
Tan0018714 (gene) Snake gourd v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AAAAAATAAAAAATAAAAAATTGCATGATCGGTCAGAGACGAAAGTTCTGAACAGGGGAACCGGATTCCCGTCCCACGCAAAAATATTACAGAATCGGTGCTTCCGCTCTGTTCCACACAGTCTTTGTTTCAGTTCTTCAACTCCCACTCTTCAGATTATGAAATTCAACGCCAAATTTTACAATCCCAAAGCTTCTGAGTTCTGATCATCAAAATCCACTACTTGCCCCATCAAAACTCCATTAAAATGGGATACAGATTCCACCGTCTCAATCCCATTCTTCAATCCTTCTACACCAGGCTTTCGTCGTCAACCCACAAAGAATTTCATGCAATTCTCTTAACCCCATCTATCAATCTTCATCCCCAAGTCACATTCCTGGGAATCTATGATGATCCGAAGAGCAAAATCTGCAGAAGGTGGCATTTGGGTCACTCCCACCGCAACGACGACCACCATCGATTTGGCCATGAGGGCGAGAATATTTTCAAGCTGGGTCTCGGCGCTGACATTGGATTGGCTGCGGGGAAAGTTGTGACGGGCTATTTATCAGGAAGCACAGCTATAATCGCCGATGCGGCTCACTCGGTTTCTGATGTGGTAACTTTAGCTTCCACTTTTTGCTTTCTTATGTTTTTTTTTCCTCTTGGTTCAGTCCTTGAAGCTGATGTTACTGTCCCAATATTTTCAAGGTTTTGATAAGAGCTGAACCAAAAGGACAATACACTTCATATGAGTTTGAAGAAAGAAACTTCTTTGCTTCATTCTAAAGATGATGTTCTTAGTCTAACTATGTTTAATAACCATCTTCAAACTTTAGATTGCTGTTTTTTGAAAAACCTAAATCAAAACATGGTAATGCCTGTTAATTGCCTTATTCTTATACACTGCAGGTTCTTAGTGGCATCGCTTTATGGTCGTTTAAAGCTGGAAAAGCTCCCAAAGACAAGGAGCACCCATATGGTCACTCTTGATTTGTACCTACATGCTACTCCATTGTTCTCTCCCTATATAATTGATTCTCAGTGAAATGGTTTTATCCTTGATTGTAAATATTCCATGTTGATCATGCATTTAATTTCCAAATCTATGAAAAAATATGACCATTGAATCAAATGTTAATATTATCCTTTAAGTCATTAACTGTTAGACTTTTGAGACTCAGCACTTCAAATTTGAATGAAGGAGAGTGATGCACTTCCAAGCATTTAAAAATTGTTTGCTTGTCTTTAGATCTAAAGATCTTTTGCGCTCTACTTACATCTTCATATGAAAATGGTTCTGATCCTTGGGTTTACAAAAGCCGTAGAGTGGACTTGGACTCTTTTCTAACTTGGGTTGTATTAAAGCCTGATCAAAGTCATATTTGAAAATGATCTAGCTAATACACGGAAGTTTATGATCATCTAGTAATGCTTGGTTTATCAAAAGTGCTAGGTGTTCTGCAATGGTTTTACTCCAACTCTTCACTGCCCTTTTTCTTCAAATATGAGAACTTATTATATTTTCCTCGTCAAAGATAATTAACAAAATGATATTCTTTGTCTGGAGATGGTAATTTAGAGTTTTCTCTTGCTCTTGCTCTAGCCTTTTTCTTTTATTTTACAATGCCTTCCCTGTGATAAATTCTCAGGACATGGTAAATTTGAGACTCTGGGATCCCTTGGAATTTCTTCCATGCTTTTAGCAACTGCTGGTGGCATTGCTTGGCATGCTTCAGAACTTCTACTGGTATGCTTGATTATCAATTTGCCTCTGATCAATCCCAAAGGCCAAAGTAATAAATATGTTTTCTGAATCTTCAGAATTTAACACCCTTATACTTTCACGTAATCCCATTGTTTTAAGATTTGAGGAATCTTGCATGGTAACTCGATGAGATTTAGTTTACACAGCAACATTTTTTATTCTAATTTCATGGCTTTGCTAACTTGGTCTTCTCTGTTTTCCCATTAGCAGGGCTTGTCAGCAGCTCCTGAAATAGTCAATCAGCCTCTTGGACTTGATAATTTGCATAATCATAGTCATGGTGGACATCATCATGGAATCAACATGGATCATCCTATTCTAGCTTTGAATATGACTATTATATCAATATGTATCAAAGAAGGGTACTGAATATATTCCTTTGTGGTCTTTTCACTTGTTTTAAGAACTAGGGGAATATCAAAATATTTGTTCGTTACCATGTCTCCCTATTCTAGTTTAGAAAACCTGAAAACAATCAACTAGGATGCTTAATTGAATGATGTGTCCCATCTTTACTTTCTAGGGTCATAATATGTTCAGCCATTAATTTTTCACGCAATGTATCCATTTTCTCTACTCTTTGATATTCAGAAAAACAAGCCAACTTTAAATTATGCTAAATCCTTGCCTCCTAAACTATGTTAGAATGGTCATCTCTTTGGCAGTATGATGTCATATTTCCCAAGATGATATTTGGTTCTCTTGTCACATTTACTGATCTTTCTTTCCTCTTGAACCTTTGTTCTCCAATAGGCTTTACTGGATAACAAAACGAGCTGGGGAAAAACAAGGTAGTGGGCTCATGAAAGCAAATGCATGGCATCATCGTGCTGATGCAATATCATCCATAGTTGCGCTTATCGGTGTTGGTAAGGAACTATGGTCTTGTACTTAATATTCATTCCTTTTTTGGATGTACATATAGTTTCTGTAGCTTGTAGTCTTAGTAATAAATAGGTAACTGAATTTCTTTGTTGCTCTTCAATTGTAACGGTTAGTTCAACTTGGCTGTTTCTCAAGTTGTTTGCCATCACCGCAGACCATTTGGTTCGCATGAATCTATTATACAAAAACTTCTAACGATTACAAATTGTTCAAATTGGAAGATTGAGGGAGACATTTCAAAAAACTTTGAGGAAGAATAAAAAAGGGAGGCGTATTATACCATGCAATCCCAGCGAACCCTACAATCCCTTTCATTTTCCTGAAAAGAAGTCAAATAATCCAGAGAATGTCTCTGACTGCATTAGACCAAAGAATCTTTGTTTTCTAGTTTGAAACATCTGTTACGTTCACAATGCTTTTCTGTTTCTAGATCATCGAGGTTTTAAAGTACCAACTTCTACTCTGATATTTTTAGATTTTTGTGAAAGTGAAGGATTGAACTTTAATATCTTTCTCCTAAGTCTATCTATGGATATGTGTACTGACATTCTTGGAATTGCTATGCTAAAGCAAAACTTCATCATGTCATCTTCTCACTGTCCTATAACTCAGTTATTGCAAACTGTTGGTGAACATGCTTGCTACTCAACAAAGCAATCGCACTCATTCCTATCTTTTCTCTGCATAAATTAAAACTATTTAGTCTATCCTTCCAAAATTTTTTGGTTGTGATTTTCCATTTTAATTTCAGGAGGTTCCATCCTTGGGGTTGAGTTTCTAGATCCCTTAGCTGGACTTGTTGTCTCAGGCATGATTCTAAAGGCTGGACTTGAAACTGGATACCAAAGGTATATATTAATAATTAAATGATAGTTTTTTCACTTTTACTTCAGAACTGTATCACATGGAATTTTCTTGTTAGGTATTCCTAGCGTATCTAATAATGAGTTTGTAATGGATCATTAACGGGAATTTTAATTTTGAAACACGATCAAACTTTTCATTAAAATGGTGAAAAGTTATGTAAGTTTCAATGAAGATGACCTACTAGTAAGAGACAATAAAAATACAAATAAGTCTTCTAGAACTACTTCAAATACATGTCACTTTACCCAATTAGAACAAATCCTAAAGGACTAATCTCTATTGTTGGTGAAATCTTTAATGTTTCAAATTTCAATTCACTCTAGCGTAATGATTTATTTGATTTCTATATATTTAATGTTCGTTTTAATGCATTTTAGCATCTTGGAATTAGTGGATGCTGCAATTCCAGCAGAACAAATAGATCCTGTCAGACAAACAATATTGCAGGTTGAGGGTGTCAAGGTAATTATAAGTTTTGTAAAACTGTAAACCTTAAGGATGTAATGAAACACAGTATTTTGACTATTGTCTGTTTGGTTATTGGGGACAGGAGTTAAAATATTATGGTATTAGCCTGCCTATTGGGTGATAAAATGCCTGGTCTGATTAAGTCTTTCATTTCCATGGTTGTCTTGTTCATTATGCAAATAACTGTCTGTGATCCTGCCTGATGTCGAAAAACCATCTTTAGGGCTGTCATCGCCTAAGAGGAAGGAGAGCTGGCTCTTCTTTGTATCTCGATGTGCATATCGAGGTTCGTTTTCTGATTGGATTACAAATATTTTACTACCAAATGTAGTTGATGGACTCCAATATACTTTTATTTACTTTTCTTTTGCTTGCAGGTTGATCCTTTTTTGAGTGTTAGTGCCGCCCATTGTATTGGTGAAAATGTTCGTCAAAAGATTCATGCATCCCATCCTGAAGTATCCGAAGTTTTTATACATATAGGTAAACTGCTCAGTTGATTTTTCTTTGGGATCAGCTCATCAAAACTCCTTAACGAGTTTTGGCACTCTTTTCAGTCTGGTTATTTTGGTACATGTCCTCAATTATCAATGATGCTCTATAGATCCCTCCATTTCACATTTCCCATCAAATTTATCCGACCAGCGAGGAGGTTCGATGCAAACTTTGAATCCGAATACACACGTCCCTCTGAATGATAAGAACATTGAAGCAATCGTTTCCAAAATCATCCTGTCAAAATTTCCTGAGGTGAACTTTCTAACTGTTCTGAGCTGAAACTATTTTGTTCCTTTGATTTACTTTGCATGTTTCTTGAACTCCCTCCAAGAAAGGTCTTGTTGCTTCATCAAAATGACTGCTTTGAATGTGTTTGTTCTCAGAAAATGCTGGTTGAACGTATTACACCCCACCTATTGCAAGGTCAAATTCTTCTCCAAATCGAAGTTTCGATGCCACCCGATTTGCTAATTCGGTAAACTCAAACTCCTACAAACCTTAAACTGTATGAGCAGTAGCAAGATCACACGTCATTTTTTAAAATTTATGAAAATTTAAAGTCAATAAATTTTTGCTTTCATGTACTTTAAAATGAGTTTGATGTATGTCACTCTTAAACGTTAGTAAGTGTTGGTTCTTATACTAACTTTGTATAACACATCTATTCTGCTAGTAAATGTTTAATAAGCGTGCAACAAGTGTCAAACATGGACACACAACTATGCTTCTTAGTTTATTACAAATCATTGTTTTTAATACTCACTGCAAATGTTTTGTTACACAGAAATGCAATGGAAGTAGCAAAACAAGCAGAAATGGAGATCTTGAAGGCAGCCTCTAACATTGTTCATGTTAGCATTCAGCTTCGTTTAGGACATCAAATTCCACAGCTCAGCCTTTGATTGACAATACTGAAAAAAAAATAGTGTAAAATGAAATATAATAGGTCTTATCCATTATCGCATATTGTCATTTCTTGTTTTATTGCTCAATAATCATCCTAACCAAAAAGAATGGAATTGTCTTTCAAAAAAACAAAGTCAACAAAAAAGAATGGAATTGTCATTATTACTCATAAATTATATATCTACATTTTAGTAAGAAAATCGTAGTTTTCCTTTTTCTTTCTTTCTTTTTTTTTTGAAAATGTAATCTTGATTTCTATATTTCTGAAACTTCCTTTACTCAATAAACTTGTTCGATTGTTTTTTTTGTTTATGTAATCCTTAAAACTTCTTTCAAAGATACTCTTTTCTTCTTCTAGTTATTTCATAGTTTTTCTGCTATTGTGTTCATATTCATATACTTGATATTATATTGGTCACTTCGACTTAAAGAAACAAATTATTCCCATTAAATTTTTTAGATAGTTGAAAATGTAGCACAATTTAAACGTAAAATAGCCTCTAAAATGAAAATACGTAAATATATTTACCAAAATTAAAGTCAAGTAATATATAGTTAGCTAATACAAAAGCACTACCATTGTTTTTTTTTCGCTGGTTAATAAAGTAATAACATATTTCTATCTATATATTAAGCCTTCACATTCATTAGGTTACTTAATTCAAAATTCGCTACATTTCAAATTTGAAAACCAAATATAATTGAATTGAAAAAAGAGCAAAAATCCCAAATGTAATTGAGTTCTAAAAAGAACAAAAGATGAAATTCAAAACGAATGGAATGTAATGAAATTAATTACACTAGGGAGATGAAAAACAACACAGAAATAAATATGCTAAAAAAGATTCAAGCTGCATATAAAGAAAAGAAACCAGGTTCGACGAAATCTTCAGAAGAAAAACGAAGAAAAATAAGGAATTGAACACAGCGATTGGGATTTATGGAGTCATTGATCAGATAATTGTAGTCTGAATTTTGAAGTCTACAAGCATAGATTCAGAAAAGAGGATCATCACCTCAACAACTCCGTTCGATAATCGATTGAAGAAAATGGTAAAACAACGAAGATTCAAAAGTTAAGAGAGGAGAGTTTAGGGCTCAGAAGGATCAATTGGTGATTTTCATAATCACGCGAAGATGAACTTCCTTCAGAAAATAGGTAGTTTTCGACATCATTGCCTCAAAAACTCAAAACGCTAACGGCAGAAATACCAAAATATATTCAAAAAATAAGAAGAAAACAGAGAGATTGAAGGAGAGAAAC AAAAAATAAAAAATAAAAAATTGCATGATCGGTCAGAGACGAAAGTTCTGAACAGGGGAACCGGATTCCCGTCCCACGCAAAAATATTACAGAATCGGTGCTTCCGCTCTGTTCCACACAGTCTTTGTTTCAGTTCTTCAACTCCCACTCTTCAGATTATGAAATTCAACGCCAAATTTTACAATCCCAAAGCTTCTGAGTTCTGATCATCAAAATCCACTACTTGCCCCATCAAAACTCCATTAAAATGGGATACAGATTCCACCGTCTCAATCCCATTCTTCAATCCTTCTACACCAGGCTTTCGTCGTCAACCCACAAAGAATTTCATGCAATTCTCTTAACCCCATCTATCAATCTTCATCCCCAAGTCACATTCCTGGGAATCTATGATGATCCGAAGAGCAAAATCTGCAGAAGGTGGCATTTGGGTCACTCCCACCGCAACGACGACCACCATCGATTTGGCCATGAGGGCGAGAATATTTTCAAGCTGGGTCTCGGCGCTGACATTGGATTGGCTGCGGGGAAAGTTGTGACGGGCTATTTATCAGGAAGCACAGCTATAATCGCCGATGCGGCTCACTCGGTTTCTGATGTGGTTCTTAGTGGCATCGCTTTATGGTCGTTTAAAGCTGGAAAAGCTCCCAAAGACAAGGAGCACCCATATGGACATGGTAAATTTGAGACTCTGGGATCCCTTGGAATTTCTTCCATGCTTTTAGCAACTGCTGGTGGCATTGCTTGGCATGCTTCAGAACTTCTACTGGGCTTGTCAGCAGCTCCTGAAATAGTCAATCAGCCTCTTGGACTTGATAATTTGCATAATCATAGTCATGGTGGACATCATCATGGAATCAACATGGATCATCCTATTCTAGCTTTGAATATGACTATTATATCAATATGTATCAAAGAAGGGCTTTACTGGATAACAAAACGAGCTGGGGAAAAACAAGGTAGTGGGCTCATGAAAGCAAATGCATGGCATCATCGTGCTGATGCAATATCATCCATAGTTGCGCTTATCGGTGTTGGAGGTTCCATCCTTGGGGTTGAGTTTCTAGATCCCTTAGCTGGACTTGTTGTCTCAGGCATGATTCTAAAGGCTGGACTTGAAACTGGATACCAAAGCATCTTGGAATTAGTGGATGCTGCAATTCCAGCAGAACAAATAGATCCTGTCAGACAAACAATATTGCAGGTTGAGGGTGTCAAGGGCTGTCATCGCCTAAGAGGAAGGAGAGCTGGCTCTTCTTTGTATCTCGATGTGCATATCGAGGTTGATCCTTTTTTGAGTGTTAGTGCCGCCCATTGTATTGGTGAAAATGTTCGTCAAAAGATTCATGCATCCCATCCTGAAGTATCCGAAGTTTTTATACATATAGATCCCTCCATTTCACATTTCCCATCAAATTTATCCGACCAGCGAGGAGGTTCGATGCAAACTTTGAATCCGAATACACACGTCCCTCTGAATGATAAGAACATTGAAGCAATCGTTTCCAAAATCATCCTGTCAAAATTTCCTGAGAAAATGCTGGTTGAACGTATTACACCCCACCTATTGCAAGGTCAAATTCTTCTCCAAATCGAAGTTTCGATGCCACCCGATTTGCTAATTCGAAATGCAATGGAAGTAGCAAAACAAGCAGAAATGGAGATCTTGAAGGCAGCCTCTAACATTGTTCATGTTAGCATTCAGCTTCGTTTAGGACATCAAATTCCACAGCTCAGCCTTTGATTGACAATACTGAAAAAAAAATAGTGTAAAATGAAATATAATAGGTCTTATCCATTATCGCATATTGTCATTTCTTGTTTTATTGCTCAATAATCATCCTAACCAAAAAGAATGGAATTGTCTTTCAAAAAAACAAAGTCAACAAAAAAGAATGGAATTGTCATTATTACTCATAAATTATATATCTACATTTTAGTAAGAAAATCGTAGTTTTCCTTTTTCTTTCTTTCTTTTTTTTTTGAAAATGTAATCTTGATTTCTATATTTCTGAAACTTCCTTTACTCAATAAACTTGTTCGATTGTTTTTTTTGTTTATGTAATCCTTAAAACTTCTTTCAAAGATACTCTTTTCTTCTTCTAGTTATTTCATAGTTTTTCTGCTATTGTGTTCATATTCATATACTTGATATTATATTGGTCACTTCGACTTAAAGAAACAAATTATTCCCATTAAATTTTTTAGATAGTTGAAAATGTAGCACAATTTAAACGTAAAATAGCCTCTAAAATGAAAATACGTAAATATATTTACCAAAATTAAAGTCAAGTAATATATAGTTAGCTAATACAAAAGCACTACCATTGTTTTTTTTTCGCTGGTTAATAAAGTAATAACATATTTCTATCTATATATTAAGCCTTCACATTCATTAGGTTACTTAATTCAAAATTCGCTACATTTCAAATTTGAAAACCAAATATAATTGAATTGAAAAAAGAGCAAAAATCCCAAATGTAATTGAGTTCTAAAAAGAACAAAAGATGAAATTCAAAACGAATGGAATGTAATGAAATTAATTACACTAGGGAGATGAAAAACAACACAGAAATAAATATGCTAAAAAAGATTCAAGCTGCATATAAAGAAAAGAAACCAGGTTCGACGAAATCTTCAGAAGAAAAACGAAGAAAAATAAGGAATTGAACACAGCGATTGGGATTTATGGAGTCATTGATCAGATAATTGTAGTCTGAATTTTGAAGTCTACAAGCATAGATTCAGAAAAGAGGATCATCACCTCAACAACTCCGTTCGATAATCGATTGAAGAAAATGGTAAAACAACGAAGATTCAAAAGTTAAGAGAGGAGAGTTTAGGGCTCAGAAGGATCAATTGGTGATTTTCATAATCACGCGAAGATGAACTTCCTTCAGAAAATAGGTAGTTTTCGACATCATTGCCTCAAAAACTCAAAACGCTAACGGCAGAAATACCAAAATATATTCAAAAAATAAGAAGAAAACAGAGAGATTGAAGGAGAGAAAC ATGGGATACAGATTCCACCGTCTCAATCCCATTCTTCAATCCTTCTACACCAGGCTTTCGTCGTCAACCCACAAAGAATTTCATGCAATTCTCTTAACCCCATCTATCAATCTTCATCCCCAAGTCACATTCCTGGGAATCTATGATGATCCGAAGAGCAAAATCTGCAGAAGGTGGCATTTGGGTCACTCCCACCGCAACGACGACCACCATCGATTTGGCCATGAGGGCGAGAATATTTTCAAGCTGGGTCTCGGCGCTGACATTGGATTGGCTGCGGGGAAAGTTGTGACGGGCTATTTATCAGGAAGCACAGCTATAATCGCCGATGCGGCTCACTCGGTTTCTGATGTGGTTCTTAGTGGCATCGCTTTATGGTCGTTTAAAGCTGGAAAAGCTCCCAAAGACAAGGAGCACCCATATGGACATGGTAAATTTGAGACTCTGGGATCCCTTGGAATTTCTTCCATGCTTTTAGCAACTGCTGGTGGCATTGCTTGGCATGCTTCAGAACTTCTACTGGGCTTGTCAGCAGCTCCTGAAATAGTCAATCAGCCTCTTGGACTTGATAATTTGCATAATCATAGTCATGGTGGACATCATCATGGAATCAACATGGATCATCCTATTCTAGCTTTGAATATGACTATTATATCAATATGTATCAAAGAAGGGCTTTACTGGATAACAAAACGAGCTGGGGAAAAACAAGGTAGTGGGCTCATGAAAGCAAATGCATGGCATCATCGTGCTGATGCAATATCATCCATAGTTGCGCTTATCGGTGTTGGAGGTTCCATCCTTGGGGTTGAGTTTCTAGATCCCTTAGCTGGACTTGTTGTCTCAGGCATGATTCTAAAGGCTGGACTTGAAACTGGATACCAAAGCATCTTGGAATTAGTGGATGCTGCAATTCCAGCAGAACAAATAGATCCTGTCAGACAAACAATATTGCAGGTTGAGGGTGTCAAGGGCTGTCATCGCCTAAGAGGAAGGAGAGCTGGCTCTTCTTTGTATCTCGATGTGCATATCGAGGTTGATCCTTTTTTGAGTGTTAGTGCCGCCCATTGTATTGGTGAAAATGTTCGTCAAAAGATTCATGCATCCCATCCTGAAGTATCCGAAGTTTTTATACATATAGATCCCTCCATTTCACATTTCCCATCAAATTTATCCGACCAGCGAGGAGGTTCGATGCAAACTTTGAATCCGAATACACACGTCCCTCTGAATGATAAGAACATTGAAGCAATCGTTTCCAAAATCATCCTGTCAAAATTTCCTGAGAAAATGCTGGTTGAACGTATTACACCCCACCTATTGCAAGGTCAAATTCTTCTCCAAATCGAAGTTTCGATGCCACCCGATTTGCTAATTCGAAATGCAATGGAAGTAGCAAAACAAGCAGAAATGGAGATCTTGAAGGCAGCCTCTAACATTGTTCATGTTAGCATTCAGCTTCGTTTAGGACATCAAATTCCACAGCTCAGCCTTTGA MGYRFHRLNPILQSFYTRLSSSTHKEFHAILLTPSINLHPQVTFLGIYDDPKSKICRRWHLGHSHRNDDHHRFGHEGENIFKLGLGADIGLAAGKVVTGYLSGSTAIIADAAHSVSDVVLSGIALWSFKAGKAPKDKEHPYGHGKFETLGSLGISSMLLATAGGIAWHASELLLGLSAAPEIVNQPLGLDNLHNHSHGGHHHGINMDHPILALNMTIISICIKEGLYWITKRAGEKQGSGLMKANAWHHRADAISSIVALIGVGGSILGVEFLDPLAGLVVSGMILKAGLETGYQSILELVDAAIPAEQIDPVRQTILQVEGVKGCHRLRGRRAGSSLYLDVHIEVDPFLSVSAAHCIGENVRQKIHASHPEVSEVFIHIDPSISHFPSNLSDQRGGSMQTLNPNTHVPLNDKNIEAIVSKIILSKFPEKMLVERITPHLLQGQILLQIEVSMPPDLLIRNAMEVAKQAEMEILKAASNIVHVSIQLRLGHQIPQLSL Homology
BLAST of Tan0018714 vs. ExPASy Swiss-Prot
Match: Q8L725 (Metal tolerance protein C1 OS=Arabidopsis thaliana OX=3702 GN=MTPC1 PE=2 SV=1) HSP 1 Score: 551.2 bits (1419), Expect = 1.2e-155 Identity = 288/443 (65.01%), Postives = 342/443 (77.20%), Query Frame = 0
BLAST of Tan0018714 vs. ExPASy Swiss-Prot
Match: Q10LJ2 (Metal tolerance protein 2 OS=Oryza sativa subsp. japonica OX=39947 GN=MTP2 PE=2 SV=1) HSP 1 Score: 457.6 bits (1176), Expect = 1.8e-127 Identity = 239/356 (67.13%), Postives = 284/356 (79.78%), Query Frame = 0
BLAST of Tan0018714 vs. ExPASy Swiss-Prot
Match: Q08970 (Mitochondrial metal transporter 2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=MMT2 PE=3 SV=2) HSP 1 Score: 139.8 bits (351), Expect = 8.3e-32 Identity = 87/249 (34.94%), Postives = 137/249 (55.02%), Query Frame = 0
BLAST of Tan0018714 vs. ExPASy Swiss-Prot
Match: O59758 (Uncharacterized metal transporter C1020.03 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=SPCC1020.03 PE=3 SV=1) HSP 1 Score: 134.8 bits (338), Expect = 2.7e-30 Identity = 99/332 (29.82%), Postives = 176/332 (53.01%), Query Frame = 0
BLAST of Tan0018714 vs. ExPASy Swiss-Prot
Match: Q2W8L4 (Magnetosome protein MamB OS=Magnetospirillum magneticum (strain AMB-1 / ATCC 700264) OX=342108 GN=mamB PE=3 SV=1) HSP 1 Score: 134.4 bits (337), Expect = 3.5e-30 Identity = 85/298 (28.52%), Postives = 142/298 (47.65%), Query Frame = 0
BLAST of Tan0018714 vs. NCBI nr
Match: XP_038876738.1 (metal tolerance protein 2 [Benincasa hispida]) HSP 1 Score: 886.3 bits (2289), Expect = 1.2e-253 Identity = 449/500 (89.80%), Postives = 472/500 (94.40%), Query Frame = 0
BLAST of Tan0018714 vs. NCBI nr
Match: KAG6575848.1 (Metal tolerance protein C1, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 872.1 bits (2252), Expect = 2.3e-249 Identity = 444/499 (88.98%), Postives = 466/499 (93.39%), Query Frame = 0
BLAST of Tan0018714 vs. NCBI nr
Match: XP_022954108.1 (metal tolerance protein 2 [Cucurbita moschata]) HSP 1 Score: 867.5 bits (2240), Expect = 5.7e-248 Identity = 442/499 (88.58%), Postives = 464/499 (92.99%), Query Frame = 0
BLAST of Tan0018714 vs. NCBI nr
Match: XP_023548946.1 (metal tolerance protein 2 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 867.1 bits (2239), Expect = 7.5e-248 Identity = 441/499 (88.38%), Postives = 466/499 (93.39%), Query Frame = 0
BLAST of Tan0018714 vs. NCBI nr
Match: XP_022991511.1 (metal tolerance protein 2 [Cucurbita maxima]) HSP 1 Score: 861.7 bits (2225), Expect = 3.1e-246 Identity = 439/499 (87.98%), Postives = 463/499 (92.79%), Query Frame = 0
BLAST of Tan0018714 vs. ExPASy TrEMBL
Match: A0A6J1GQ72 (metal tolerance protein 2 OS=Cucurbita moschata OX=3662 GN=LOC111456474 PE=4 SV=1) HSP 1 Score: 867.5 bits (2240), Expect = 2.8e-248 Identity = 442/499 (88.58%), Postives = 464/499 (92.99%), Query Frame = 0
BLAST of Tan0018714 vs. ExPASy TrEMBL
Match: A0A6J1JQY4 (metal tolerance protein 2 OS=Cucurbita maxima OX=3661 GN=LOC111488105 PE=4 SV=1) HSP 1 Score: 861.7 bits (2225), Expect = 1.5e-246 Identity = 439/499 (87.98%), Postives = 463/499 (92.79%), Query Frame = 0
BLAST of Tan0018714 vs. ExPASy TrEMBL
Match: A0A1S3BRB4 (metal tolerance protein C1 OS=Cucumis melo OX=3656 GN=LOC103492849 PE=4 SV=1) HSP 1 Score: 851.7 bits (2199), Expect = 1.6e-243 Identity = 432/500 (86.40%), Postives = 462/500 (92.40%), Query Frame = 0
BLAST of Tan0018714 vs. ExPASy TrEMBL
Match: A0A0A0K5Y9 (Metal tolerance protein 6 OS=Cucumis sativus OX=3659 GN=MTP6 PE=2 SV=1) HSP 1 Score: 847.4 bits (2188), Expect = 3.0e-242 Identity = 434/500 (86.80%), Postives = 460/500 (92.00%), Query Frame = 0
BLAST of Tan0018714 vs. ExPASy TrEMBL
Match: A0A6J1DDD3 (metal tolerance protein C1 OS=Momordica charantia OX=3673 GN=LOC111019455 PE=4 SV=1) HSP 1 Score: 842.4 bits (2175), Expect = 9.6e-241 Identity = 424/498 (85.14%), Postives = 465/498 (93.37%), Query Frame = 0
BLAST of Tan0018714 vs. TAIR 10
Match: AT2G47830.1 (Cation efflux family protein ) HSP 1 Score: 551.2 bits (1419), Expect = 8.5e-157 Identity = 288/443 (65.01%), Postives = 342/443 (77.20%), Query Frame = 0
BLAST of Tan0018714 vs. TAIR 10
Match: AT2G47830.2 (Cation efflux family protein ) HSP 1 Score: 545.0 bits (1403), Expect = 6.1e-155 Identity = 287/443 (64.79%), Postives = 340/443 (76.75%), Query Frame = 0
BLAST of Tan0018714 vs. TAIR 10
Match: AT3G58810.1 (metal tolerance protein A2 ) HSP 1 Score: 63.9 bits (154), Expect = 4.1e-10 Identity = 85/314 (27.07%), Postives = 139/314 (44.27%), Query Frame = 0
BLAST of Tan0018714 vs. TAIR 10
Match: AT3G58810.2 (metal tolerance protein A2 ) HSP 1 Score: 63.9 bits (154), Expect = 4.1e-10 Identity = 85/314 (27.07%), Postives = 139/314 (44.27%), Query Frame = 0
BLAST of Tan0018714 vs. TAIR 10
Match: AT2G39450.1 (Cation efflux family protein ) HSP 1 Score: 61.6 bits (148), Expect = 2.0e-09 Identity = 66/306 (21.57%), Postives = 131/306 (42.81%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Snake gourd (anguina) v1
Date Performed: 2021-10-25 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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