Aquatic → Freshwater → Lake → Unclassified → Freshwater, Plankton6.00%
Freshwater LakeEnvironmental → Aquatic → Freshwater → Lake → Unclassified → Freshwater Lake5.00%
FreshwaterEnvironmental → Aquatic → Freshwater → Lake → Unclassified → Freshwater4.00%
Freshwater To Marine Saline GradientEnvironmental → Aquatic → Marine → Coastal → Unclassified → Freshwater To Marine Saline Gradient4.00%
FreshwaterEnvironmental → Aquatic → Freshwater → Ice → Glacial Lake → Freshwater3.00%
Estuarine WaterEnvironmental → Aquatic → Marine → Unclassified → Unclassified → Estuarine Water3.00%
Freshwater SedimentEnvironmental → Aquatic → Freshwater → Sediment → Unclassified → Freshwater Sediment2.00%
FreshwaterEnvironmental → Aquatic → Freshwater → Lentic → Epilimnion → Freshwater2.00%
Freshwater LakeEnvironmental → Aquatic → Freshwater → Lake → Unclassified → Freshwater Lake2.00%
LakeEnvironmental → Aquatic → Freshwater → Lake → Unclassified → Lake2.00%
Freshwater And SedimentEnvironmental → Aquatic → Freshwater → Lentic → Unclassified → Freshwater And Sediment1.00%
Marine PlanktonEnvironmental → Aquatic → Freshwater → Lotic → Unclassified → Marine Plankton1.00%
AquaticEnvironmental → Aquatic → Freshwater → Drinking Water → Unclassified → Aquatic1.00%
Salt MarshEnvironmental → Aquatic → Marine → Intertidal Zone → Salt Marsh → Salt Marsh1.00%
Hypersaline Lake SedimentEnvironmental → Aquatic → Non-Marine Saline And Alkaline → Hypersaline → Sediment → Hypersaline Lake Sediment1.00%
SoilEnvironmental → Terrestrial → Soil → Wetlands → Unclassified → Soil1.00%
Fracking WaterEnvironmental → Terrestrial → Deep Subsurface → Unclassified → Unclassified → Fracking Water1.00%

Visualization
Powered by ApexCharts



Associated Samples

Taxon OIDSample NameHabitat TypeIMG/M Link
3300001851Marine plankton microbial communities from the Amazon River plume, Atlantic Ocean - RCM31, ROCA_DNA206_0.2um_MCP-S_C_3bEnvironmentalOpen in IMG/M
3300002835Freshwater microbial communities from Lake Mendota, WI - (Lake Mendota Combined Ray assembly, ASSEMBLY_DATE=20140605)EnvironmentalOpen in IMG/M
3300004240Freshwater lake microbial communities from Lake Michigan, USA - Fa13.BD.MLB.SNEnvironmentalOpen in IMG/M
3300005805Microbial and algae communities from Cheney Reservoir in Wichita, Kansas, USAEnvironmentalOpen in IMG/M
3300006030Aqueous 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_0.19_D_<0.8_DNAEnvironmentalOpen in IMG/M
3300006641Aqueous 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_0.19_D_>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
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
3300006917Aqueous 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_0.19_N_<0.8_DNAEnvironmentalOpen 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
3300007516Freshwater microbial communities from Lake Fryxell liftoff mats and glacier meltwater in Antarctica - FRY-01EnvironmentalOpen in IMG/M
3300007523Freshwater microbial communities from Lake Fryxell liftoff mats and glacier meltwater in Antarctica - FRY-03EnvironmentalOpen in IMG/M
3300007541Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_1S Viral MetaGEnvironmentalOpen in IMG/M
3300007542Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1504_1 Viral MetaGEnvironmentalOpen in IMG/M
3300008110Freshwater microbial communities from Harmful Algal Blooms in Lake Erie, Western Basin, USA - Station WLE12, Sample E2014-0048-3-NAEnvironmentalOpen in IMG/M
3300008113Freshwater microbial communities from Harmful Algal Blooms in Lake Erie, Western Basin, USA - Station WLE4, Sample E2014-0050-3-NAEnvironmentalOpen in IMG/M
3300008114Freshwater microbial communities from Harmful Algal Blooms in Lake Erie, Western Basin, USA - Station WLE2, Sample E2014-0106-C-NAEnvironmentalOpen in IMG/M
3300008266Freshwater microbial communities from Harmful Algal Blooms in Lake Erie, Western Basin, USA - Station WLE12, Sample HABS-E2014-0108-C-NAEnvironmentalOpen in IMG/M
3300009159Freshwater microbial communities from Lake Simoncouche, Canada to study carbon cycling - S_140212_EF_MetaGEnvironmentalOpen in IMG/M
3300009165Freshwater sediment microbial communities from Prairie Pothole Lake near Jamestown, North Dakota, USA - PPLs Lake P7 Core (6) Depth 1-3cm September2015EnvironmentalOpen in IMG/M
3300009166Freshwater sediment microbial communities from Prairie Pothole Lake near Jamestown, North Dakota, USA - PPLs Lake P8 Core (1) Depth 10-12cm May2015EnvironmentalOpen in IMG/M
3300010354Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Sum_0.6_0.8_DNAEnvironmentalOpen in IMG/M
3300010885northern Canada Lakes Co-assemblyEnvironmentalOpen in IMG/M
3300017747Freshwater viral communities from Lake Michigan, USA - Fa13.VD.MLB.S.NEnvironmentalOpen in IMG/M
3300017785Freshwater viral communities from Lake Michigan, USA - Fa13.VD.MM15.D.NEnvironmentalOpen in IMG/M
3300017971Hypersaline lake sediment archaeal communities from the Salton Sea, California, USA - SS_3_D_2 metaGEnvironmentalOpen in IMG/M
3300018420Coastal salt marsh microbial communities from the Groves Creek Marsh, Skidaway Island, Georgia - 011512CT metaG (megahit assembly)EnvironmentalOpen in IMG/M
3300019784Freshwater viral communities from Lake Michigan, USA - Fa13.VD.MM15.S.DEnvironmentalOpen in IMG/M
3300020084Freshwater microbial communities from Lake Tanganyika, Tanzania - TA2015032 Kigoma Deep Cast 1200mEnvironmentalOpen in IMG/M
3300020179Freshwater microbial communities from Lake Tanganyika, Tanzania - TA2015056 Kigoma Offshore 0mEnvironmentalOpen in IMG/M
3300020183Freshwater microbial communities from Lake Tanganyika, Tanzania - TA2015002 Mahale S4 surfaceEnvironmentalOpen in IMG/M
3300020197Freshwater microbial communities from Lake Tanganyika, Tanzania - TA2015037 Kigoma Deep Cast 65mEnvironmentalOpen in IMG/M
3300020498Freshwater microbial communities from Lake Mendota, WI - 13JUN2010 deep hole epilimnion (SPAdes)EnvironmentalOpen in IMG/M
3300021424Freshwater microbial communities from Lake Tanganyika, Tanzania - TA2015009 Mahale N1 surfaceEnvironmentalOpen in IMG/M
3300021961Estuarine water microbial communities from San Francisco Bay, California, United States - C33_3DEnvironmentalOpen in IMG/M
3300021963Estuarine water microbial communities from San Francisco Bay, California, United States - C33_657DEnvironmentalOpen in IMG/M
3300022063Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1504_1 Viral MetaG (v2)EnvironmentalOpen in IMG/M
3300022176Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_1S Viral MetaG (v2)EnvironmentalOpen in IMG/M
3300022179Freshwater viral communities from Lake Michigan, USA - Fa13.VD.MLB.D.NEnvironmentalOpen in IMG/M
3300022190Freshwater viral communities from Lake Michigan, USA - Fa13.VD.MM15.S.NEnvironmentalOpen in IMG/M
3300022198Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_1S Viral MetaG (v3)EnvironmentalOpen in IMG/M
3300022200Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1504_1 Viral MetaG (v3)EnvironmentalOpen in IMG/M
3300024289Freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Miss_RepA_8hEnvironmentalOpen in IMG/M
3300024306Freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Miss_RepB_8hEnvironmentalOpen in IMG/M
3300024356Freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Miss_RepC_8dEnvironmentalOpen in IMG/M
3300024480Metatranscriptome of freshwater microbial communities from Columbia River, Oregon, United States - Colum_Cont_RepC_0h (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300024481Metatranscriptome of freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Cont_RepC_0h (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300024484Metatranscriptome of freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Cont_RepB_8h (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300024504Freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Colum_RepA_8dEnvironmentalOpen in IMG/M
3300024514Freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Atlam_RepB_8dEnvironmentalOpen in IMG/M
3300024536Metatranscriptome of freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Atl_RepC_8h (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300024561Metatranscriptome of freshwater microbial communities from Altamaha River, Georgia, United States - Atl_UVDOM_RepA_8d (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300024568Metatranscriptome of freshwater microbial communities from Columbia River, Oregon, United States - Colum_Miss_RepA_8d (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300024572Metatranscriptome of freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Yuk_RepB_8h (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300024573Metatranscriptome of freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Atl_RepA_8h (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300024854Metatranscriptome of freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Colum_RepC_8d (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300024865Metatranscriptome of freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Colum_RepC_8h (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300025647Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1504_1 Viral MetaG (SPAdes)EnvironmentalOpen in IMG/M
3300025761Metatranscriptome of freshwater microbial communities from Columbia River, Oregon, United States - Colum_Colum_RepB_8d (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300025872Aqueous 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_0.19_D_>0.8_DNA (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
3300026478Freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Atlam_RepA_8hEnvironmentalOpen in IMG/M
3300026565Metatranscriptome of freshwater microbial communities from Columbia River, Oregon, United States - Colum_Colum_RepC_8d (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300026573Metatranscriptome of freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Yuk_RepC_8h (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300027697Freshwater lake microbial communities from Lake Michigan, USA - Fa13.BD.MLB.DN (SPAdes)EnvironmentalOpen in IMG/M
3300027805Freshwater and sediment microbial communities from dead zone in Sandusky Bay, Ohio, USA (SPAdes)EnvironmentalOpen in IMG/M
3300027976Freshwater microbial communities from Lake Fryxell liftoff mats and glacier meltwater in Antarctica - FRY-01 (SPAdes)EnvironmentalOpen in IMG/M
3300028286Metatranscriptome of freshwater microbial communities from Altamaha River, Georgia, United States - Atl_Cont_RepA_8h (Metagenome Metatranscriptome)EnvironmentalOpen in IMG/M
3300029930Aquatic microbial communities from drinking water treatment plant in Pearl River Delta area, China - influent_20120727EnvironmentalOpen in IMG/M
3300031758Freshwater fungal communities from buoy surface, Lake Erie, Ohio, United States - Buoy 12 MA123EnvironmentalOpen in IMG/M
3300031787Freshwater fungal communities from buoy surface, Lake Erie, Ohio, United States - Buoy 12 MA114EnvironmentalOpen in IMG/M
3300031857Freshwater fungal communities from buoy surface, Lake Erie, Ohio, United States - Buoy 2 MA125EnvironmentalOpen in IMG/M
3300031951Freshwater fungal communities from buoy surface, Lake Erie, Ohio, United States - Buoy 12 MA120EnvironmentalOpen in IMG/M
3300032050Freshwater fungal communities from buoy surface, Lake Erie, Ohio, United States - Buoy 2 MA122EnvironmentalOpen in IMG/M
3300032093Freshwater fungal communities from buoy surface, Lake Erie, Ohio, United States - Buoy 12 MA117EnvironmentalOpen in IMG/M
3300033521Wetland soil microbial communities from Old Woman Creek delta, Ohio, United States - OWC_Aug_M1_C1_D1_BEnvironmentalOpen in IMG/M
3300033980Freshwater microbial communities from Lake Mendota, Madison, Wisconsin, United States - TYMEFLIES-ME09Aug2015-rr0007EnvironmentalOpen in IMG/M
3300034073Fracking water microbial communities from deep shales in Oklahoma, United States - MC-6-XLEnvironmentalOpen in IMG/M
3300034106Freshwater microbial communities from Lake Mendota, Madison, Wisconsin, United States - TYMEFLIES-ME23Aug2013-rr0131EnvironmentalOpen in IMG/M
3300034109Freshwater microbial communities from Lake Mendota, Madison, Wisconsin, United States - TYMEFLIES-ME26Aug2009-rr0158EnvironmentalOpen in IMG/M

Geographical Distribution
Zoom:     Powered by OpenStreetMap



 ⦗Top⦘

Family Sequences

Protein ID Sample Taxon ID Habitat Sequence
RCM31_1037525123300001851Marine PlanktonMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYIDPTAADTTAVQVSSTNTAPVILPIGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGEADAGKQVFDGSTATAGDDMGVAMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPFLGQQNV*
B570J40625_10008396923300002835FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYFDPTAADTTAVQISSSNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDANGLIAAGDADAGKQVFDWSTATAGDDMGAIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQNV*
Ga0007787_1008974013300004240Freshwater LakeMAVSTTQAIWRSGGGDQTRTAYCGTGLMVAQFYISGASANSVAVQVSSADSSPVILPAGAVVVQINALCAATGGTTPTFDMGWIGYTDTSASDDNGLVAAAVATTGKLVINFASATAGDDLNTIISATQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV*
Ga0079957_100340583300005805LakeMPTTSTTTSVWRSGGGDSTKTSYAGSMLMAADFYFDPTAANTTALQKSSSDTDAIILPVGAIVVEIQINAAGTGGTSPTFDMGWIGYTDTSAVDVDGLVAEGDADIGKSVFTWATATAGDDLGVVMSSTQMVKLTGGVGASAATGGTASGRILYYVPTDGAYTA*
Ga0079957_116925323300005805LakeMALSTTQSIWRSGGGDNTRTAYCGSGVMAAQFYIDPAAADTTTVKIASGSTVPVVLPAGAVIVEIQANAAGTGGTTPTFDMGWIGYTDTSALDPNGLLSAADADAGKQVFNFASATAGDDLGVAMSTTQMVTLTGGATTGDAATGGAITGTILYFVTDPLVGQQNV*
Ga0075470_1018139913300006030AqueousMAVSTTQSIWRSGGGDTTRTAYCGTGLMVAQFYFDPTAADTTAVQVSSANTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFNWSTATAGDDMGVIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPFLGQQNV*
Ga0075471_1004468713300006641AqueousMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYFDPTAADTTAVQISSSNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQNV*
Ga0075471_1032640123300006641AqueousGDQTRTAYCGTGLMVAQFYISGASANSVAVQVSSADSSPVILPAGAVVVQINALCAATGGTTPTFDMGWIGYTDTSASDDNGLVAAAVATTGKLVINFASATAGDDLNTIISATQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV*
Ga0070749_10001844103300006802AqueousMATTSTTTSVWRSGGGDSTKTSYAGSMLMVADFYIDPTDADTTAVQKSSSDTAAVILPIGAVVIEIQANAAGTGGTTPTFDMGWIGYTDTSAVDPNGLLSAADADAGKQVWNWASATAGDDLGVVMSSTQMVKLTGGGTTGDKATGGTITGKIIYYVPTDGAYTA*
Ga0070750_1037260913300006916AqueousMAVSTTQSIWRSGGGDTTRTAYCGTGLMVAQFYFDPTAADTTAVQISSANTTPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPFLGQQNV
Ga0075472_1019768023300006917AqueousMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYFDPTAADTTAVQISSSNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGAIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQN
Ga0070753_121969213300007346AqueousMVAQFYFDPTAADTTAVQVSSANTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPFLGQQNV*
Ga0105050_10005072123300007516FreshwaterMQIDAPNRMRENQMAVSTTQSIWRSGGGDQTRTAYCGSGVMAAKFYINPASADTTTVKISATSTVPVVLPIGAVIVEIQANAAGTGGSTPTFDMGWKGYTDPTAVDANGILSASDADAGKQVFNFASSTAGDDLGLTMSTTQMVTLTGGATTGDAATGGSVTGQILYYVTDPLVGQQSV*
Ga0105052_1009910733300007523FreshwaterCGSGVMAAKFYINPASADTTTVKISATSTVPVVLPIGAVIVEIQANAAGTGGSTPTFDMGWKGYTDPTAVDANGILSASDADAGKQVFNFASSTAGDDLGLTMSTTQMVTLTGGATTGDAATGGSVTGQILYYVTDPLVGQQSV*
Ga0099848_108090223300007541AqueousMAVSTTQSIWRSGGGDTTRTAYCGTGLMVAQFYFDPTAADTTAVQVSSTNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPFLGQQNV*
Ga0099848_110303713300007541AqueousKTSYAGSMLMVADFYIDPTDADTTAVQKSSSDTAAVILPIGAVVIEIQANAAGTGGTTPTFDMGWIGYSDTSATDPNGLLAAADADAGKQAWNWASAEAGDDLGLVMSSTQMVKITGGATTGDAATGGTITGKIIYYVPTDGAYTA*
Ga0099848_122674313300007541AqueousMATTSTTTSVWRSGGGDSTKTSYAGSMLMVADFYIDPTDADTTAVQKSATDTAAIILPIGAVIVEIQANAAGTGGTTPTFDMGWIGYTDTSAVDPNGLLSAADADAGKQVWNWASATAGDDLGVVMSSTQMVKLTGGGTT
Ga0099846_110063023300007542AqueousMPTTSTTTSVWRAGGGDSTKTSYAGSMLMVADFYIDPTDADTTAVQKSATDTAAIILPIGAVIVEIQANAAGTGGTTPTFDMGWIGYTDTSAVDPNGLLSAADADAGKQVWNWASATAGDDLGVVMSSTQMVKLTGGGTTGDKATGGTITGRVLYYVPTDGSYTA*
Ga0114343_1005141113300008110Freshwater, PlanktonMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYIDPTDADTTAVQVSSSNTAPVILPAGAVVVQINANAAGTGGTTPTFDMGWIGYTDTTAVDPNGLLSAADADAGKQVFNWASATAGDDLGVIMSATQMVKITGGGTTGDEPTGGSITGQILYYVTDPYLGQQNV*
Ga0114343_102419813300008110Freshwater, PlanktonEFYISGASANSAAVQVSSTNTAPVILPAGAVVTQINALCAATGGTTPTFDMGWIGYSDTTVSDDNGLVAAAVATTGKLVINFASATAGDDLNTIMSATQMVKITGGGTTGDAPTGGNMTGEIFYYVTDPYLGQQNV*
Ga0114346_100696963300008113Freshwater, PlanktonVRTIWQFLLPKAFGVRAAAIRLVPRIATGLMVAQFYIDPTDADTTAVQVSSSNTAPVILPAGAVVVQINANAAGTGGTTPTFDMGWIGYTDTTAVDPNGLLSAADADAGKQVFNWASATAGDDLGVIMSATQMVKITGGGTTGDEPTGGSITGQILYYVTDPYLGQQNV*
Ga0114347_115801223300008114Freshwater, PlanktonMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSDTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV*
Ga0114363_103628463300008266Freshwater, PlanktonMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYIDPTDADTTAVQISSSNTAPVILPIGAVIVQINANAAGTGGTTPTFDMGWIGYSDTSASDPNGLLSAADADAGKQVFDWASATAGDDLGVTMSTSQMVKITGGGTTGDAPTGGSITGQILYYVTDPYLGQQNV*
Ga0114363_108149353300008266Freshwater, PlanktonSGIYPVRQTGSRPDFMQIDVPNRMRKNMALSTTQSIWRSGGGDNTRTAYCGTGLMAAQFYIDPSAVDTTTAKVSSAAGAPAVVLPAGAVVVEIQANAAGTGGTTPTFDMGWIGYTDPTAVDPNGLLSAADADAGKQVFNWASATAGDDLGVAMSLTQMVTLTGGATTGDGPTGGAITGTILYYVTDPLIGQQNV*
Ga0114978_1048760513300009159Freshwater LakeMALSTTQSIWRSGGGDQTRTAYCGTALMVAEFYISGASPAGTVVSVSSTNSADVILPTGAVIVQINALCAATGGSTPTFDMGWIGYTDSTAVDNTGLVTAAVATTGKLVIDFASATAGNDLNTIMSSTQMVVITGGGTSGDAPTGGSISGQILYYVTDPLLGQQNV*
Ga0105102_1016821323300009165Freshwater SedimentMPTTSTTTSVWRAGGGDSTKTSYAGSMLMVADFYLDPTDANTTNLQRSLTDTRSIVLPIGAVVLQIQANAAGTGGASPTFDMGWIGYTDTSAVDVDGLIAEGDADVGKSVFTWATATAGDDMGVVMSSTQMVTLTGGVGASAATGGAVSGHILYYVPTDGAYTS*
Ga0105100_1065426813300009166Freshwater SedimentQTDLADFIETDSGTCYNTKENIMALSTTQSIWRSGGGDQTRTAYCGSGVMAAQFYINPAAADTTTVKVSSESGAPAVVLPAGAVITEIQVNAAGTGGSTPTFDMGWIGYTDATALDPNGLLSAADADAGKQVFDWATAGAGDDLGVAMSTTQMVTLTGGATTGDGATGGAITGTILYFVTDPLIGQQNV*
Ga0129333_1003081223300010354Freshwater To Marine Saline GradientMAVSTTQAIWRSGGGDQTRTAYCGTPLMVAEFYISGASANSVAVQVSSTNTAPVILPVGAVVTQINALCAATGGTTPTFDMGWIGYSDTSASDDNGLVAAAVATTGKLVIDFASATAGDDMNTIMSATQMVKITGGGTTGDAPTGGSITGEIFYYVTDPYLGQQNV*
Ga0129333_1025864013300010354Freshwater To Marine Saline GradientIFVRRTIEMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPAGAVVTQINALCAATGGTTPTFDMGWIGYTDTSASDDNGLVAAAVATTGKLVINFASATAGDDLNTIMSSSQMVKITGGGTTGDAPTGGSITGQIFYYVTDPYLGQQNV*
Ga0129333_1063835633300010354Freshwater To Marine Saline GradientDTLIFVRRTIEMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPAGAVVVQINALCAATGGTTPTFDMGWIGYTDTSASDDNGLVAAAVATTGKLVINFASATAGDDLNTVMSSSQMVKITGGGTTGDAPTGGSITGEIFYFVTDPYLGQQNV*
Ga0129333_1139143113300010354Freshwater To Marine Saline GradientMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYFDPTAADTTAVQVSSANTAPVILPIGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVVMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLG
Ga0133913_1213102313300010885Freshwater LakeGQFIMALSTTQSIWRSGGGDQTRTAYCGTALMVAEFYISGASPAGTVVSVSSTNSADVILPTGAVIVQINALCAATGGSTPTFDMGWIGYTDSTAVDNTGLVTAAVATTGKLVIDFASATAGNDLNTIMSSTQMVVITGGGTSGDAPTGGSISGQILYYVTDPLLGQQNV*
Ga0181352_114110823300017747Freshwater LakeISGASANSVAVQVSSTNTAPVILPAGAVVTQINALCAATGGTTPTFDMGWIGYSDTSASDDNGLVAAAVATTGKLVINFASATAGDDLNTIMSATQMVKITGGGTTGDAPTGGNITGEIFYYVTDPYLGQQNV
Ga0181355_103458663300017785Freshwater LakeMAVSTTQSIWRSGGGDTTRTAYCGTGLMVAQFYFDPTAADTTAVQVSSTNTAPVILPIGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVAMSATQMVKITAGATTGDEPTGGTASGQILYYVTDPYLGQQNV
Ga0180438_1028872123300017971Hypersaline Lake SedimentMATSTTQSVWRSLGGDTTKTAYAGSMVMIADFYFDPTAANTTAVQKSASDTSAVILPIGAVVVEVHVNAAGTGGSSPTYDLGWVGYSDSSALDVDGLVAEGDADSGKQVINWATATVPGDDLGVAMSTSQMVKVTGGVGASAATGGSISGKLIYYVPTNGKVTA
Ga0181563_1037284823300018420Salt MarshMAVSTTQSIWRSGGGDQTRTAYCGTPLMVAEFYISGASANSVAVQVSSTNTAPVILPVGAVVTQINALCAATGGTTPTFDMGWIGYSDTSASDDNGLVAAAVATTGKLVINFASATAGDDLNTIMSATQMVKITGGGTTCDAPTGGNITGEIFYYVTDPYLGQQNV
Ga0181359_121173913300019784Freshwater LakeMAVSTTQAIWRSGGGDQTRTAYCGTPLMVAEFYISGASANSVAVQVSSTNTAPVILPAGAVVTQINALCAATGGTTPTFDMGWIGYSDTSASDDNGLVAAAVATTGKLVINFASATAGDDLNTIMSATQMVKIT
Ga0194110_1008970823300020084Freshwater LakeMALSTTQSIWRSGGGDTTRTAYCGSGLMAAQFYIDPTAADTTTVKIASGSTVPVVLPAGAVIVEIQANAAGTGGATPTFDMGWIGYTDTSASDPNGLLSAADADAGKQVFNWASATAGDDLGVTMSTTQMVTLTGGATTGDEPTGGSITGQILYYVTDPLVGQQNV
Ga0194134_1007533853300020179Freshwater LakeQTGTRLDFMQIDAPNRMRKNMALSTTQSIWRSGGGDTTRTAYCGSGLMAAQFYIDPTAADTTTVKIASGSTVPVVLPAGAVIVEIQANAAGTGGATPTFDMGWIGYTDTSASDPNGLLSAADADAGKQVFNWASATAGDDLGVTMSTTQMVTLTGGATTGDEPTGGSITGQILYYVTDPLVGQQNV
Ga0194115_10005084113300020183Freshwater LakeMALSTTQSIWRSGGGDTTRTAYCGSGLMAAQFYIDPTAADTTTVKIASGSTVPVVLPAGAVIVEIQANAAGTGGATPTFDMGWIGYTDTSASDPNGLLSAADADAGKQVFNWASATAGDDLGVTMSTTQMVTLTGGATTGYGPTGGSITGQILYYVTDPLVGQQNV
Ga0194128_1019435613300020197Freshwater LakeTTQSIWRSGGGDTTRTAYCGSGLMAAQFYIDPTAADTTTVKIASGSTVPVVLPAGAVIVEIQANAAGTGGATPTFDMGWIGYTDTSASDPNGLLSAADADAGKQVFNWASATAGDDLGVTMSTTQMVTLTGGATTGYGPTGGSITGQILYYVTDPLVGQQNV
Ga0208050_100206543300020498FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYFDPTAADTTAVQISSSNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDANGLIAAGDADAGKQVFDWSTATAGDDMGAIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQNV
Ga0194117_1000567713300021424Freshwater LakeGALSTTQSIWRSGGGDTTRTAYCGSGLMAAQFYIDPTAADTTTVKIASGSTVPVVLPAGAVIVEIQANAAGTGGATPTFDMGWIGYTDTSASDPNGLLSAADADAGKQVFNWASATAGDDLGVTMSTTQMVTLTGGATTGYGPTGGSITGQILYYVTDPLVGQQNV
Ga0222714_1000260283300021961Estuarine WaterMAVSTTQAIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSADSSPVILPAGAVVVQINALCAATGGTTPTFDMGWIGYTDTSASDDNGLVAAAVATTGKLVINFASATAGDDLNTIISATQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0222714_1005983973300021961Estuarine WaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYFDPTAADTTAVQVSSSNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQNV
Ga0222712_1007126633300021963Estuarine WaterMAVSTTQSIWRSGGGDQTRTAYCGSGLMAATFYIDATSADTTAVQVSSTVTAPVILPAGAVIVEIQANAAGTGGTTPTFDMGWIGYSDTSAVDANGLLSAADADAGKQVFNWASATAGDDLGTIMSATQMVKVTGGATTGDAPTGGSISGTILYFVTDPYAGQQNV
Ga0212029_104103723300022063AqueousTSVWRSGGGDSTKTSYAGSMLMVADFYIDPTDADTTAVQKSATDTAAIILPIGAVIVEIQANAAGTGGTTPTFDMGWIGYTDTSAVDPNGLLSAADADAGKQVWNWASATAGDDLGVVMSSTQMVKLTGGGTTGDKATGGTITGRVLYYVPTDGSYTA
Ga0212031_103548323300022176AqueousMPTTSTTTSVWRSGGGDSTKTSYAGSMLMVADFYIDPTDADTTAVQKSATDTAAIILPIGAVIVEIQANAAGTGGTTPTFDMGWIGYTDTSAVDPNGLLSAADADAGKQVWNWASATAGDDLGVVMSSTQMVKLTGGGTTGDKATGGTITGRILYYVPTDGSYTA
Ga0181353_111059713300022179Freshwater LakeMAVSTTQAIWRSGGGDQTRTAYCGTPLMVAEFYISGASANSVAVQVSSTNTAPVILPAGAVVTQINALCAATGGTTPTFDMGWIGYSDTSASDDNGLVAAAVATTGKLVINFASATAGDDLNTIMSATQMVKITGGGTTGDAPTGGSIT
Ga0181354_118559023300022190Freshwater LakeMAVSTTQSIWRSGGGDQTRTAYCGTALMVAEFYISGASANSVAVQVSSTNTAPVILPAGAVVTQINALCAATGGTTPTFDMGWIGYSDTTVSDDNGLVAAAVATTGKLVINFASATAGDDLNTIMSATQMVKITGA
Ga0196905_108314423300022198AqueousMATTSTTTSVWRSGGGDSTKTSYAGSMLMVADFYIDPTDADTTAVQKSASDTAAVILPIGAVVVEIQANAAGTGGTTPTFDMGWIGYSDTSATDPNGLLAAADADAGKQAWNWASVEAGDDLGLVMSSTQMVKITGGATTGDAATGGDITGRIIYYVPTDGAYTA
Ga0196901_110047823300022200AqueousMPTTSTTTSVWRAGGGDSTKTSYAGSMLMVADFYIDPTDADTTAVQKSATDTAAIILPIGAVIVEIQANAAGTGGTTPTFDMGWIGYTDTSAVDPNGLLSAADADAGKQVWNWASATAGDDLGVVMSSTQMVKLTGGGTTGDKATGGTITGRVLYYVPTDGSYTA
Ga0255147_101175123300024289FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0255148_106752023300024306FreshwaterSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0255169_103236313300024356FreshwaterMAVSTTQAIWRSGGGDQTRTAYCGTPLMVAEFYISGASANSVAVQVSSTNTAPVILPAGAVVTQINALCAATGGTTPTFDMGWIGYSDTSVSDDNGLVAAAVATTGKLVINFASATAGDDLNTIMSATQMVKITGGGTTGDAPTGGN
Ga0255169_106373413300024356FreshwaterYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0255223_100682433300024480FreshwaterMALSTTQSIWRSGGGDQTRTAYCGSGVMAAKFYIDPSAVDTTTVKVSSATGAPAVVLPAGAVIVEIQANAAGTGGTTPTFDMGWIGYTDPTALDANGLLSAADADAGKQVFNWASATAGDDMGVAMSLTQMVTLTGGATTGDGPTGGSITGTILYYVTDPLVGQQNV
Ga0256330_109143013300024481FreshwaterVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0256332_108202313300024484FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTPMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0255179_103643923300024504FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDA
Ga0255177_102855713300024514FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGG
Ga0255177_106410613300024514FreshwaterMAVSTTQAIWRSGGGDQTRTAYCGTPLMVAEFYISGASANSVAVQVSSTNTAPVILPAGAVVTQINALCAATGGTTPTFDMGWIGYSDTSVSDDNGLVAAAVATTGKLVINFASATAGDDLNTIMSATQMVKITGG
Ga0256338_101609413300024536FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSDTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0255288_113574313300024561FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAVAVATTGKLVINFASATAGDDLNTVISATQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0255238_104265933300024568FreshwaterALSTTQSIWRSGGGDQTRTAYCGSGVMAAKFYIDPSAVDTTTVKVSSATGAPAVVLPAGAVIVEIQANAAGTGGTTPTFDMGWIGYTDPTALDANGLLSAADADAGKQVFNWASATAGDDMGVAMSLTQMVTLTGGATTGDGPTGGSITGTILYYVTDPLVGQQNV
Ga0255268_105532913300024572FreshwaterEDNMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0256337_110604313300024573FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISATQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0255287_113824113300024854FreshwaterDNMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSDTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0256340_115024413300024865FreshwaterAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0208160_108437413300025647AqueousTSTTTSVWRAGGGDSTKTSYAGSMLMVADFYIDPTDADTTAVQKSATDTAAIILPIGAVIVEIQANAAGTGGTTPTFDMGWIGYTDTSAVDPNGLLSAADADAGKQVWNWASATAGDDLGVVMSSTQMVKLTGGGTTGDKATGGTITGRVLYYVPTDGSYTA
Ga0256310_104547723300025761FreshwaterWRSGGGDQTRTAYCGSGVMAAKFYIDPSAVDTTTVKVSSATGAPAVVLPAGAVIVEIQANAAGTGGTTPTFDMGWIGYTDPTALDANGLLSAADADAGKQVFNWASATAGDDMGVAMSLTQMVTLTGGATTGDGPTGGSITGTILYYVTDPLVGQQNV
Ga0208783_1002191733300025872AqueousMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYFDPTAADTTAVQISSSNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQNV
Ga0208644_101217683300025889AqueousMATTSTTTSVWRSGGGDSTKTSYAGSMLMVADFYIDPTDADTTAVQKSSSDTAAVILPIGAVVIEIQANAAGTGGTTPTFDMGWIGYTDTSAVDPNGLLSAADADAGKQVWNWASATAGDDLGVVMSSTQMVKLTGGGTTGDKATGGTITGKIIYYVPTDGAYTA
Ga0255156_101302013300026478FreshwaterSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0256311_100267153300026565FreshwaterMALSTTQSIWRSGGGDQTRTAYCGSGVMAAKFYIDPSAVDTTTVKVSSATGAPAVVLPAGAVIVEIQANAAGTGGTTPTFDMGWIGYTDPTALDANGLLSAADADAGKQVFNWASATAGDDMGVAMSLTQMVTLTGGATTGDGPTGGSIAGTILYYVTDPLVGQQNV
Ga0255269_101255213300026573FreshwaterNMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDPYLGQQNV
Ga0209033_115098023300027697Freshwater LakeFYISGASANSVAVQVSSTNTAPVILPAGAVVTQINALCAATGGTTPTFDMGWIGYSDTSASDDNGLVAAAVATTGKLVIDFASATAGDDLNTIMSATQMVKITGGGTTGDAPTGGSITGEIFYYVTDPYLGQQNV
Ga0209229_10011464103300027805Freshwater And SedimentDATKTSYAGSMMMVADFYFDPTAANTTTLKRSSTDTRTIVLPIGAIVVEIQVNAAGTGGTSPTFDMGWIGYTDTSALDVDGLIAEGDADAGKTIFTWATATAGDDMGVAMSSTQMVTLTGGVGASAATGGAVSGRILYYVPTDGAYTS
Ga0209702_10002990203300027976FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGSGVMAAKFYINPASADTTTVKISATSTVPVVLPIGAVIVEIQANAAGTGGSTPTFDMGWKGYTDPTAVDANGILSASDADAGKQVFNFASSTAGDDLGLTMSTTQMVTLTGGATTGDAATGGSVTGQILYYVTDPLVGQQSV
Ga0256331_112341313300028286FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAEFYISGASANSVAVQVSSSNTAPVILPVGAVVVQINALCAATGGTTPTFDMGWIGYTNTAQSDDNGLVAAAVATTGKLVINFASATAGDDLNTVISSTQMVKITGGGTTGDAPTGGSISGQILYYVTDQYLGQQNV
Ga0119944_103432313300029930AquaticGKQLPADYMQIAIPNSHVRTIQMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYIDPTDADTTAVQVSSSNTAPVILPIGAVVVQINANAAGTGGTTPTFDMGWIGYTNTSSSDPNGLLSAADADAGKQVFTWASATAGDDLGVVMSATQMVKITGGATTGDGPTGGSITGQILYYVTDPYLGQQNV
Ga0315907_1012424953300031758FreshwaterMALSTTQSIWRSGGGDNTRTAYCGTGLMAAQFYIDPSAVDTTTAKVSSAAGAPAVVLPAGAVVVEIQANAAGTGGTTPTFDMGWIGYTDPTAVDPNGLLSAADADAGKQVFNWASATAGDDLGVAMSLTQMVTLTGGATTGDGPTGGAITGTILYYVTDPLIGQQNV
Ga0315907_1046570433300031758FreshwaterMAVSTTQSIWRSGGGDTTRTAYCGTGLMVAQFYFDPTAADTTAVQISSTNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGAIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQNV
Ga0315900_1017337913300031787FreshwaterPAGHVRLARRVIKRGLYAPFFVVYKGSNSGIYPVRQTGSRPDFMQIDVPNRMRKNMALSTTQSIWRSGGGDNTRTAYCGTGLMAAQFYIDPSAADTTTVKVSSAAGAPAVVLPAGAVVVEIQANAAGTGGTTPTFDMGWIGYTDPTAVDPNGLLSAADADAGKQVFNWASATAGDDLGVAMSLTQMVTLTGGATTGDGPTGGAITGTILYYVTDPLIGQQNV
Ga0315909_1001834993300031857FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYIDPTDADTTAVQVSSSNTAPVILPAGAVVVQINANAAGTGGTTPTFDMGWIGYTDTTAVDPNGLLSAADADAGKQVFNWASATAGDDLGVIMSATQMVKITGGGTTGDEPTGGSITGQILYYVTDPYLGQQNV
Ga0315909_1073252313300031857FreshwaterMPTTSTTTSVWRSGGGDSTKTSYAGSMLMVADFYIDPTADDTTAVQKSASNAAAVILPVGAVVVEIHADAAGTGGSTPTFDMGWVGYTDATATDLNGLLAAADADAGKQVLNWASATAGDDLGVAMSATQMVKLTGGGTTGDKATGGTITGKIFYYVPTDGAYTG
Ga0315909_1084917213300031857FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYFDPTAADTTAVQVSSANTAPVILPIGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVVMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYI
Ga0315904_1005408073300031951FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYIDPTDADTTAVQISSSNTAPVILPIGAVIVQINANAAGTGGTTPTFDMGWIGYSDTSASDPNGLLSAADADAGKQVFDWASATAGDDLGVTMSTSQMVKITGGGTTGDAPTGGSITGQILYYVTDPYLGQQNV
Ga0315904_1023878413300031951FreshwaterMALSTTQSIWRSGGGDQTRTAYCGSGVMAAQFYIDPSAADTTTVKISSAAGAPAVVLPAGAVIVEIQANAAGTGGTTPTFDMGWIGYTDPTAVDPNGLLSAADADAGKQVFNFASATAGDDLGVAMSLTQMVTLTGGATTGDGPTGGAITGTILYYVTDPLIGQQNV
Ga0315904_1025018813300031951FreshwaterDQTRTAYCGTGLMVAQFYFDPTAADTTAVQVSSANTAPVILPIGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVVMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQNV
Ga0315904_1036659253300031951FreshwaterSTTQAIWRSGGGDQTRTAYCGTGLMVAQFYFDPTAADTTAVQISSSNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLISAGDADAGKQVFDWSTATAGDDMGAIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQNV
Ga0315904_1039468723300031951FreshwaterMAVSTTQSIWRSGGGDQTRTAYCGTGLMVAQFYIDPTDADTTAVQVSSSNTAPVILPAGAVVVQINANAAGTGGTTPTFDMGWIGYTDTTAVDPNGLLSAADADAGKQVFNWASATAGDDLGVIMSATQMVKITGGGTTGDEPTGGSITGQIL
Ga0315906_1025809313300032050FreshwaterMALSTTQSIWRSGGGDNTRTAYCGTGLMAAQFYIDPSAVDTTTAKISSAAGAPAVVLPAGAVVVEIQANAAGTGGTTPTFDMGWIGYTDPTAVDPNGLLSAADADAGKQVFNWASATAGDDLGVAMSLTQMVTLTGGATTGDGPTGGAITGTILYYVTDPLIGQQNV
Ga0315902_1001609153300032093FreshwaterMALSTTQSIWRSGGGDNTRTAYCGTGLMAAQFYIDPSAADTTTVKVSSAAGAPAVVLPAGAVVVEIQANAAGTGGTTPTFDMGWIGYTDPTAVDPNGLLSAADADAGKQVFNWASATAGDDLGVAMSLTQMVTLTGGATTGDGPTGGAITGTILYYVTDPLIGQQNV
Ga0316616_10251618123300033521SoilMAISTTQAIWRSGGGDQTRTAYCGSGLMAASFYLDPTAADTTTVKVSSASGAPAVVLPAGAVIVEIQANAAGTGGTTPTFDMGWIGYTDATALDANGLLDAADADAGKQVFDWATAGAGNDLGVVMSSTQM
Ga0334981_0014675_2245_26643300033980FreshwaterMVAQFYFDPTAADTTAVQISSSNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGAIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQNV
Ga0334981_0032046_1480_18993300033980FreshwaterMVAQFYFDPTAADTTAVQVSSSNTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGAIMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPYLGQQNV
Ga0310130_0004328_4940_53593300034073Fracking WaterMVAQFYFDPTAADTTAVQVSSANTAPVILPAGAVVVQVNINAAGTGGTTPTFDMGWIGYSDTSASDPNGLIAAGDADAGKQVFDWSTATAGDDMGVVMSATQMVKITAGATTGDAPTGGTASGQILYYVTDPFLGQQNV
Ga0335036_0157845_349_8883300034106FreshwaterMQIDVPNRMRKNMALSTTQSIWRSGGGDNTRTAYCGTGLMAAQFYIDPSAVDTTTAKISSAAGAPAVVLPAGAVIVEIQANAAGTGGTTPTFDMGWIGYTDTAVSDPNGLLSAADADAGKQVFNFASATAGDDLGVAMSLTQMVTLTGGATTGDGPTGGAITGTILYYVTDPLIGQQNV
Ga0335051_0198186_353_7723300034109FreshwaterMVAEFYISGASANSVAVQVSSTNTAPVILPAGAVVTQINALCAATGGTTPTFDMGWIGYSDTSASDDNGLVAAAVATTGKLVIDFASATAGDDLNTIMSATQMVKITGGGTTGDAPTGGSITGEIFYYVTDPYLGQQNV


 ⦗Top⦘


© Pavlopoulos Lab, Bioinformatics & Integrative Biology | B.S.R.C. "Alexander Fleming" | Privacy Notice
Make sure JavaScript is enabled in your browser settings to achieve functionality.