Spg000831 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATCAATTTAGGCTCTCAATTTGAACATAGTCCATACATCGATTCTCGCACATTTATAGACTTTTTAAGAAATCTAAACACCCTCAATGCAAAAATTCAAGAAATCTAAAGATTTTAGTTAATTAAATTGCTTAAATTAACGATGAATTTCAATGCAAAATTCAAGAAATCAAAACAACAACGGTTTGTATTTTTCTTTACCACATGTAGGGGTGGGGTTGAACCTCTAACTCAAATTTCCTCATCTTTACAAAAAAAAAAAAAAAAAATAGACATCTCAATTGCTCCACGTGTCTGAAGAGAATTGAACCATCTCAGATTTCCCCTTCACAAATGCAAATAAAAAAACAGTCAGTTACACTGCCACCACTACCACAGAGCTCCTTCTCCAAAGATAACAAATACTCAGCACAGCTTCCTCTGTTCTTGCCTTTCCCCAATAATGGCTCTTAAAGCTAACGCCACAACGCCGACACATCTTCATAGGCCATTCTTCACTTCACAAACTCCATTTCTCCCTGCGATCAAACGCTACCATCGCCATCACGCACGCATTCGTCTCCGTTGCCGATCTTCCCTTGTCGATGAGCAGCAGAAAGAAGTCGTCTCCTTTTCTGAACCTGAAAAATCGCTCATTGAGGCTCTCATTGGCGTCCAGGGTCGAGGCCGCTCTGTTTCTTCTCAGCAGCTCGCCGTAATATTTTTGCCCTTTTCTTCATTCTTTGTTTTCTTTGTGTTTATTTCAGTCCAGATTCCAAGTTCGAACTTTTACTGATTTCTGCAGAATGTTGAGCGAGCCGTGAATGTTCTGGAAGGCTTGGAAGGCGTGCAAGATCCGGTAATCCGGTTGGCTTTCCCTATCACTTCTTAACTGTCTTCTTATCAACTCAACATTCAAAAGCAGTGCCAGTGGCTCGTTGTTATAGCCTTGTTTTGTTCTGTTCTGTCAGTTTCTTGCACGTTTAACTTGTTCTTTTCTTCTGTTTAAGTGCACTATATTGAGAATAATACTTTGCTTACACACTTGTAGATTATCCGATATGATTTATTTGTATTAGTCTATTTCTATTGCATTTGATACATAAAACGGGTCTCACTTATATTTTGAGCAACTAAAATAAAATAGTTCAAAAGCTCAGTGCCAGCCGATTGGTGTGTTGGCAAGTATTGTTTTTATATTAGTGGTTACTCAAAAATTCAGTAAATTTGTAGGCTTAAAATGGGAACTGTGGATTGACAGTTTGAATGAGCGAGTGACTGTTATCTTATCTCTCCAATTATGTATTTTCTCTCTTGAGCTCTGGAATAGAAAGGAACTGACTTTCATAGTGGATGTAGGAATACCTGTACATGGTATTCAAAACTATAGAGTTCCTTGGTATTCTTGATTACTTCCAGTCGCTACTTCTATCTGTTTAATCACTCGAGTTTATTAGCTCACAAATAGTTAACAAACCTCTTCAACCGGTTTAATTCTACAAGTTCATTAGTTTGTCAGTTCAGTCGTCTTGAGAAATTGGCATGCTTCAAAGTCCTGTTTTGTTTAGTCAATATTGGTACATCCTCTTGTTGTAACATTATGTGGTAATCCGGAGACATTCTTGATTTATTTCTGTTCATTATATAAAAACTTAGAAATTCATCCTTATATTATATCTTCAATCTGAATGACAATCAATCAAGATAACTAGCTTCTCTCTTTCATTGTTTGCAGACGAACTCTAGTTTAATTGAAGGACGTTGGCAGTTGGTGTTCACAACTAGACCTGGAACAGCGTCCATAATACAGGTTCAATTCAATTCCTTACATAACCTGCTCTAACAATAGCAAGGGCCTTAATATCATGATCGTGTACCTAAACTAGTTTCTAGATAGATGGTTTATTTTCGTTTTTTTTTTTAACAAATGATTTTGAAAACCTTTTTTTGCTTTCTCTTAGTAACCGCTTGTTAGAAATTAAGTACAAACTCTGATAAATCTGCGACGAACGAAGATATAGTACACTGAAGCAATGATATGATCTTCTCCTTCAGAGAACATTTGTTGGAGTTGATTTCTTCAGCGTGTTTCAAGAGATATATCTACAGACAAACGACCCCCGTGTCTCCAACATTGTTAAATTCTCTGATGCAATTGGAGAGCTGAAAGTAGAGGTATGTTGTATATCTTCTAAAAATCGGTTATTATCTTGCCTGTCTAACATTTATCTTCTCTTTTAGGCGGCTGCATCAGTCAAAGATGGCAAACGAATCCTTTTCCAATTTGACAGAGCAGCATTTTCTTTGAAGTTTTTGCCTTTTAAGGTTCCATATCCTGTACCATTCAGACTTCTTGGAGATGAAGCAAAGGGTTGGTTGGACACCACATATTTATCTCCCTCCGGGAACCTCCGTATCTCGAGAGGAAACAAGGTAAATTAGTTCTTCACTTTCCTCAGTTACTCAAGTATAAGGTACAGCCATTTAATTTGTCTACAATGTGTCTTAACATACTTGAAACTTCTCCTTGAGTTGATTTGACACATTGCTAAGGACATACAGAACCATTGTAATAGTGTAGGGCACCACATTTGTGTTGCAAAAGAAAACGGAAGCAAGACAAAACCTGCTGGTAGCAATTTCTTCAGGCAAAGGAGTTGAAGAGGTAAGACTGCTTTCCACATTTACTCATCATAGACGAGATTTCAACTTTGTTATACTCTCCTACGGTTAATTTCTCGACTACTTGAACTATTACAGGCAATCGATAAGCTTATCTCTGAAAATCAGAATGAAAATAAATTTGAAGAGGAGCTTCTTGAGGGAGACTGGAATATGTTATGGAGTTCACAGGTAGTCTATGTAATATTTTTGTATGCTGAACAAAGAAAATAGGTTACCAAATTATCTGTTAAAGAAAAGGGTGGTGAAAATGTGGACAGGCTGGATGAGTATTTGAATGAGACATTATCCAATTACTGTATATTGCAGATGGAAACAGATAGTTGGATAGAGAACGCTGCAAATGGTCTCATGGGGTTGCAGGTAGAATAAATATGACAGCAACCTTTATTTATAAAATAAACTAAGCATTAGAATTTGCTTCTCTCTCACATTTGTAAAGTAGTACACTCTTATACTACCCTGACAGATTATCAAGAATGGACAAATGAAGTTTCGAGTGGATATGCTGCTTGGACTAAGATTTTCCATGATTGGTACTTTTGTGTAAGTTTCCCAACAATTATACTTTTGTGTAAGTTTCTCAGAAAAAAGTTTGGAAGGACAGAATGCACAGGAAAATATTAACATGAGTTTTCTCTGCGCAGGAAATCTGGGGACGACTCATACGATGTTACCATGGATGATGCTGCAATTATTGGAGGCCCGTTTGGATATCCTGTGGAAATAGAGAGCCGGTTCAAGCTCCAACTTCTGTAAGATATCCCATAATTGATTGTTCTTTCATTCAATAGTGGCTATATTGCAGAGTTGATTAAATTGCCAGATTATTATTTTCAGATACAACGATGGGAAGATGAGAATCTCACGAGGATACAATAACATCTTATTTGTTCATCTACGGGTCGGCGAAACAAAGCAGGTGTAGGAAGACTTGTCCAAAAGAATATGTATAGTAAGAGATGCCCTTGGCGTCGACTTGAAGATATACAATGAAAATCAAGAACGTCAAAAATTTATTACCCAAAATCTATTCAATAAAGACTCTTTATTTTCCTTCAGTAAATGGTATGGATTTTTTTTTTTTTTTTTGCTCCCTCTCAATATATTGGTCCACTCTCTTCACAATTGAGCGGCTGTAAAGCAGAAAATTGGAGAAAGAACGCGCTTGTGGGAAAAGAAAGAGAATATAACTTTTATTAAATAATTACAGATCAATGAAGCAGAAAAAGAATTACAGGAGTTTGTGTACTTCAATCTTTTTTGGATACGAATCACTTAAACACAAAAGAGAGAAATTATCTATCGAGATCACAAAAACTTCTCCAATTGGAAATTAAGGAATTTGGACTGTAATGGTTGAAAGGAGCAAGTTTTTAACACCAATAAAGAGCCACAAGGAGTTGCTGCTTCAAGGATTTCTGGTGGAGAATTTCCCTTGTCTTGGAAGATATAGTTGTTTTCATGCCAAACCTTCCATAAAATCGCCCTGATGATGAGAAGCCATAGAGCATTCTTGTGTACTACTACAAAAATGTTCAAATGAAAAGTTTTTATTTGTTACAACTTACAATAACAGGTGACTTGATGGAGGGCTTACATCTACGGAGACACCCATATCTACAAAGAATAGGCATTAAGAATAGCGGTAGCACAGACCAAAATTTAAATTCAGAGGCTACTGAAAAACATTGCAGGGCTCTTCAAAATCAGGTGAGAAAACCTCCTAAGTGCACTTTTCACTTGCAGCTTGCAAAGCCTAACTTCAAAAGCACAATCAACAAACTACATAAACTAGGGAGAACTTTGCTGATTGGTTGAGCTATTTTCAAGTGTAATTAGTAATTATGCTAGTTACAATACAGAGGACAGACAAAGATGAATATGGGCACAAGCACCTCTATATTGATCTTGGAGGGTGTGGATGAATCCACCAGAATAAGAGGAAGACTCGAATGCCAGTGCCCAACGGTTATGAGATCTGAAAAGGCCTATTATTACATCAAAAAGATAATAAAACATTATGACCCTCTCAACGCCATTTTGCTAGTTAACAATTATCAAACTAAGAAGTAAGATCTGTAAAGGGTCAAATTATCAAACGAAGATATGTAAGAAAGGATCACAAATTATCAAACGATGATCTGTAAGAGAAGGTCACAAATGCTTCCATGACAGTCTATCCAACGAAGTAACTACATCAGAAGTAAACTTACGGCTGCAGCTCATTTCCCAGGCGGCAAATGGACCATGCACACAAATCTTGCATCTGACACGTTTCAACCATTCTTTCCAAGTGACCTGTTCAGCCACTGGGAACCAAGTTTTCAAGAACGTGGGAACGATTAGTACCAATTTTATCAATATCAACAAACTGAGACAGCAACAATAAATCCAGCATCCAGAGAGCGAAGGCCAATTCGATCAAATGGTTATACCCGAAACCTTAACTTGAAAAAAGAACTCACTCATAAAACTGAGAAAGATGACTATCAAATAATTGAAGATGAAAAGGCACAAACAACTCATGATCATGATCATTCTTCTTGTGATGCACACTAAAAGTACCTCAGACAAATGGCACAAAACTTGATTTCTGTTAACAGAAACGCTGCTTCTTCCGAAAAGAAATCAATTGATGCTCACCTGCTAAAACTTCCATTAACTGCTTAACGAAATAAGAACATGTGAAACACAGCAATGGCAGGAACCGCAGTCGGCAAATTACCTTTAGTACAAAAATTGCACAATCTCAAAAAGTGAGATCTAAAAGATACTTCGAGCATTAGAAGTTAGCAGAGGTAAGAAGATTGGAGAAACTAGCTTTAATTCAAATCGCCACCTGCATATGATTTCCATATTTCAAGTATGCTTAACCTAATAGCTGCAACCCGCTTACTTTGATGAACAATAGAGTTGAAACCACAATAATAGCAAGCAAAACTTTGAGAAGGCAAGTGCATAATTAATTACACAACCCAAAAATAAAAAATACACTGCATTCAAATAAATCCAGAACAGATAAAGAACATTTATATATAATTACATTAAGAAAGTTTTATGCACACCCCAAAAGAGAGCACCGTGATTGACGCCCTGATTATTTGAAAACTTGACACCAAAAATACTAAAATATAGATTTATAGATTTGATAAAAGAGGGATAAAACACAAACTAGCATCTTTAGCCGACTGAACCATCACATTATCCACTGAGTATATTACACCAAAACAAAAAAGAAAACAAAAATATTAAACCTAGAATCTAACGTAAAAGCCTTGAGAGTTAAGCTAAACAAGCAGCAGACTTGATTTAGAAACATAAGCCGTTTCCAACGAGATAAGGATTCTAAAGAAAAGATCAGTCAGAAGTATGTAACAAGAAGCTGCAGAAGATAACGGCGACAATAGAATTCCAAGAAAATGCCTCTTCAGGGAAGTGGCTTACATTTGCACAAAATTAATCACTTATGCAAGCACTTCTCTCGAAGTTGGCCTATCCTTGACAACGGTCGTTTCCTGATACAGAATTCTCCTTTGATTCTCCACAGCCAGAATCCTTCACATCTGCAACTATGTTTACAGGTACAACTGTATTCTGCTCATCTTCATCATTGACCATGGCTTCATCTTCAATCCCTGAACTCGTGTGCAAAATCTTACCCAAGTTCTCATCCAGATCCTCGCAGTCATTTACCTTTCCTGAAACAAGTTCACCCTTCATTTCTTCATCTTTTGCAACATTGGCTTCCGGAAACTGTTCATTTAATTCCTTCACCATTTCATCCTTCACCATGTATTTCTCTTCAACCACTCTCCCTCTCATACAATCTTCCTCGACACATTTCTCCCCGCCCTCAATCTCTAACACTTCTTCATCGTCCTCCTTAGAATCGACACCAATATCTTGGTTTGGTCTAATCTCAGATACAAACTCCATCTCCGACCCTCCATCACTTTCATTCTCAGACACGTTCTCCACTACCTCCTCATTCACATCGTCAACAGCTGGGTTTTTCCCCTCGAGAAGTTGCAACTTCCTCCTTAAGTCAAGGAGCTCTCTCTCCATGATAAAAAGTCTCTCCTTCAATGTCAAGTTCTCCTCCTCCAACTGGGCTATATGGCTATCCTGATCATCGACCCTATTTTCCAAACAGTTATTATACTCTACTCCATAGTTCTGGTATATCATTTCAAATCGACTCAAGTCATGGTCCAATCTACGTTCTACCTCCAGATGTTCCTCTACATCACTATCACTCGAACCACCACCAACACCTTCCTCTTCTTCCTCCTCATGCACTTCCGCCCTATTATCAGACCCTCGAAGCCTTATCAACCCTTTCATTGATCCATAACCATCAACACCCCACTCCTCCTTGGCCATATCACCCAACGTCTCCCTCGAAGGAGAGAACAGTGGAGTAGGAAGAACAGCTGGTGTTACAGGACTAGGGGACACGAGAGAAGCGATGCCACCAGACTTCTTCGCACGAATTATAAAAGACGTGGTATTCCGAGGCGCATAAGGTGCAAACCTATTGCTGAACTTCTTTTTTGAGTAAAATTTTCGAGCTTTTACACGATTTTGAGATTGCAACTCATGAAGGCTTGGGGGTTGATAACCTCCAGCATTATTTGGACCACTTATGGAACCCGGTAAAGGTTTCTCCGTTCTCCTATTGTTTATCCTTTTGTCACCAACGCCCTTCCAATTGCCTCGCCCTGACCTCGACTGCTTCATGTTTCCATAGTTAGGCTTCGGGAAGTTGCGATACTTATTGTTGGGATCCAAGGGGGGCTGCGGGCGTGCCCATATCTTATAGTTGCCACTCATCATAGGCGGCTGAGACTGAGCCATGATCATCTGGGACTGCTGCATGGCCTGAGGCTGCGGCAAAAGATTAGGCTGGTTGATGGCCTGCGACTGAGACATTATCTGAGAATGGTTCATTAGTTGGCTTTGGTTCAGAAATTGAGGTTGATTAATCACCTGTGGCTGGTTCATAACTTGAGACTGAGACTGATTGATTACGTGAGGCTGGTTTGCCATCTGCGGATGGCTCCTACTAATCATTTGAGCCTGATTTATCATCGGATTCTGATCGTTCATGGCACAACTATACCGAATCGAAAATTTTGCAAAAGAAACAAAAACCCTAAAAAATTAAAGATCGCTTTGCAGATCAAAAAGAAACAAGAATCAAAATATTCGCAAGGAATTTAACCCTAAGAACCCCCTCTCTGGAGAGAGGATTCAAGAAATATGGCGCTATAGATTTTTCGAGACCACAATTTTTGTCAATCCGTCTTCCTTTTACTCCGGAAAAGGGATCTCTCCAGTCTCCAGGGAATTTCGATTTCTTGAG ATGGCTCTTAAAGCTAACGCCACAACGCCGACACATCTTCATAGGCCATTCTTCACTTCACAAACTCCATTTCTCCCTGCGATCAAACGCTACCATCGCCATCACGCACGCATTCGTCTCCGTTGCCGATCTTCCCTTGTCGATGAGCAGCAGAAAGAAGTCGTCTCCTTTTCTGAACCTGAAAAATCGCTCATTGAGGCTCTCATTGGCGTCCAGGGTCGAGGCCGCTCTGTTTCTTCTCAGCAGCTCGCCAATGTTGAGCGAGCCGTGAATGTTCTGGAAGGCTTGGAAGGCGTGCAAGATCCGACGAACTCTAGTTTAATTGAAGGACGTTGGCAGTTGGTGTTCACAACTAGACCTGGAACAGCGTCCATAATACAGAGAACATTTGTTGGAGTTGATTTCTTCAGCGTGTTTCAAGAGATATATCTACAGACAAACGACCCCCGTGTCTCCAACATTGTTAAATTCTCTGATGCAATTGGAGAGCTGAAAGTAGAGGCGGCTGCATCAGTCAAAGATGGCAAACGAATCCTTTTCCAATTTGACAGAGCAGCATTTTCTTTGAAGTTTTTGCCTTTTAAGGTTCCATATCCTGTACCATTCAGACTTCTTGGAGATGAAGCAAAGGGTTGGTTGGACACCACATATTTATCTCCCTCCGGGAACCTCCGTATCTCGAGAGGAAACAAGGGCACCACATTTGTGTTGCAAAAGAAAACGGAAGCAAGACAAAACCTGCTGGTAGCAATTTCTTCAGGCAAAGGAGTTGAAGAGGCAATCGATAAGCTTATCTCTGAAAATCAGAATGAAAATAAATTTGAAGAGGAGCTTCTTGAGGGAGACTGGAATATGTTATGGAGTTCACAGATGGAAACAGATAGTTGGATAGAGAACGCTGCAAATGGTCTCATGGGGTTGCAGATTATCAAGAATGGACAAATGAAGTTTCGAGTGGATATGCTGCTTGGACTAAGATTTTCCATGATTGGTACTTTTGTGAAATCTGGGGACGACTCATACGATGTTACCATGGATGATGCTGCAATTATTGGAGGCCCGTTTGGATATCCTGTGGAAATAGAGAGCCGGTTCAAGCTCCAACTTCTATACAACGATGGGAAGATGAGAATCTCACGAGGATACAATAACATCTTATTTGTTCATCTACGGGTCGGCGAAACAAAGCAGGTGTAG ATGGCTCTTAAAGCTAACGCCACAACGCCGACACATCTTCATAGGCCATTCTTCACTTCACAAACTCCATTTCTCCCTGCGATCAAACGCTACCATCGCCATCACGCACGCATTCGTCTCCGTTGCCGATCTTCCCTTGTCGATGAGCAGCAGAAAGAAGTCGTCTCCTTTTCTGAACCTGAAAAATCGCTCATTGAGGCTCTCATTGGCGTCCAGGGTCGAGGCCGCTCTGTTTCTTCTCAGCAGCTCGCCAATGTTGAGCGAGCCGTGAATGTTCTGGAAGGCTTGGAAGGCGTGCAAGATCCGACGAACTCTAGTTTAATTGAAGGACGTTGGCAGTTGGTGTTCACAACTAGACCTGGAACAGCGTCCATAATACAGAGAACATTTGTTGGAGTTGATTTCTTCAGCGTGTTTCAAGAGATATATCTACAGACAAACGACCCCCGTGTCTCCAACATTGTTAAATTCTCTGATGCAATTGGAGAGCTGAAAGTAGAGGCGGCTGCATCAGTCAAAGATGGCAAACGAATCCTTTTCCAATTTGACAGAGCAGCATTTTCTTTGAAGTTTTTGCCTTTTAAGGTTCCATATCCTGTACCATTCAGACTTCTTGGAGATGAAGCAAAGGGTTGGTTGGACACCACATATTTATCTCCCTCCGGGAACCTCCGTATCTCGAGAGGAAACAAGGGCACCACATTTGTGTTGCAAAAGAAAACGGAAGCAAGACAAAACCTGCTGGTAGCAATTTCTTCAGGCAAAGGAGTTGAAGAGGCAATCGATAAGCTTATCTCTGAAAATCAGAATGAAAATAAATTTGAAGAGGAGCTTCTTGAGGGAGACTGGAATATGTTATGGAGTTCACAGATGGAAACAGATAGTTGGATAGAGAACGCTGCAAATGGTCTCATGGGGTTGCAGATTATCAAGAATGGACAAATGAAGTTTCGAGTGGATATGCTGCTTGGACTAAGATTTTCCATGATTGGTACTTTTGTGAAATCTGGGGACGACTCATACGATGTTACCATGGATGATGCTGCAATTATTGGAGGCCCGTTTGGATATCCTGTGGAAATAGAGAGCCGGTTCAAGCTCCAACTTCTATACAACGATGGGAAGATGAGAATCTCACGAGGATACAATAACATCTTATTTGTTCATCTACGGGTCGGCGAAACAAAGCAGGTGTAG MALKANATTPTHLHRPFFTSQTPFLPAIKRYHRHHARIRLRCRSSLVDEQQKEVVSFSEPEKSLIEALIGVQGRGRSVSSQQLANVERAVNVLEGLEGVQDPTNSSLIEGRWQLVFTTRPGTASIIQRTFVGVDFFSVFQEIYLQTNDPRVSNIVKFSDAIGELKVEAAASVKDGKRILFQFDRAAFSLKFLPFKVPYPVPFRLLGDEAKGWLDTTYLSPSGNLRISRGNKGTTFVLQKKTEARQNLLVAISSGKGVEEAIDKLISENQNENKFEEELLEGDWNMLWSSQMETDSWIENAANGLMGLQIIKNGQMKFRVDMLLGLRFSMIGTFVKSGDDSYDVTMDDAAIIGGPFGYPVEIESRFKLQLLYNDGKMRISRGYNNILFVHLRVGETKQV Homology
BLAST of Spg000831 vs. NCBI nr
Match: XP_008449765.1 (PREDICTED: probable plastid-lipid-associated protein 12, chloroplastic [Cucumis melo] >KAA0041357.1 putative plastid-lipid-associated protein 12 [Cucumis melo var. makuwa] >TYK21659.1 putative plastid-lipid-associated protein 12 [Cucumis melo var. makuwa]) HSP 1 Score: 720.7 bits (1859), Expect = 6.9e-204 Identity = 360/398 (90.45%), Postives = 381/398 (95.73%), Query Frame = 0
BLAST of Spg000831 vs. NCBI nr
Match: XP_038902721.1 (probable plastid-lipid-associated protein 12, chloroplastic [Benincasa hispida]) HSP 1 Score: 720.3 bits (1858), Expect = 9.1e-204 Identity = 358/398 (89.95%), Postives = 382/398 (95.98%), Query Frame = 0
BLAST of Spg000831 vs. NCBI nr
Match: KAG6570366.1 (putative plastid-lipid-associated protein 12, chloroplastic, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 719.9 bits (1857), Expect = 1.2e-203 Identity = 360/398 (90.45%), Postives = 382/398 (95.98%), Query Frame = 0
BLAST of Spg000831 vs. NCBI nr
Match: XP_022943649.1 (probable plastid-lipid-associated protein 12, chloroplastic isoform X1 [Cucurbita moschata]) HSP 1 Score: 717.2 bits (1850), Expect = 7.7e-203 Identity = 359/398 (90.20%), Postives = 383/398 (96.23%), Query Frame = 0
BLAST of Spg000831 vs. NCBI nr
Match: XP_004142141.1 (probable plastid-lipid-associated protein 12, chloroplastic isoform X1 [Cucumis sativus] >KGN54108.1 hypothetical protein Csa_018101 [Cucumis sativus]) HSP 1 Score: 716.8 bits (1849), Expect = 1.0e-202 Identity = 359/398 (90.20%), Postives = 381/398 (95.73%), Query Frame = 0
BLAST of Spg000831 vs. ExPASy Swiss-Prot
Match: Q8LAP6 (Probable plastid-lipid-associated protein 12, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=PAP12 PE=1 SV=1) HSP 1 Score: 494.2 bits (1271), Expect = 1.4e-138 Identity = 248/361 (68.70%), Postives = 295/361 (81.72%), Query Frame = 0
BLAST of Spg000831 vs. ExPASy Swiss-Prot
Match: Q94KU6 (Plastid lipid-associated protein 2, chloroplastic OS=Brassica campestris OX=3711 GN=PAP2 PE=1 SV=1) HSP 1 Score: 61.6 bits (148), Expect = 2.3e-08 Identity = 61/237 (25.74%), Postives = 103/237 (43.46%), Query Frame = 0
BLAST of Spg000831 vs. ExPASy Swiss-Prot
Match: Q94FZ9 (Plastid lipid-associated protein 1, chloroplastic OS=Brassica campestris OX=3711 GN=PAP1 PE=1 SV=1) HSP 1 Score: 59.3 bits (142), Expect = 1.1e-07 Identity = 64/250 (25.60%), Postives = 101/250 (40.40%), Query Frame = 0
BLAST of Spg000831 vs. ExPASy Swiss-Prot
Match: O49629 (Probable plastid-lipid-associated protein 2, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=PAP2 PE=1 SV=1) HSP 1 Score: 58.9 bits (141), Expect = 1.5e-07 Identity = 55/234 (23.50%), Postives = 98/234 (41.88%), Query Frame = 0
BLAST of Spg000831 vs. ExPASy Swiss-Prot
Match: Q96398 (Chromoplast-specific carotenoid-associated protein, chromoplastic OS=Cucumis sativus OX=3659 GN=CHRC PE=1 SV=1) HSP 1 Score: 58.2 bits (139), Expect = 2.5e-07 Identity = 57/234 (24.36%), Postives = 94/234 (40.17%), Query Frame = 0
BLAST of Spg000831 vs. ExPASy TrEMBL
Match: A0A5D3DEA0 (Putative plastid-lipid-associated protein 12 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold859G00220 PE=3 SV=1) HSP 1 Score: 720.7 bits (1859), Expect = 3.4e-204 Identity = 360/398 (90.45%), Postives = 381/398 (95.73%), Query Frame = 0
BLAST of Spg000831 vs. ExPASy TrEMBL
Match: A0A1S3BNF7 (probable plastid-lipid-associated protein 12, chloroplastic OS=Cucumis melo OX=3656 GN=LOC103491552 PE=3 SV=1) HSP 1 Score: 720.7 bits (1859), Expect = 3.4e-204 Identity = 360/398 (90.45%), Postives = 381/398 (95.73%), Query Frame = 0
BLAST of Spg000831 vs. ExPASy TrEMBL
Match: A0A6J1FUZ3 (probable plastid-lipid-associated protein 12, chloroplastic isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111448350 PE=3 SV=1) HSP 1 Score: 717.2 bits (1850), Expect = 3.7e-203 Identity = 359/398 (90.20%), Postives = 383/398 (96.23%), Query Frame = 0
BLAST of Spg000831 vs. ExPASy TrEMBL
Match: A0A0A0KX56 (PAP_fibrillin domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_4G286330 PE=3 SV=1) HSP 1 Score: 716.8 bits (1849), Expect = 4.8e-203 Identity = 359/398 (90.20%), Postives = 381/398 (95.73%), Query Frame = 0
BLAST of Spg000831 vs. ExPASy TrEMBL
Match: A0A6J1JFQ6 (probable plastid-lipid-associated protein 12, chloroplastic isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111484606 PE=3 SV=1) HSP 1 Score: 716.5 bits (1848), Expect = 6.3e-203 Identity = 357/398 (89.70%), Postives = 382/398 (95.98%), Query Frame = 0
BLAST of Spg000831 vs. TAIR 10
Match: AT1G51110.1 (Plastid-lipid associated protein PAP / fibrillin family protein ) HSP 1 Score: 494.2 bits (1271), Expect = 9.8e-140 Identity = 248/361 (68.70%), Postives = 295/361 (81.72%), Query Frame = 0
BLAST of Spg000831 vs. TAIR 10
Match: AT4G22240.1 (Plastid-lipid associated protein PAP / fibrillin family protein ) HSP 1 Score: 58.9 bits (141), Expect = 1.1e-08 Identity = 55/234 (23.50%), Postives = 98/234 (41.88%), Query Frame = 0
BLAST of Spg000831 vs. TAIR 10
Match: AT4G04020.1 (fibrillin ) HSP 1 Score: 57.8 bits (138), Expect = 2.4e-08 Identity = 65/255 (25.49%), Postives = 101/255 (39.61%), Query Frame = 0
BLAST of Spg000831 vs. TAIR 10
Match: AT3G26070.1 (Plastid-lipid associated protein PAP / fibrillin family protein ) HSP 1 Score: 55.8 bits (133), Expect = 8.9e-08 Identity = 52/194 (26.80%), Postives = 98/194 (50.52%), Query Frame = 0
BLAST of Spg000831 vs. TAIR 10
Match: AT3G26080.1 (plastid-lipid associated protein PAP / fibrillin family protein ) HSP 1 Score: 46.6 bits (109), Expect = 5.4e-05 Identity = 42/180 (23.33%), Postives = 78/180 (43.33%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (cylindrica) v1
Date Performed: 2022-08-01
Relationships
The following mRNA feature(s) are a part of this gene:
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