
Spg021910 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGCATGTTCCTCCTCCATTCGCCCTTCTAGAAAGGGAGGTTTTTGTAGCTTGCTGGTGTTTGTGCTATTCTCTTGGGGGCTTATGGGGGGAAAGAAATCAAATAATAGAATTTTTAGTGGGGTTGAGAGATTGCCTTGTGAGGTTTGGTCTAATGTCAGATTCTATGATTCGTTATAGGCCTCGGTTTCTAAGGCTTTTTGTAATTATCCGTCAGGTTTCATTTTGCTTGATTGGAGTCTCCTTATATAATTGGAGTCCTTTTTGTTGGGGCTTGGTTTTTTGGATGTCCTTGTATTCTTTCAATTTTTCTCAAAAAAAAGTTCGATTCTTTATAAATAAAAAATTAAAAAAAAAAAAAGAAAAGAAAGAAACCATCTAGTCAGAATAGGTTCCATGCAAATAGTGCAGGGTAATTATATTTCTGGGTTATCTGATGTAATAGTATTCAGATGATCGAAGTTCTGTCCTACCTATGAAGAGAGAAACTGGCTGGGGTCAGGTGGAGTGGGGAGGATGAGTGGTAATTGTGGTTGTGGTTGCTGTCCACCAATTTTGAGATGGACTATATAAATTTGAAATGGTAATTTAGTTTAAGGATGTATAATTACAATTTAATTAGATTTGGTTGTTAACCGTGGGATTTCAGGGGTCTAGTTATTGCCTTTTATAAAAGTTGAAATATTATTTCCTTACTACAAGACAAATTACCCAAATCTATGGAAATATACTAGCTGCTAAACATATTCTATGTAAATTTGAGATAACTTGTGAGTAATACTATCACAATGTCTAATTTGAAGATTCTGAATTGCACAACACTATATATCATTGAATAATTGCTTCTCTCAAAAGTTAGGGTAGTGTTGGGTTATTCTTGATGAATATGTTGTCAATTTTTTCTGAGTAAACTTAATAGTAGCAATATAGCATCATAGGTCTTCTAATCCTAGATGAGATTATTTTCTGGTATCTTAAAGTACTCTTGATGATTTCATGGACATATGGGGTTTTGTGGTACTGGCCAAGCGAATTCTTTGTCCACACCTCTACATAAACTGTACATAGAATGATGTTACACTATAAAAACACTTGAATCAAGTTGTGATAAGCCAATTCAATTTTTCTATCTATGCAAACTCTTTATTTTACAAGTTAGGAATGGTGTAATTGTGTAAAAGTTAGACAATGCGCAGGGTTAAAGAAACTTTAACCAGTGATATTGAAGCTCATGGATCTGACGAAGGCCAAAAGATATCTCCAGCTGTAGTCGCACTAAAGGGCAAACGTTTGTCCTTCACTTGGCTTGACGGTGAAGCCCAGAAGGTGACTCCCATTCCTTGGCATATCATTAAATTATAAACTGGAGTATGAGAAACGGGGTAGCAGTGGACCTAGTGGTCAATCCTTTCCTAGGCTTACTCGTTTGAAAAATTGAAGTTTTGCGTTTTTTTCCAGCTGTGCTATGAGCCATCTATACTATCTTGATCACATTTTCTTTTGATGTTTTTATGTTCATTCTTACTTCTTATACCTTGTTATGCCTCTTCATTATGTTTTATCAAGTGAATTAATTGAAAATTTTATGATTTAATCTATTTTTTTTTTTTTTTGTCTTTCCTATCAAATCCATTAGATATTTATGTTTTAGCTCTTTGATGTAAATGTTCTGTCTTGATTCTTGATGACAAAACTGTCATGCTTCAACATTTTCCCCTATATTCTCCACAAAAATGTTTTCTCCGCGTGTCCTAAGCTTGCCTGCCTGTGTCCCACGCATGTTTTATGGGTGTTGGTTATCATACAGTCCATCGTGTGCCCAAAGTGTGTCCATGTTTGAAACTGATAATGCGCTAGATAATGTCCATGCTGCTTCTTCCTCTCCTTCTCCTCTTCTTCTTCTCTTTCTCTCTCACTGATACAAATCTTCATTTTTCTCTAGAAATATTGTTTCTTTTACATCAGCTCTGAATCTAGCTATGAAACTTGTGGACCAATGAGAGATCTCAGTGATGTGCCTCGATTATTTATTGTGCGGTATAAAAGGGATCCAACTAAAGCTAAGGAGATAAAGCCAAGAAGTATGTTTGACACGTCATCCGATGATCTGGATCTTGCTGCACAGCTCGTGGCTCTTTACAATGGTTCATCTGAAATTTCAGAGGTTAGGCTTTTCTTCCCGATACTTTATTGACCTCCTTAACTATGCACGTCACTGATATACATTAAGAAGCTCGTGATGATATATTATTATAGCATGTTCTAATTATTGTTGAGATAAAAGCTTATAGTTATTAGGATAAATTTAATTGTTTTCCTTGCGTCATGGGCTTGAAAACTAATTCAATTCATGATATGGGCTATTAATAAATAACATAGGAATTAACTTCTTAGGACTTGAACATGGGATTTCATTCTCTAGAAGTATGGTTACTTGGTAATTAAAACTTTGAGAATGCTTCAGTATACTTGTCTTACTAGTATCGTTGTTTTATCTTCTTTTGTAGATTGTTCAATGGATCTCAAAAATAATCGAGGATGGTGATTCAAAGGATCTACCCTTTTATGTAAGCCACTTTAAAGATGTTTATTAATTTTATTTTGCCGAACCATCTTTTTTTTTTTTTTTTTTTTTTTAATCTTTCCTCCATCTATGTTTGTCGCATGATAGAATCCTGAGTCTACTGTTCTTTTCCATTTATTTGATGGAATTTTTTTTTCTAATGCTTATTAAGCCATTTATTCGTATATATGAATTCGCTTCAATTCTTCAAGAGGAAGTGTAGAAAATGGCTTTAGGGCATCTGTAGATATTCTTACAACTTTGATTGGGAAGTGTCTATTCCAATAGTCCACCTCGGTTGACTACTGGAAATTCAGATTCTATGGGAAGAATGTGTTAGGGACCAAGGCAGTATGGGATGCCTTTGTCCCACATTGGTATATAAGTGGTTGGTTCTCCCTCCCCAATCGCTTAGCTTTTGGAGTGACTCTCCAACTACTTAAATACCTTACAATTGGTATCAGAGTCGGTGGTCGACGACTTCGGAGAGGAGTGGTGGCAGAGGGGCTGACCGGAACCAGCCGAGTGAAGCGTCACCGTGCACAGCCACCGAGACGTCGGCTTTCCGGGGGGGGGATTGTTAGGGACCAAGGCAGTATGGGATGCCTTTGTCCCACATTGGTATATAAGTTGTTGGTTCTCCCTCCCCAATCACCTGGCTTTTGGGGTGTGGTTCTCCAACTACTTAGGGGCTGTTTGGGGCGCTGAATTGGTTATAATATCTGGTGGTTATAATAATTTGGGGATTATAATAGTCTGGGAGTTATAATAATCTGTGTTTGGGGTGCAGATTATTTTAGTCTGGGATAAAATAATCTGTGTTTAGGATGCAGATTATTTTAGTCTGGGTTAAAATAGTCTGTGTTTAGATTGCTGATATGTTTAACATGAGATTCTGAATCAAATGTTCAAGTTGACTGTTTTTTTCCTGATTTTTTTTTTGTTTATTTTTCTCATACAACTTTGTATGTCAAATATTATATTTTGCAAATATCAATAAAAAATTGTTTGGATTCAGTTGTAAAAAAATAAAGTATTGGGTATACGGGTTAAATGATGTGTTTAACTTAAAAGGAAACAAAAATAACCTAAGGTAAGAGTTGATTTTCTTTGTTTTAGGGTCATGATTTTTTCACAAAAGAAGTCATTTTATGATTTCATATTGGAAAATCATATTTGTTTCATTTCTGTATTTTCAATGTAAAAATGGTAAATGCTTATGTACAAAGAAATTATTTATATATGTAGAAAGACAACTGAGAAACTGGTAAGTGTTTTTAACATGGAATGACCAAAAATCGCTTTTTTATTTTTCTTTTTTCCTTCTTTTTCATTTTCTTCCTCCATCTCCATCATCTTCATCTTATTCCTCCATTTTCATCTTCATCTTCATCATCTTCTTCCTCCATTTCCATCATCATCTCCATCTTCCTCAACCTCAAACTCCATCTTCATCACTTTCTTCTTCCTCTAACCCTAATGTCGGCAACGTTTTCAACGACTTTTCCGGCGGTTGTCGACAAATTTTTCGACGACCAAAATTTTTTTCCTCGTTTTTTTTTTTTTTTTCTTTATTTTCATTTTTTATATTTTTCAAAATGAAAATGAAAAAAATATGAAAAAAAAGGAAAAAAAAATCGGTTGCCGGAAAAATAGTCGACGATCGTCGGAAAAGTCGTCGAAAAAGTGGTCGGCGGTCGTCGAAAAAGTCGTCGGACACTTCGTCGGCCAACGGCGACCGACGGTCGTCGGAAAAGTCAAGGAGTCGCATAGAAGAAGAGAGGAGAGAGTTACTGTAGAAAATGGATAGAATAATCGGGTGGGTTGAATGATGGTTACGGTAGAAAATAATGGATAAAATAATCGGGGGTAAAAATAACCCACCTCACCATTTATTTTTGTTGATGCCCCAAACACTGAATAGGTTATAATAAAGGGGGCTATTATAACATATTCAGTGCCCCAAACAACCCCTTAGATACCTAACAATTGGTATCAGGGTCGGTGGTCGACGGCTCCGGAGAGGAGTGGCGGCGGAGGGGCTGATCGGAACCATTCGAGTGAAGTGCACAGCCGTTGAGACGTTGGCTTTCCGGGGAGGGGCAATTATTAGGGACCAAGGCAGTATGGGATGCATTTGTCCCACATTGGTATACAAGTGGTTGGTTCTCCCTCCCCAATCGCCTGGCTTTTGGGGTGTGACTCTCCAACTACTTAGATACCTAACAGAATGCACTTGATACCACTACCCCTGGTCTATGATGCTGTAAAGGCTCTTATTTCGTAGCTTCAGGGGAGGTGTTTTCTCAACCCCTTGTCCTTAGGTTGTCTTGCTGCCTTTTTTATAATATCTCTGTTTGTTATTAATAAGAAAAAGAATGAGGTGTGGGGACTTGTTTGACTATTTAGCTGAAATTTATCTTCGTGTTTTTATGCCAGAGAGTGAAGGCTCCTGAACTCATTTATGAAGACCCGGAGCCTATGAGGTTTGGAAGTGCTGGAAGTAGTTTTATAACCAATGTGTTGAAGTGGATTGGGCACATCAAAGTTGGAATCTATGACCGTCTAGACGACCCAAGGATTGGTCCAGTCTTATTTCTTGCTTCATTATTGTCCTTCGGCACTACATGGTTAAGGAGGTCTCAACCCACTCCGCCATCTCGACCAGCTAGGCAACCGGACCTCCCAAATGAATCCACTCAACCAAGTCAACCATCTACTAAGGTAAGTGAGTGAGGGCTCAAGAAATGTTTCCTTATGTCTTTTTTCAACATACAGTCTCAAATTAAGAATGCTCGTGTTTTATAACTTGAATGACAATTTTTGCGAAATGCATCATTTCAGGAAGGAAGCAAAGCTAGAAGAAGAAACCGTTCGAGAACTGCGTCAAATGCTGACATACCTCCTTCCATCACTGATTTTGAGCCTCCAAATGCTTATCAGATGCCACAAATTTCGGATTCTGATTCCGAATAGTAAGGGTATATTCAGGTCAAGTGAGTCAAACCTCTTAAATCATCAACGGAAGTCCTCTCATCTATTCTGCATTCCCTGACGACCAGTTTCACCTTCATCATAGATTTAACTAAACTTTATATTGCCAAGCCTTTCATTTATAGCCCTATAGCATTATTTATTACAACTTTCCCAGTTTCTTCAATTTAAGGTGATTGGCTATTGACTAGTACTGCAAAATGGTGGGTTCGGATTCCTCTGCGTAAGCATTTTGGACGAGCGGAGCTCTTCGAGTGTTACTGAATGTCCTATCCTGCACTTGATTCAGGTAGAACTGGAAAATTAGCCATCTGTAAAGTTCCGAATCTTGATAATATGATTTAGGCGTTGCTTAATTCACAATCATACAAGGAAATTATTGTTCTTTTAAGCTAAAAATGCTGGTTTAAAAGGAACTCCGCAGCATCATCTAATTACTGTTATATTTTGACTCAAATTAGCCCGGAACATTTGTTCTGAAGTCTGTTAAGACATAGTGAATTACTTTGGGTAGAGAGATTCCTG ATGCATGTTCCTCCTCCATTCGCCCTTCTAGAAAGGGAGGTTTTTGTAGCTTGCTGGTGTTTGTGCTATTCTCTTGGGGGCTTATGGGGGGAAAGAAATCAAATAATAGAATTTTTAGTGGGGTTGAGAGATTGCCTTGTGAGGTTTGGTCTAATGTCAGATTCTATGATTCGTTATAGGCCTCGGTTTCTAAGGCTTTTTGTAATTATCCGTCAGGTTTCATTTTGCTTGATTGGAGTCTCCTTATATAATTGGAGTCCTTTTTGTTGGGGCTTGACAATGCGCAGGGTTAAAGAAACTTTAACCAGTGATATTGAAGCTCATGGATCTGACGAAGGCCAAAAGATATCTCCAGCTGTAGTCGCACTAAAGGGCAAACGTTTGTCCTTCACTTGGCTTGACGGTGAAGCCCAGAAGAAATATTGTTTCTTTTACATCAGCTCTGAATCTAGCTATGAAACTTGTGGACCAATGAGAGATCTCAGTGATGTGCCTCGATTATTTATTGTGCGGTATAAAAGGGATCCAACTAAAGCTAAGGAGATAAAGCCAAGAAGTATGTTTGACACGTCATCCGATGATCTGGATCTTGCTGCACAGCTCGTGGCTCTTTACAATGGTTCATCTGAAATTTCAGAGATTGTTCAATGGATCTCAAAAATAATCGAGGATGGTGATTCAAAGGATCTACCCTTTTATTCCACCTCGGTTGACTACTGGAAATTCAGATTCTATGGGAAGAATGTGTTAGGGACCAAGGCAGTATGGGATGCCTTTGTCCCACATTGGTATATAAGTGGTTGGTTCTCCCTCCCCAATCGCTTAGCTTTTGGAGTGACTCTCCAACTACTTAAATACCTTACAATTGGTATCAGAGTCGGTGGTCGACGACTTCGGAGAGGAGTGGTGGCAGAGGGGCTGACCGGAACCAGCCGAGTGAAGCGTCACCGTGCACAGCCACCGAGACGTCGGCTTTCCGGGGGGGGGATTGTTAGGGACCAAGGCAGTATGGGATGCCTTTGTCCCACATTGGTATATAAGTTGTTGGTTCTCCCTCCCCAATCACCTGGCTTTTGGGGTGTGTGCCCCAAACAACCCCTTAGATACCTAACAATTGGTATCAGGGTCGGTGGTCGACGGCTCCGGAGAGGAGTGGCGGCGGAGGGGCTGATCGGAACCATTCGAGTGAAGTGCACAGCCGTTGAGACGTTGGCTTTCCGGGGAGGGGCAATTATTAGGGACCAAGGCAGTATGGGATGCATTTGTCCCACATTGGTATACAAGTGGTTGAGAGTGAAGGCTCCTGAACTCATTTATGAAGACCCGGAGCCTATGAGGTTTGGAAGTGCTGGAAGTAGTTTTATAACCAATGTGTTGAAGTGGATTGGGCACATCAAAGTTGGAATCTATGACCGTCTAGACGACCCAAGGATTGGTCCAGTCTTATTTCTTGCTTCATTATTGTCCTTCGGCACTACATGGTTAAGGAGGTCTCAACCCACTCCGCCATCTCGACCAGCTAGGCAACCGGACCTCCCAAATGAATCCACTCAACCAAGTCAACCATCTACTAAGGAAGGAAGCAAAGCTAGAAGAAGAAACCGTTCGAGAACTGCGTCAAATGCTGACATACCTCCTTCCATCACTGATTTTGAGCCTCCAAATGCTTATCAGATGCCACAAATTTCGGATTCTGATTCCGAATAG ATGCATGTTCCTCCTCCATTCGCCCTTCTAGAAAGGGAGGTTTTTGTAGCTTGCTGGTGTTTGTGCTATTCTCTTGGGGGCTTATGGGGGGAAAGAAATCAAATAATAGAATTTTTAGTGGGGTTGAGAGATTGCCTTGTGAGGTTTGGTCTAATGTCAGATTCTATGATTCGTTATAGGCCTCGGTTTCTAAGGCTTTTTGTAATTATCCGTCAGGTTTCATTTTGCTTGATTGGAGTCTCCTTATATAATTGGAGTCCTTTTTGTTGGGGCTTGACAATGCGCAGGGTTAAAGAAACTTTAACCAGTGATATTGAAGCTCATGGATCTGACGAAGGCCAAAAGATATCTCCAGCTGTAGTCGCACTAAAGGGCAAACGTTTGTCCTTCACTTGGCTTGACGGTGAAGCCCAGAAGAAATATTGTTTCTTTTACATCAGCTCTGAATCTAGCTATGAAACTTGTGGACCAATGAGAGATCTCAGTGATGTGCCTCGATTATTTATTGTGCGGTATAAAAGGGATCCAACTAAAGCTAAGGAGATAAAGCCAAGAAGTATGTTTGACACGTCATCCGATGATCTGGATCTTGCTGCACAGCTCGTGGCTCTTTACAATGGTTCATCTGAAATTTCAGAGATTGTTCAATGGATCTCAAAAATAATCGAGGATGGTGATTCAAAGGATCTACCCTTTTATTCCACCTCGGTTGACTACTGGAAATTCAGATTCTATGGGAAGAATGTGTTAGGGACCAAGGCAGTATGGGATGCCTTTGTCCCACATTGGTATATAAGTGGTTGGTTCTCCCTCCCCAATCGCTTAGCTTTTGGAGTGACTCTCCAACTACTTAAATACCTTACAATTGGTATCAGAGTCGGTGGTCGACGACTTCGGAGAGGAGTGGTGGCAGAGGGGCTGACCGGAACCAGCCGAGTGAAGCGTCACCGTGCACAGCCACCGAGACGTCGGCTTTCCGGGGGGGGGATTGTTAGGGACCAAGGCAGTATGGGATGCCTTTGTCCCACATTGGTATATAAGTTGTTGGTTCTCCCTCCCCAATCACCTGGCTTTTGGGGTGTGTGCCCCAAACAACCCCTTAGATACCTAACAATTGGTATCAGGGTCGGTGGTCGACGGCTCCGGAGAGGAGTGGCGGCGGAGGGGCTGATCGGAACCATTCGAGTGAAGTGCACAGCCGTTGAGACGTTGGCTTTCCGGGGAGGGGCAATTATTAGGGACCAAGGCAGTATGGGATGCATTTGTCCCACATTGGTATACAAGTGGTTGAGAGTGAAGGCTCCTGAACTCATTTATGAAGACCCGGAGCCTATGAGGTTTGGAAGTGCTGGAAGTAGTTTTATAACCAATGTGTTGAAGTGGATTGGGCACATCAAAGTTGGAATCTATGACCGTCTAGACGACCCAAGGATTGGTCCAGTCTTATTTCTTGCTTCATTATTGTCCTTCGGCACTACATGGTTAAGGAGGTCTCAACCCACTCCGCCATCTCGACCAGCTAGGCAACCGGACCTCCCAAATGAATCCACTCAACCAAGTCAACCATCTACTAAGGAAGGAAGCAAAGCTAGAAGAAGAAACCGTTCGAGAACTGCGTCAAATGCTGACATACCTCCTTCCATCACTGATTTTGAGCCTCCAAATGCTTATCAGATGCCACAAATTTCGGATTCTGATTCCGAATAG MHVPPPFALLEREVFVACWCLCYSLGGLWGERNQIIEFLVGLRDCLVRFGLMSDSMIRYRPRFLRLFVIIRQVSFCLIGVSLYNWSPFCWGLTMRRVKETLTSDIEAHGSDEGQKISPAVVALKGKRLSFTWLDGEAQKKYCFFYISSESSYETCGPMRDLSDVPRLFIVRYKRDPTKAKEIKPRSMFDTSSDDLDLAAQLVALYNGSSEISEIVQWISKIIEDGDSKDLPFYSTSVDYWKFRFYGKNVLGTKAVWDAFVPHWYISGWFSLPNRLAFGVTLQLLKYLTIGIRVGGRRLRRGVVAEGLTGTSRVKRHRAQPPRRRLSGGGIVRDQGSMGCLCPTLVYKLLVLPPQSPGFWGVCPKQPLRYLTIGIRVGGRRLRRGVAAEGLIGTIRVKCTAVETLAFRGGAIIRDQGSMGCICPTLVYKWLRVKAPELIYEDPEPMRFGSAGSSFITNVLKWIGHIKVGIYDRLDDPRIGPVLFLASLLSFGTTWLRRSQPTPPSRPARQPDLPNESTQPSQPSTKEGSKARRRNRSRTASNADIPPSITDFEPPNAYQMPQISDSDSE Homology
BLAST of Spg021910 vs. NCBI nr
Match: XP_022972327.1 (dnaJ homolog subfamily C member 16 isoform X1 [Cucurbita maxima]) HSP 1 Score: 418.7 bits (1075), Expect = 8.0e-113 Identity = 247/476 (51.89%), Postives = 259/476 (54.41%), Query Frame = 0
BLAST of Spg021910 vs. NCBI nr
Match: KAG7021526.1 (DnaJ-like subfamily C member 16 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 414.5 bits (1064), Expect = 1.5e-111 Identity = 244/476 (51.26%), Postives = 259/476 (54.41%), Query Frame = 0
BLAST of Spg021910 vs. NCBI nr
Match: XP_022933480.1 (dnaJ homolog subfamily C member 16 isoform X1 [Cucurbita moschata]) HSP 1 Score: 413.7 bits (1062), Expect = 2.6e-111 Identity = 243/476 (51.05%), Postives = 258/476 (54.20%), Query Frame = 0
BLAST of Spg021910 vs. NCBI nr
Match: XP_023530981.1 (dnaJ homolog subfamily C member 16 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 412.1 bits (1058), Expect = 7.5e-111 Identity = 242/476 (50.84%), Postives = 259/476 (54.41%), Query Frame = 0
BLAST of Spg021910 vs. NCBI nr
Match: XP_038878990.1 (uncharacterized protein LOC120071055 [Benincasa hispida]) HSP 1 Score: 411.8 bits (1057), Expect = 9.8e-111 Identity = 248/476 (52.10%), Postives = 260/476 (54.62%), Query Frame = 0
BLAST of Spg021910 vs. ExPASy TrEMBL
Match: A0A6J1I4I4 (dnaJ homolog subfamily C member 16 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111470896 PE=4 SV=1) HSP 1 Score: 418.7 bits (1075), Expect = 3.9e-113 Identity = 247/476 (51.89%), Postives = 259/476 (54.41%), Query Frame = 0
BLAST of Spg021910 vs. ExPASy TrEMBL
Match: A0A6J1F500 (dnaJ homolog subfamily C member 16 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111440884 PE=4 SV=1) HSP 1 Score: 413.7 bits (1062), Expect = 1.3e-111 Identity = 243/476 (51.05%), Postives = 258/476 (54.20%), Query Frame = 0
BLAST of Spg021910 vs. ExPASy TrEMBL
Match: A0A1S3BWH5 (dnaJ homolog subfamily C member 16 OS=Cucumis melo OX=3656 GN=LOC103494006 PE=4 SV=1) HSP 1 Score: 404.8 bits (1039), Expect = 5.8e-109 Identity = 245/476 (51.47%), Postives = 259/476 (54.41%), Query Frame = 0
BLAST of Spg021910 vs. ExPASy TrEMBL
Match: A0A0A0LP59 (J domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_1G009890 PE=4 SV=1) HSP 1 Score: 402.5 bits (1033), Expect = 2.9e-108 Identity = 242/476 (50.84%), Postives = 258/476 (54.20%), Query Frame = 0
BLAST of Spg021910 vs. ExPASy TrEMBL
Match: A0A5A7UUX0 (DnaJ-like protein subfamily C member 16 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold274G002590 PE=4 SV=1) HSP 1 Score: 401.4 bits (1030), Expect = 6.4e-108 Identity = 240/467 (51.39%), Postives = 253/467 (54.18%), Query Frame = 0
BLAST of Spg021910 vs. TAIR 10
Match: AT1G18700.1 (DNAJ heat shock N-terminal domain-containing protein ) HSP 1 Score: 152.5 bits (384), Expect = 1.0e-36 Identity = 70/147 (47.62%), Postives = 105/147 (71.43%), Query Frame = 0
HSP 2 Score: 71.6 bits (174), Expect = 2.2e-12 Identity = 54/141 (38.30%), Postives = 74/141 (52.48%), Query Frame = 0
BLAST of Spg021910 vs. TAIR 10
Match: AT1G18700.2 (DNAJ heat shock N-terminal domain-containing protein ) HSP 1 Score: 152.5 bits (384), Expect = 1.0e-36 Identity = 70/147 (47.62%), Postives = 105/147 (71.43%), Query Frame = 0
HSP 2 Score: 71.2 bits (173), Expect = 2.9e-12 Identity = 50/133 (37.59%), Postives = 70/133 (52.63%), Query Frame = 0
BLAST of Spg021910 vs. TAIR 10
Match: AT1G18700.3 (DNAJ heat shock N-terminal domain-containing protein ) HSP 1 Score: 152.5 bits (384), Expect = 1.0e-36 Identity = 70/147 (47.62%), Postives = 105/147 (71.43%), Query Frame = 0
HSP 2 Score: 71.6 bits (174), Expect = 2.2e-12 Identity = 54/141 (38.30%), Postives = 74/141 (52.48%), Query Frame = 0
BLAST of Spg021910 vs. TAIR 10
Match: AT1G18700.4 (DNAJ heat shock N-terminal domain-containing protein ) HSP 1 Score: 152.5 bits (384), Expect = 1.0e-36 Identity = 70/147 (47.62%), Postives = 105/147 (71.43%), Query Frame = 0
HSP 2 Score: 71.6 bits (174), Expect = 2.2e-12 Identity = 54/141 (38.30%), Postives = 74/141 (52.48%), 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 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
|