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 F100731

Metagenome / Metatranscriptome Family F100731

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Overview Alignments Structure & Topology Gene Neighborhood Phylogeny Ecosystems Sequences
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Overview

Basic Information
Family ID F100731
Family Type Metagenome / Metatranscriptome
Number of Sequences 102
Average Sequence Length 206 residues
Representative Sequence FANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTDASNQVTIN
Number of Associated Samples 67
Number of Associated Scaffolds 102

Quality Assessment
Transcriptomic Evidence Yes
Most common taxonomic group Unclassified
% of genes with valid RBS motifs 0.00 %
% of genes near scaffold ends (potentially truncated) 2.94 %
% of genes from short scaffolds (< 2000 bps) 2.94 %
Associated GOLD sequencing projects 56
AlphaFold2 3D model prediction Yes
3D model pTM-score0.25

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 (100.000 % of family members)
NCBI Taxonomy ID N/A
Taxonomy N/A

Most Common Ecosystem
GOLD Ecosystem Environmental → Aquatic → Marine → Coastal → Unclassified → Aqueous
(48.039 % of family members)
Environment Ontology (ENVO) Unclassified
(57.843 % of family members)
Earth Microbiome Project Ontology (EMPO) Free-living → Saline → Water (saline)
(59.804 % 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: 2.42%    β-sheet: 13.71%    Coil/Unstructured: 83.87%
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: 0.25
Powered by PDBe Molstar

Low Quality Model:

This family has a low confidence model (pTM < 0.7) and has not been screened against SCOPe or PDB.


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Gene Neighborhood

Neighboring Pfam domains

Pfam IDName % Frequency in 102 Family Scaffolds
PF14550Peptidase_S78_2 0.98



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Phylogeny

NCBI Taxonomy

NameRankTaxonomyDistribution
UnclassifiedrootN/A100.00 %

Visualization
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Associated Scaffolds


ScaffoldTaxonomyLengthIMG/M Link
3300006802|Ga0070749_10322433Not Available863Open in IMG/M
3300025769|Ga0208767_1131900Not Available940Open in IMG/M
3300027693|Ga0209704_1063967Not Available1019Open in IMG/M



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Environmental Properties

Associated Habitat Types

Select Environment Taxonomy Level:
HabitatTaxonomyDistribution
AqueousEnvironmental → Aquatic → Marine → Coastal → Unclassified → Aqueous48.04%
SoilEnvironmental → Terrestrial → Soil → Clay → Unclassified → Soil13.73%
Freshwater LakeEnvironmental → Aquatic → Freshwater → Lentic → Unclassified → Freshwater Lake9.80%
Freshwater To Marine Saline GradientEnvironmental → Aquatic → Marine → Coastal → Unclassified → Freshwater To Marine Saline Gradient7.84%
Freshwater SedimentEnvironmental → Aquatic → Freshwater → Sediment → Unclassified → Freshwater Sediment4.90%
SedimentEnvironmental → Aquatic → Freshwater → Sediment → Unclassified → Sediment1.96%
FreshwaterEnvironmental → Aquatic → Freshwater → Lake → Unclassified → Freshwater1.96%
Estuarine WaterEnvironmental → Aquatic → Marine → Unclassified → Unclassified → Estuarine Water1.96%
Saline WaterEnvironmental → Aquatic → Non-Marine Saline And Alkaline → Saline → Unclassified → Saline Water1.96%
Saline Water And SedimentEnvironmental → Aquatic → Non-Marine Saline And Alkaline → Saline → Sediment → Saline Water And Sediment1.96%
Meromictic PondEnvironmental → Aquatic → Unclassified → Unclassified → Unclassified → Meromictic Pond1.96%
Macroalgal SurfaceHost-Associated → Algae → Green Algae → Ectosymbionts → Unclassified → Macroalgal Surface1.96%
MarineEnvironmental → Aquatic → Marine → Intertidal Zone → Unclassified → Marine0.98%
EstuarineEnvironmental → Aquatic → Marine → Unclassified → Unclassified → Estuarine0.98%

Visualization
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Associated Samples

Taxon OIDSample NameHabitat TypeIMG/M Link
2020350000Saline water microbial communities from Qinghai Lake, Tibetan Plateau - High mountain lake (assembled)EnvironmentalOpen in IMG/M
2199352018Saline water microbial communities from Qinghai Lake, Tibetan Plateau -Sample 11630EnvironmentalOpen in IMG/M
3300000947Macroalgal surface ecosystem from Botany Bay, Sydney, Australia - BBAY92Host-AssociatedOpen in IMG/M
3300000949Macroalgal surface ecosystem from Botany Bay, Sydney, Australia - BBAY94Host-AssociatedOpen in IMG/M
3300001952Marine microbial communities from Newport Harbor, Rhode Island, USA - GS008EnvironmentalOpen in IMG/M
3300005346Saline sediment microbial community from Etoliko Lagoon, GreeceEnvironmentalOpen in IMG/M
3300005613Saline sediment microbial communities from Etoliko Lagoon, Greece - sedimentEnvironmentalOpen 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
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
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
3300007236Aqueous 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
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
3300007538Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_2 Viral MetaGEnvironmentalOpen in IMG/M
3300007539Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_1M Viral MetaGEnvironmentalOpen in IMG/M
3300007540Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1504_2 Viral MetaGEnvironmentalOpen in IMG/M
3300007541Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_1S Viral MetaGEnvironmentalOpen 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
3300009085Freshwater sediment microbial communities from Prairie Pothole Lake near Jamestown, North Dakota, USA - PPLs Lake P7 Core (6) Depth 10-12cm September2015EnvironmentalOpen in IMG/M
3300009146Freshwater sediment microbial communities from Prairie Pothole Lake near Jamestown, North Dakota, USA - PPLs Lake P7 Core (1) Depth 10-12cm March2015EnvironmentalOpen 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
3300009169Freshwater sediment microbial communities from Prairie Pothole Lake near Jamestown, North Dakota, USA - PPLs Lake P7 Core (1) Depth 10-12cm May2015EnvironmentalOpen in IMG/M
3300009450Aquatic microbial communities from different depth of meromictic Siders Pond, Falmouth, Massachusetts; Cast 1, 4m depth; DNA IDBA-UDEnvironmentalOpen in IMG/M
3300009474Aquatic microbial communities from different depth of meromictic Siders Pond, Falmouth, Massachusetts; Cast 1, 3m depth; DNA IDBA-UDEnvironmentalOpen in IMG/M
3300009504Lake sediment microbial communities from Walker lake, Nevada to study Microbial Dark Matter (Phase II) - Walker Lake 11/02/13 Deep SedimentEnvironmentalOpen in IMG/M
3300010297Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Sum_20_0.8_DNAEnvironmentalOpen in IMG/M
3300010316Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Spr_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
3300010370Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Sum_0.6_0.2_DNAEnvironmentalOpen in IMG/M
3300017697Freshwater to marine salinity gradient microbial communities from Chesapeake Bay, USA - CPBay_Spr_31_0.2_DNA (version 2)EnvironmentalOpen in IMG/M
3300017701Freshwater viral communities from Lake Michigan, USA - Fa13.ND.MM110.S.NEnvironmentalOpen in IMG/M
3300017723Freshwater viral communities from Lake Michigan, USA - Su13.ND.MM110.S.NEnvironmentalOpen in IMG/M
3300017736Freshwater viral communities from Lake Michigan, USA - Fa13.ND.MM110.D.NEnvironmentalOpen in IMG/M
3300017780Freshwater viral communities from Lake Michigan, USA - Su13.VD.MM15.D.NEnvironmentalOpen in IMG/M
3300017784Freshwater viral communities from Lake Michigan, USA - Su13.VD.MM110.D.NEnvironmentalOpen in IMG/M
3300017785Freshwater viral communities from Lake Michigan, USA - Fa13.VD.MM15.D.NEnvironmentalOpen in IMG/M
3300018682Metatranscriptome of marine microbial communities from Baltic Sea - GS680_0p1EnvironmentalOpen in IMG/M
3300019784Freshwater viral communities from Lake Michigan, USA - Fa13.VD.MM15.S.DEnvironmentalOpen in IMG/M
3300021961Estuarine water microbial communities from San Francisco Bay, California, United States - C33_3DEnvironmentalOpen in IMG/M
3300021964Estuarine water microbial communities from San Francisco Bay, California, United States - C33_34DEnvironmentalOpen in IMG/M
3300022065Aqueous 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 (v2)EnvironmentalOpen in IMG/M
3300022169Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1504_2 Viral MetaG (v3)EnvironmentalOpen in IMG/M
3300022183Aqueous 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 (v3)EnvironmentalOpen 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
3300024346Whole water sample coassemblyEnvironmentalOpen in IMG/M
3300025630Aqueous 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
3300025646Freshwater to marine saline gradient viral communities from Chesapeake Bay - CB_1508_1S Viral MetaG (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
3300025803Aqueous 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_DNA (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
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
3300027693Freshwater sediment microbial communities from Prairie Pothole Lake near Jamestown, North Dakota, USA - PPLs Lake P7 Core (6) Depth 1-3cm September2015 (SPAdes)EnvironmentalOpen in IMG/M
3300027798Freshwater lake microbial communities from Lake Michigan, USA - Sp13.BD.MM15.SD (SPAdes)EnvironmentalOpen in IMG/M
3300027808Freshwater lake microbial communities from Lake Michigan, USA - Sp13.BD.MM15.DD (SPAdes)EnvironmentalOpen in IMG/M
3300031539Soil microbial communities from Risofladan, Vaasa, Finland - UN-3EnvironmentalOpen in IMG/M
3300031565Soil microbial communities from Risofladan, Vaasa, Finland - UN-2EnvironmentalOpen in IMG/M
3300031566Soil microbial communities from Risofladan, Vaasa, Finland - UN-1EnvironmentalOpen in IMG/M
3300031578Soil microbial communities from Risofladan, Vaasa, Finland - TR-2EnvironmentalOpen in IMG/M
3300031673Soil microbial communities from Risofladan, Vaasa, Finland - TR-3EnvironmentalOpen in IMG/M
3300034013Freshwater microbial communities from Lake Mendota, Madison, Wisconsin, United States - TYMEFLIES-ME07Jun2018-rr0034EnvironmentalOpen in IMG/M
3300034108Freshwater microbial communities from Lake Mendota, Madison, Wisconsin, United States - TYMEFLIES-ME24Jun2014-rr0157EnvironmentalOpen 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
Qinghai_415002020350000Saline WaterQFDLSFGMPRAVLPLGFKYSNQNLINIFYYKTIAEIIDKNSKLFCGYFRITPNEYANIAFNSLYFFEGQYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNTKPIGVGGQDTDNVFNPDFFVIDGEPKVKSIKVIGGGLDTGDNNGNSDDAVMMGTGITNFGKYNAVFAGQDVFVGQFDNVTAIRCTDFEIPEGDRVYVENYPVVGAWLGSGKVVNITNAD
QLA_006796202199352018Saline WaterLSFGMPRAVLPLGFKYSNQNLINIFYYKTIAEIIDKNSKLFCGYFRITPNEYANIAFNSLYFFEGQYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNTKPIGVGGQDTDNVFNPDFFVIDGEPKVKSIKVIGGGLDTGDNNGNSDDAVMMGTGITNFGKYNAVFAGQDVFVGQFDNVTAIRCTDFEIPEGDRVYV
BBAY92_1019469313300000947Macroalgal SurfaceYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKPNKKGIGVGGSDTDNPINPDFYTLDGEPPIKWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCNDYEIPQGDRVYVENYPVVGAWLGSGKIVNITNADSPYLALYDDWLILCDTSGGDI
BBAY94_1012320113300000949Macroalgal SurfaceYWRLNKVIDFNPTQEGLTQCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITVTLPQPSSANKGKMYVVKKTESANQVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDGT
GOS2224_104050013300001952MarineYFRLNPNTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYPPSKPNSKGIGVGGSDTDNPVNPDFFTLDGEPQIKWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNTILAGENVFIGQFDNTTTIHCNDFQVPQGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTEAANQVTINAGDGSVLIDDSTSHSENAKNGYDQVVSDGTQYWIITHG
Ga0074242_1187581813300005346Saline Water And SedimentRICNIRFNSLYFFEGQYWRLNKVIDFNPTREGLTECEFLLASYYPPSKPNKKGIGVGGSDTDNPINPDFFTLDGEPPIRWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCSDFEIPERR*
Ga0074649_103612913300005613Saline Water And SedimentSYYPPSKPNKKAIGVGGSDTDNPVNPDFYTLDGEPKVKNTKNTSGGLNAGDNFGSSDDVIILGEGNTNLGKYNTILAGENVFVGQFDNVTAIHCSDFEIPQGDRVYVENYPVVGAWLGSGKVVNLTNADSPYIAKYDDWLILCNTDGGNITVTLPQPTEANKGKMYVVKKTSASHNVTINAGDGSVLIDDATSHTDNAKNGYDQVVSDGTQYWIITHGH*
Ga0075462_1012115013300006027AqueousFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFILAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTEASNQVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH*
Ga0070749_1002634113300006802AqueousPVNPDFYTLDGEPQIKWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNAVFAGENVFVGNFDNVTAIHCSDFEIPQGDRVYVENYPVVGAWLGSGKIVSLTSADSPYIAKYDDWLILCNTDGGSITVTLPQPTEANKGKVFVVKKTTAPNSVTINAGEGGVLIDDATSHVDNAKNGYDQVVSDGTQYWILTHGH*
Ga0070749_1016111013300006802AqueousGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGENVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKIVTITDADSPYLATYDDWLILCDTTNASITVTLPTPTSANKGKMYVVKKTESSHSVTINAGDGSVLIDDSNSHTENAKNGYDQVVSDGTQYWIITHGH*
Ga0070749_1032243323300006802AqueousPDFYSFDGEPPIRNTKGTSGGLNSGDNIGTSDDGIIIGNNNSNYGTFNTILAGTSVSIPVGFNNTTTIHCDDFSVPEPDRVYVENYPVVGAWLGSGKIVTITDADSPYLATYDDWLILCDTTGNSITVTLPTPTAANKGKMYVVKKTASSNSVTIDAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH*
Ga0070749_1056725513300006802AqueousQTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPTPSAANK
Ga0070749_1057317613300006802AqueousSLYFFEGQYWRLNKVIDFNPSAEGLTKCEFLLAQYYAPSVSNNKGVGEGGFDTDNAFNPDFYSFDGEPPIRNTKGTSGGLNSGDNIGTSDDGIIIGNNNSNYGTFNTILAGTSVSIPVGFNNTTTIHCDDFAVPEPDRVYVENYPVVGAWLGSGKIVSITDADSPYLATYDDWLILCDTSGGSITVTLPTPTAANKGKMYVV
Ga0070749_1071449613300006802AqueousIDKNSKIFRGYFRINPQTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFILAGYYPPSKPNKKGIGVGGPDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTINCNDFEVPEGDRVYVENYPVVGAWLGSG
Ga0070749_1072752813300006802AqueousMPTYAVLPLGFQYSNQNLVNVYYYKTIAEIIDKNSKIFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPIEEGLTQCEFLLAGYYPPSKSNYKPIGVGGSDTDNPLNPDFYTLDGEPPIKWGKNHGGGLNSGDNIGTGDDAIMMGTGNTNYGKYNAVFAGENVFVGQFD
Ga0070754_1022854613300006810AqueousNIRFNSLYFFEGQYWRLNKVIDFNPTKEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGVDSGDNFGSSDDTVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTDASNQVTINAGDGSVLIDDETSHSDNAKNGYDQVVSDGTQYWIITHGH*
Ga0070750_1004015613300006916AqueousGEPQIKWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCNDFEIPQGDRVYVENYPVVGAWLGSGKIVSLTSADSPYIAKYDDWLILCNTDGGSITVTLPQPTEANKGKVFVVKKTTAPNSVTINAGEGGVLIDDATSHTDNAKNGYDQVVSDGTQYWILTHGH*
Ga0070750_1046986213300006916AqueousKTIAEIIDKNSKIFRGYFRINPQTFTNIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVE
Ga0070746_1005930413300006919AqueousRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSEANKGKMYVVKKTDASNQVTINAGDGSVLIDDATSHASNAKNGYDQVVSDGTQYWIITHGH*
Ga0070746_1008711123300006919AqueousILAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGENVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKIVTITDADSPYLATYDDWLILCDTTNASITVTLPTPTSANKGKMYVVKKTESSHSVTINAGDGSVLIDDSNSHTENAKNGYDQVVSDGTQYWIITHGH*
Ga0070746_1023940723300006919AqueousQEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTESANQVTINAGDGSVLIDDSTSHSDNAKNGYDQVVSDGTQYWIITHGH*
Ga0070746_1035761813300006919AqueousFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTDASNQVTIN
Ga0070746_1045660113300006919AqueousTPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYAPSKSNYKPIGVGGKDTDNPVNPDFYTLDGEPQIKWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNAVFAGENVFVGNFDNVTAIHCNDFEIPQGDRVYVENYPVVGAWLGSGKIVSLTSADSPYIAKYDDWLILCN
Ga0070746_1046441813300006919AqueousWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGVGGPDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGINNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPTPSAANK
Ga0070746_1055034013300006919AqueousGDNIGTGDDAVMMGTGNTNYGKYNAVFAGENVFVGNFDNVTAIHCNDFEIPQGDRVYVENYPVVGAWLGSGKIVSLTNADSPYIAKYDDWLILCNTDGGSITVTLPQPTEANKGKVFVVKKTTAPNSVTINAGEGGVLIDDATSHVDNAKNGYDQVVSDGTQYWIL
Ga0075463_1029847713300007236AqueousAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKT
Ga0070745_120733923300007344AqueousDFFTLDGEPQIKWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNTILAGENVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTEASNQVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH*
Ga0099851_102801313300007538AqueousPSAEGLTKCEFLLAQYYAPSVSNNKGVGEGGFDTDNGFNPDFYSFDGEPPIRNTKGTSGGLNSGDNIGTSDDGIIIGNNNSNYGTFNTILAGTSVSIPVGFNNTTTIHCDDFAVPEPDRVYVENYPVVGAWLGSGKIVSITDADSPYIATYDDWLILCDTSGGSITVTLPTPTAANKGKMYVVKKTASSNSVTIDAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH*
Ga0099851_128323313300007538AqueousNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNTKPIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGVDSGDNFGSSDDTVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITVTLPQPSAAN
Ga0099851_135799113300007538AqueousGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGDGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKIINLTNADSPYSATYDDWLILCDTSGGSITVTLPQPS
Ga0099849_124614013300007539AqueousMPQAAVVPLGFQYSNQNLVNVYYYKTIAEIIDKNSKIFRGYFRINPQTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYPPSKPNTKGIGVGGSDTDNPVNPDFYTLDGEPQVKNIKNTSGGVDSGDNFGSSDDSVMMGTSNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTNTDSP
Ga0099849_125965413300007539AqueousQTIANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGIGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSSGSITVTLPQPSAANKGKMYVVK
Ga0099847_112168123300007540AqueousDNPVNPDFYTLDGEPQVKNTKNTSGGVDSGDNFGSSDDTVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTEASNQVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH*
Ga0099848_115318623300007541AqueousTQEGLTKCEVLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTEASNQVTINAGDGSVLIDDATSHSSNAKNGYDQVVSDGTQYWIITHGH*
Ga0099850_129751613300007960AqueousDFNPTKEGLTKCEFLLAGYYPPSKPNTKPIGVGGSDTDNPVNPDFYTLNGEPQVKNTKNTSGGVNSGDNFGSSDDGIIIGDGNTNYGKYNTILAGENVFIGQFDNTTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTEASNQVTINAGDGSVL
Ga0075480_1053233613300008012AqueousYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGVDSGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTINCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPTPSAANKGKMYVVKKTDASNQVTINAGDGSVLI
Ga0105103_1085368113300009085Freshwater SedimentYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNKKPLGVGGQDFDNPVNPDFFTLDGEPPVKNPRTTGGGLDTGDNKGNSDGAVMMGTGNTNFGKYNTIFAGNAVSIVGFDNVTTLHCNNFEVPEGDRVYVENYPVVGAWLGSGKVVTITNAD
Ga0105091_1063603313300009146Freshwater SedimentPLKEELTKCEFLLAGYYAPSKSNKKPIGVGGADTDNPINPDFYTLDGEPAIKWGKNHGGGLNSGDNIGTGDDAIMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCSDFEIPQGDRVYVENYPVVGAWLGSGKVVTVTNADSPYIATYDDWLILCDTSGGSITVTLPTPTQANKGKVYVVKK
Ga0105102_1054443823300009165Freshwater SedimentLFRGYFRITPNEFANITFNSLYFFEGQYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNTKPIGVGGQDFDNPVNPDFFTIEGEPKVKSTKTTGGGLDTGDNKGNSDGAVMMGTGNTNFGKYNNIFAGNAVSIVGLD
Ga0105097_1024096523300009169Freshwater SedimentFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNKKPLGVGGQDFDNPVNPDFFTIEGEPKVKNTGGSGGGIDTGDNKGNSDGAVMMGTGNTNFGKYNTIFAGNAVSIIGLDNVTTLHCDNFEVPEGDRVYVENYPVVGAWLGSGKVVTITNADSPYLPTYDDWLILCNTASGSITVTLPTPTAANKGKVYVVKKTASSHNVTINASDGSVLIDDDTSHTENAKNGYDQVVSDGTQYWILSEGH*
Ga0127391_104420913300009450Meromictic PondFYTLDGEPQVKNTKNTCGGMDTGDNFGNSDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCSDFEIPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYLATYDDWLILCDTSGGNITVTFPTPSAANKGKVFVVKKTESAHQVTINAGDGSVLIDDSTSHSENAKNGYDQVVSDGNQYWILTHGH*
Ga0127390_118819313300009474Meromictic PondGYYAPSKSNKKPIGVGGADTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNSVFAGQNVYIGQFDNVTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYLATYDDWLILCDTSGGNITVTFPTPSAANKGKVFVVKKT
Ga0114946_1022880123300009504SedimentNSLYFFEGQYWRLNKVIDFNPLKEELTKCEFLLAGYYAPSKSNKKPIGVGGSDTDNPINPDFFTLDGEPAIKWGKNHGGGLNSGDNIGTGDDAIMMGTGNTNYGKYNAVFAGENVFIGQFDNVTTIHCKDFEVPQGDRVYVENYPVVGAWLGSGKVVTVTNSPYTVQYDDWLILCNTTGGSITVVLPTPTQANKGKMFVVKKTVSSNQISIIAGDGSILIDDSTSHTQNQKNGYDQVVSDGTQYWILTHGH*
Ga0114946_1064964013300009504SedimentIIDKNSKIFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPLKEELTKCEFLLAGYYAPSKSNKKPIGVGGADTDNPINPDFYTLDGEPQIKNSKNTSGGLNTGDNFGSSDDAIVMGDNNTNLGKYNTILAGDAVSILGFDNVTTIHCNDFEVPQGDRVYVENYPVVGAWLG
Ga0129345_132555813300010297Freshwater To Marine Saline GradientRINPQTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTNTDS
Ga0129345_132621013300010297Freshwater To Marine Saline GradientAGYYPPSKPNKKGIGIGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTEASN
Ga0136655_106075213300010316Freshwater To Marine Saline GradientRGYFRINPQTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTEASNQVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH*
Ga0129324_1027161813300010368Freshwater To Marine Saline GradientKTIAEIIDKNSKIFRGYFRLNPNTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNTKPIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGDGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKIINLTNADSPYSATYDDWLILCDTSGGSITVTLPQPSA
Ga0129324_1037660313300010368Freshwater To Marine Saline GradientDKNSKIFRGYFRINPQTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGIGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLT
Ga0129324_1038161113300010368Freshwater To Marine Saline GradientEGQYWRLNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGVDSGDNFGSSDDTVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITV
Ga0129336_1018508813300010370Freshwater To Marine Saline GradientDNGFNPDFYSFDGEPPIRNTKGTSGGLNSGDNIGTSDDGIIIGNNNSNYGTFNTILAGTSVSIPVGFNNTTTIHCDDFAVPEPDRVYVENYPVVGAWLGSGKIVSITDADSPYLATYDDWLILCDTSGGSITVTLPTPTAANKGKMYVVKKTASSNSVTIDAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH*
Ga0180120_1012209713300017697Freshwater To Marine Saline GradientEGLTQCEFLLAGYYPPSKPNKKGIGIGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGVDSGDNFGSSDDTVMMGTGNTNYGKYNTILAGDGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTEASNQVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH
Ga0181364_107319313300017701Freshwater LakePLGFNYSNQNLVNVYYYKTIAEIIDKNSKIFKGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPMQEGLTQCEFLLAGYYPPSKSNTKPIGVGGQDTDNPVNPDFFTLDGEPQIKNSKNTSGGLNTGQNFGSSDDSVVMGINNTNQGKYNTIFAGDAVSILGFDNVTTIH
Ga0181362_106692513300017723Freshwater LakeLFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNTKPLGVGGQDTDNPVNPDFFTLEAEPPVKNPRTTGGGLDTGDNKGNSDGAVMMGTGNTNFGKYNTIFAGKNVDIIGFDNVTTLHC
Ga0181365_117092913300017736Freshwater LakeLFRGYFRITPNEFANITFNSLYFFEGQYWRLNKVIDFNPTEEGLTQCEFLLAGYYPPSKSNKTPIGVGGQDFDNPINPDFFTIEGEPKVKNTKATGGGMDTGDNFGNSDDAVMMGTGNTNFGKYNTIFAGQNVFIGQFDNVTTLHCNDFEVPQGDRVYVENYPVVGAWLG
Ga0181346_123816813300017780Freshwater LakeDLSFGMPPSSYVPLGLNYSNQNLVNVYYYKTIAEIIDKNSKLFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNTKPLGVGGQDTDNPVNPDFYTLEGEPPVKNPRTTGGGLDTGDNKGNSDGAVMMGTGNTNFGKYNTIFAGKNVDIIGFDNVTTLHCTDFEVPEGDRVYVENYPVVGAWLGSG
Ga0181348_130788213300017784Freshwater LakeRLNKVIDFNPTEEGLTQCEFLLAGYYPPSKSNKTPIGVGGQDFDNPVNPDFFTIEGEPKVKTIKATGGGMDTGDNNGSGDDVVIMGTGNTNYGKYNTIFAGKNVFVGQFDNVTTLHCTDFEVPQGDRVYVENYPVVGAWLGSGKVTTITNANSPYTATYDDWLILCNTTGGNITV
Ga0181355_137228013300017785Freshwater LakeRFNSLYFFEGQYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNTKPLGVGGQDTDNPVNPDFFTLEGEPPVKNPRTTGGGLDTGDNKGNSDGAVMMGTGNTNFGKYNTIFAGKNVDIIGFDNVTTLHCTDFEVPEGDRVYVENYPVVGAWLGSGKITTITNANSPYTATYD
Ga0188851_101777513300018682Freshwater LakeEGQYWRLNKVIDFNPTQEGLTQCEFLLASYYPPSKPNTKPIGVGGSDTDNPVNPDFYTLDGEPPIKNTKTTSGGLNAGDNFGSSDDVIILGEGNSNLGKYNTILAGENVFVGQFDNTTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYLATYDDWLILCNTSGGNITVTLPTPTQANKGKMFVVKKTSASHQVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH
Ga0181359_106918813300019784Freshwater LakeWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNTKPLGVGGQDTDNPVNPDFFTLEGEPPVKNPRTTGGGLDTGDNKGNSDGAVMMGTGNTNFGKYNTIFAGNAVSIVGFDNVTTLHCTDFEVPEGDRVYVENYPVVGAWLGSGKITTITNANSPYTATYDDWLILCNTTGGNITVTLPTPSQSNKGKVFVVKKSTASHTVTINAGDGSILIDDATSHTANAKNSYDQVVSDGTQYWILTHGH
Ga0222714_1050028213300021961Estuarine WaterNTKGIGIGGTDTDNPINPDFYSLEGEPQVSVTKSNSGGLNAGQNIGTGDDSIMLGENNTNNGKYNTLLASEGVYVGQFDNVTAIHCKDFEIPESDRVYVENYPVVGAWLAGGKIVNLTVADSPHLATYDDWLILCDTGSGSITVTLPTPTAANKGKVYVVKKTASSNQVTINAGDGTILIDDSTSHSENAKNGYDQLVSDGSQYWIL
Ga0222719_1060580723300021964Estuarine WaterKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNVTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKITNLVYTDSPYSATYDDWLILCDTTGGSITVTLPQPTEANKGKVFVVKKTQAANQVTINAGEGGVLIDDATSHTDNAKNGYDQVVSDGTQYWILTHGH
Ga0212024_108112013300022065AqueousFFEGQYWRLNKVIDFNPTQEGLTKCEFILAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGINNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANK
Ga0196903_104284413300022169AqueousIGGSDTDNPVNPDFYTLNGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGDGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTDASNQVTINAGDGSVLI
Ga0196891_103500613300022183AqueousDNPVNPDFYTLDGEPQIKWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCNDFEIPQGDRVYVENYPVVGAWLGSGKIVSLTNADSPYIAKYDDWLILCNTDGGSITVTLPQPTEANKGKVFVVKKTTAPNSVTINAGEGGVLIDDATSHTDNAKNGYDQVVSDGTQYWILTHGH
Ga0196891_108779813300022183AqueousSKIFRGYFRIHPQTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFILAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGINNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTNL
Ga0196905_113031713300022198AqueousYWRLNKVIDFNPGAEGLTKCEFLLAQYYTPSVSNNRGIGVGGFDTDNAFNPDFYTLDGDIRINNSKGSTGGLNSGDNIGTSDDGIVMGDNNTNYGTYNTILAGNGVTIPIGFNNTTTIHCDDFLTPEPDRVYVENYPVVGAWLGSGKIVSITDADSPYIATYDDWLILCDTSGGSITVTLPTPTAANKGKMYVVKKTASSNSVTIDAGDGSVLIDDAT
Ga0196901_120040613300022200AqueousLGFAYSNQNLVNVYYYKTIAEIIDKNSKIFRGYFRITPNQFANIRFNSLYFFEGQYWRLNKVIDFNPLKEELTKCEFLLAGYYAPSKTNRKPIGVGGADTDNPVNPDFYTLDGEPQIKNTKNTSGGMDTGDNFGSSDDAVMMGVGNTNFGKYNAVFAGENVFVGQFDNVTAIHCSDFEIPQGDRVYVENYPVVGAWLGSGKVVNITDADSPYL
Ga0196901_120571813300022200AqueousIFRGYFRLNASTFANIRFNSLYFFEGQYWRLNKVIDFNPSAEGLTKCEFLLAQYYTPSVSNNRGIGVGGFDTDNAFNPDFYTLDGDIRINNSKGSTGGLNSGDNIGTSDDGIVMGDNNTNYGTYNTILAGNGVTIPVGFNNTTTIHCDDFLTPEPDRVYVENYPVVGAWLGSGKIVSITDADSPYIATYDDWLILCDTSGGSITVTLPTP
Ga0244775_1154501113300024346EstuarineRLNKVIDFNPTQEGLTQCEFLLAGYYAPSKSNYKPIGVGGSDTDNPINPDFYTLDGEPQIKWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCNDFEIPQGDRVYVENYPVVGAWLGSGKVVNLTNADSPYIAKYDDWLILCNT
Ga0208004_112418013300025630AqueousGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGENVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPTPTAANKGKMYVVKKTASSNSVTIDAGDGSVLIDDATSHSDNAKNGYDQVVSD
Ga0208161_112121313300025646AqueousNSKIFRGYFRLNASTFANIRFNSLYFFEGQYWRLNKVIDFNPGAEGLTKCEFLLAQYYAPSVSNNKGVGEGGFDTDNGFNPDFYSFDGEPPIRNTKGTSGGLNSGDNIGTSDDGIIIGNNNSNYGTFNTILAGTSVSIPVGFNNTTTIHCDDFAVPEPDRVYVENYPVVGAWLGSGKIVSITDADSPYLATYDDWLILCDTSGGSITVTLPTPTAANKGKVYVVKKTASS
Ga0208019_116711013300025687AqueousFLLAGYYPPSKPNKKGIGIGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSSGSITVTLPQPSAANKGKMYVVKKTEASNQVTINAGDGSVLIDDSTSHSDN
Ga0208899_105070913300025759AqueousKNSKIFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYAPSKSNYKPIGVGGKDTDNPVNPDFYTLDGEPQIKWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCNDFEIPQGDRVYVENYPVVGAWLGSGKIVSLTSADSPYIAKYDDWLILCNTDGGSITVTLPQPTEANKGKVFVVKKTTAPNSVTINAGEGGVLIDDATSHTDNAKNGYDQVVSDGTQYWILTHGH
Ga0208899_117143813300025759AqueousYKTIAEIIDKNSKIFRGYFRINPQTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFILAGYYPPSKPNKKGIGVGGPDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGINNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKVFVVKKTESA
Ga0208767_113190013300025769AqueousILAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGENVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKIVTITDADSPYLATYDDWLILCDTTNASITVTLPTPTSANKGKMYVVKKTESSHSVTINAGDGSVLIDDSNSHTENAKNGYDQVVSDGTQYWIITHGH
Ga0208767_119606713300025769AqueousNKVIDFNPTQEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPQPSAANKGKMYVVKKTESANQVTINAGDGSVLIDDSTSHSDNAKNGYDQVV
Ga0208425_109233413300025803AqueousFGMPQSAVVPLGFQYSNQNLVNVYYYKTIAEIIDKNSKIFRGYFRINPQTFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTKCEFILAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTNTDSPYSATYDDWLILCDTSG
Ga0208542_116375613300025818AqueousEGLTKCEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFQVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPTPSAANKGKMYVVKKTDASNQVTINAGDGSVL
Ga0208644_136052713300025889AqueousQNLVNVYYYKTIAEIIDKNSKIFKGYFRITPNQFANIRFNALYFFEGQYWRLNKVIDFNPLTESLTQCEFLLASYYAPSKPNTKGIGIGGTDTDNPINPDFYSLEGEPQVSVTKSNSGGLNAGQNIGTGDDSIMLGENNTNNGKYNTLLASEGVFVGQFDNVTAIHCKDFEIPESDRVYVENY
Ga0208644_137196013300025889AqueousDFNPSAEGLTKCEFLLAQYYTPSVSNNRGIGVGGFDTDNAFNPDFYTLDGDIRINNSKGSTGGLNSGDNIGTSDDGIVMGDNNTNYGTYNTILAGNGVTIPVGFNNTTTIHCDDFLTPEPDRVYVENYPVVGAWLGSGKIVSITDADSPYIATYDDWLILCDTSGGSITVTLPTPSAA
Ga0208644_137836113300025889AqueousEFLLAGYYPPSKPNKKGIGVGGSDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGSSDDAVMMGTGNTNYGKYNTILAGEGVFIGQFDNTTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKITNLTSTDSPYSATYDDWLILCDTSGGSITVTLPTPSAANKGKMYVVKK
Ga0209704_106396723300027693Freshwater SedimentRLNKVIDFNPMQEGLTQCEFLLAGYYPPSKSNTKPIGVGGQDTDNPVNPDFFTLDGEPQIKNSKNTSGGLNTGDNYGSSDDAVVMGVNNTNQGKYNTIFAGDAVSILGFDNVTTIHCNDFEVPEGDRVYVENYPVVGAWLGSGKIVTITNANSPYLPTYDDWLILCNTASGSITVTLPTPTAANKGKVYVVKKTSASHNVTINAGDGSVLIDDDTSHTENAKNGYDQLVSDGTQYWILSEGH
Ga0209353_1040231413300027798Freshwater LakeLVNVYYYKTIAEIIDKNSKLFRGYFRITPNEFANITFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYPPSKSNKTPIGVGGQDFDNPVNPDFFTIEGEPKVKTIKATGGGMDTGDNNGSGDDVVMMGTGNTNYGKYNTIFAGKNVFVGQFDNVTTLHCTDFEVPQGDRVYVENYPVVGAW
Ga0209354_1006283313300027808Freshwater LakeKTIAEIIDKNSKLFRGYFRITPNEFANITFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYPPSKSNKTPIGVGGQDFDNPVNPDFFTIEGEPKVKTIKATGGGMDTGDNNGSGDDVVMMGTGNTNYGKYNTIFAGKNVFVGQFDNVTTLHCTDFEVPQGDRVYVENYPVVGAWLGSGKVTTITNANSPYTATYDDWLILCNTTGGNITVTLPTPSQSNKGKVFVVKKTTSSHSVTINAGDGSILIDDATSHTANAKNSYDQVVSDGTQYWILTHGH
Ga0307380_1077431613300031539SoilVYYYKTIAEIIDKNSKIFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYAPSKSNYKPIGVGGKDTDNPVNPDLYTLDGEPKVKNTKNTSGGLNAGDNFGSSDDVIILGEGNTNLGKYNTILAGENVFVGQFDNTTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYLATYDDWLILCNTSGGNITVTLPTPTQANKGKMFVVKKTTASHQVTINAGDGSVLIDDATSHSDN
Ga0307380_1092086813300031539SoilNQNLVIVYYYKTIAEIIDKNSKIFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTECEFLLAGYYAPSKSNYKPIGVGGKDTDNPVNPDFYTLDGEPQVKNTKNTSGGMDTGDNFGNSDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCSDFEIPQGDRVYVENYPVVGAWLGSGKVVNLTSADSPYLVKYDDWLIICDTSTASITVTLPTPTTSN
Ga0307380_1100849313300031539SoilNVYYYKTIAEIIDKNSKIFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYPPSKSNTKPIGVGGSDTDNPVNPDFYTLDGEPPIKNTKTTSGGLNAGDNFGSSDDVIILGEGNSNLGKYNTILAGENVFVGQFDNTTTIHCSDFEVPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYIAKYDDWLILCNTSGGNVT
Ga0307380_1114849713300031539SoilVGQYWRLNKVVDFNPMQEGLTQCEFLLAGYYPPSKLNTKPIGVGGSDTDNPINPDFFTADGEPPIKNTKNTSGGMDTGDNFGNSDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCSDFEIPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYSAVYDDWLIVADTTAASITVTLPTPTSSNKGKVFVVKKTSA
Ga0307379_1017905213300031565SoilNPDFYTLDGEPPIKNTKTTSGGLNAGDNFGSSDDVIILGEGNSNLGKYNTILAGENVFVGQFDNTTTIHCSDFEVPQGDRVYVENYPVVGAWLGSGKVVNLTNADSPYIAKYDDWLILCNTDGGNITVTLPQPTEANKGKVFVVKKTSAAHSVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIIG
Ga0307379_1070855313300031565SoilEIIDKNSKIFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPMQEGLTECEFLLAGYYPPSKLNTKPIGVGGSDTDNPINPDFFTADGEPPIKNTKNTSGGLNSGDNFGSSDDVIILGEGNTNLGKYNTILASENVFVGQFDNVTAIHCSDFEIPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYSAVYDDWLIVADTTAASITVTLPTPTTSNKGKVFVVKKTSASHSVILNAGDGSILIDDVTSLTENAKNGFDQVVSDGTQYWIIG
Ga0307379_1140104013300031565SoilYDMQFDLSFGMPSYTVLPLGFNYSNQNLVNVYYYKTIAEIIDKNSKIFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYAPSKSNYKPIGVGGKDTDNPVNPDFYTLDGEPQIKWGKNHGGGLDSGDNFGSGDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNV
Ga0307378_1111361013300031566SoilFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYAPSKSNYKPIGVGGKDTDNPVNPDLYTLDGEPKVKNTKNTSGGLNAGDNFGSSDDVIILGEGNTNLGKYNTILAGENVFVGQFDNTTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYIAKYDDWLIICDTSTASITVTLPTPTTSNKGKVFVVKKTSASHS
Ga0307376_1044143513300031578SoilFRITPNEFANIRFNSLYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYAPSKSNYKPIGVGGKDTDNPVNPDFYTLDGEPQIKWGKNHGGGLDSGDNFGSGDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCSDFEVPQGDRAYVENYPVVGAWLGSGKVVNITNADSPYSAVYDDWLIVADTTAASITVTLPTPTSSNKGKVFVVKKTSASHSVILNAGDGSILIDDVTSLTENAKNGFDQVVSDGTQYWIIG
Ga0307376_1080967113300031578SoilKDTDNPVNPDLYTLDGEPKVKNTKNTSGGLNAGDNFGSSDDVIILGEGNTNLGKYNTILAGENVFVGQFDNTTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYIAKYDDWLIICNTDGGNVTVTLPTPTQANKGKVFVVKKTSASHQVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDG
Ga0307376_1083705813300031578SoilGDNFGNSDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCSDFEVPQGDRVYVENYPVVGAWLGSGKVVNLTNADSPYLATYDDWLILCNTSGGNITVTLPTPTQANKGKMFVVKKTTASHQVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH
Ga0307377_1055465023300031673SoilYFFEGQYWRLNKVIDFNPTQEGLTECEFLLASYYPPSKPNTKPIGVGGSDTDNPINPDFYTLDGEPKVKNTKNTSGGMDTGDNFGNSDDAVMMGTGNTNYGKYNAVFAGENVFVGQFDNVTAIHCSDFEIPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYIAKYDDWLIICNTSGGNVTVTLPTPTEANKGKMYVVKKTTASHQVTINAGDGSVLIDDATSHSDNAKNGYDQVVSDGTQYWIITHGH
Ga0307377_1072368213300031673SoilYFFEGQYWRLNKVIDFNPTQEGLTQCEFLLAGYYPPSKSNTKPIGVGGSDTDNPVNPDFYTLDGEPPIKNTKTTSGGLNAGDNFGSSDDVIILGEGNSNLGKYNTILAGENVFVGQFDNTTTIHCNDFEVPQGDRVYVENYPVVGAWLGSGKVVNITNADSPYLATYDDWLILCNTSGGNITVTLPTPTAANKGKMFVVKKTTASHSVILNAGDGSILIDDVTSLTENAKNG
Ga0307377_1087610313300031673SoilTTHMDNPYDMSFDLSFGMPPYTVLPLGFQYSNQNLVNVYYYKTIAEIIDKNSKIFRGYFRITPNEFANIRFNSLYFFEGQYWRLNKVVDFNPMQEGLTQCEFLLAGYYAPSKANTKPIGVGGSDTDNPINPDFFTADGEPPIKNTKNTSGGLNSGDNFGSSDDVIILGEGNTNLGKYNTILAGENVFVGQFDNVTAIHCSDFEI
Ga0334991_0329982_2_6073300034013FreshwaterQYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNKKPLGVGGQDFDNPVNPDFYTLDGEPPVKNPRTTGGGLDTGDNKGNSDGAVMMGTGNTNFGKYNTIFAGNAVSIVGFDNVTTLHCNNFEVPEGDRVYVENYPVVGAWLGSGKIVTITNADSPYLPTYDDWLILCNTASGSITVTLPTPSAANKGKVYVVKKTTAAHN
Ga0335050_0461386_42_5513300034108FreshwaterLYFFEGQYWRLNKVIDFNPTQEGLTECEFLLAGYYPPSKSNKKPLGVGGQDFDNPVNPDFYTLDGEPPVKNPRTTGGGLDTGDNKGNSDGAVMMGTGNTNFGKYNTIFAGNAVSIVGFDNVTTLHCNNFEVPEGDRVYVENYPVVGAWLGSGKIVTITNANSPYLPTYDD
Ga0348337_154176_1_6423300034418AqueousKVIDFNPTQEGLTQCEFLLAGYYPPSKSNYKPIGVGGKDTDNPVNPDFYTLDGEPQIKWGKNHGGGLNSGDNIGTGDDAVMMGTGNTNYGKYNAVFAGENVFVGNFDNVTAIHCSDFEIPQGDRVYVENYPVVGAWLGSGKIVSLTSADSPYIAKYDDWLILCNTDGGSITVTLPQPTEANKGKVFVVKKTTAANSVTINAGEGGVLIDDATSH


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