Csor.00g299620 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSstart_codoninitialpolypeptideintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGTAAGTAAGAATTTTCTTTTTTCCTTGCTTTTCGGTTCTGTATAATGTTTTCGTTGTTCTTTTTACCCTTTTTTTCCCCTTCGATTCGATGTGGAATGAGTGTTAATGTACCCGTATGTTGTATCAGATAGTTGGCTGAAGTTTTCGATTTATTTTACTGATTCTTCTGTTATGTAGATTCTTGGCTGTTTATTTATTTTTTCCTCCATTTTGCTTTGATTCGTAAATGACGCTTAATTCTATGATATGATTGTTTGGACGTTGTAGAGCATCCCAGTTAACCCGAAGCCGTTTTTGAACAATTTGACTGGAAAGACTGTGGTTGTGAAACTCAAGTGGGGGATGGAGTACAAAGGTTTGGTTCTATCTGCTGCTTGTTTTCCTCGTTTCTCTTGCCTGCTGATGTTTGTACTCACTTTCGTTTACATTTCAGGCTTTCTTGTCTCGGTGGACTCGTACATGAACTTACAGGTGTGTTTCTACTTGAATTGACATTAATTTAGTTAATACTTTTCGATTGCGATCATATTCTTGTTGTTTTTATGTCTCCCTCTGCTGCAGGGCTTAGTTTACCAAGAGTCCGTATACTATTTTGACTGTAATGAATTTACTCGATATGAGAAGGGAACTTAGTCTAATCGTCTTTTTGCTTGAAACATTGTTCAAACGTTGCACAAACTGATTCAATGCCGTTCATCTCTGAATCTAACTTCATGTGTTCTGCTCATATTGAAAGTTCCCCCTTACAACTATTTATCATTGGTTTTTTCTGGAAAACTAGTTCGAAAACAACGTTGGCCATTTTTGTTTTTATAATTTTTTGTAAGAAATGCTTTGGAATAATTTGTAATTTTTATTACTTATTGTGCATGTCGAAACTGGTATACATAGTCCAGTGGTTTAGGCATCTCTACTTCGTTTAAGAGGTCATGGGTTTCACTCCTCACTCCCACATTTGATTTAATATTCTCGAAAGGGAAATTAAGTTACAATTTTTTAAATGCAGCTTGCCAATACTGAGGAATATATCGACGGACAATGTACTGGGAGTTTGGGAGAAATATTGATCAGGTAACCTTTCTTTTGTGATTGAAAATCACAATATCTAGTGCATCAATGCTTATTTGTTGATTGTAATGTGTATGGAGTGTTGTTTGAAATATCATTAGACTAATAAGCGTATATTAGTGATTGAATAGAGAAGTTGTGGTGATTCGATATAAATAGTATGGGAAGGAAAGGAGAGTAGAGGATTTTTTAGTGGTTTAGGCTTCAGTGAGTATAGTCAAGAGAGGGAAGGTTCCAAGTACCTCAAATATTTGGTTATCTTGGTGTTCTGTTATGTTTTATATTTCAGTATATTTGGTTCTATCAAATCTATTCCAGAGAAATTTGATTATGGCCATGGGGTTGGTTAGATGAAAATTTATGTGAACAGATGTTGATGTTTTTATGTGAAGAATTGAATCGTTCCCTGAAGTAATTGGCAGAGGAAATGGATTCAATGTTCCAATTTTTTCGAGATAGAGTGGCACAGAATTTTAGTGAAATGAAAGCGGAGATTATAGAAATAAGAAAAGAGATCAGATGGGCAAAAACAAAGAGGCAGACATTCATATTGGAATCAGATTTCTCATCTCGCAAGGATACAAAAAAGGTTGATGATGAAGAGAGTGAGACGACCACAAAAAACATGGAACAAACCTCAGAATCCTCACATGAGGAACAAGAGTGAGAATGAGAAGTCAATGAAGTAAAAAGTAAGAATGGATTAAGGATTAATGGAGCTTGTATGGAAGCAAAGGGGAGTGTGCAAAAGAGGTGTAGAAGGAACCAAAAATACGCCTACCAAAAAACACTTAATGTATGGTTAAGATCGAGGGGAGGTTAACCAATAAACAATTGCTATTTCTATGGCTGGAGATTAGTTTGATGTTTGAAAACCTTTGAGTGGGTTGGGAAGGCATTCAAGTTAAGAAAGGAAGGATTTCTGGAGAGATTGTCAGCAATTGCTACTTCTATGGCCAGAGATAAACACTTGGGGAGGCGCTAACGCAATCATCATGAAGAGAGGTGTTTGAGGGATCAGAGGGGAACTGCTGTGCGAAAAATAGAAATAACAAAAGTCGTGCAAGAGAGGCCAATGCTGGTGGAAAATGCAGGAGCTGTTGATGGAGATGGGGTCGTGGAGAAGGCATCAACACAAATTTCGTCAAGATGTATTCGTGGATATGAAGTTGTCTAGTCATGCTATACAAGTTGAATTTTGGGGTGTGTTAACTTCTATATTTGAACTCAAGAACTGACCCACTACTAAAAGGAAAACCCTAGTAGCCATAGGTCCACATGCTCTCTTTTCACCTGAATTGTCGCACATCCTTATTTCTATTCCCAACACTGCCGATTGTTGCCTGTGATATCTCCTCTACATGCCACTGCTTTCCGCACAAGGTCATCAAAGCACAACCAGTTGGGTGTTTGAAAGGGGAACGGATTTAGCCTCTTGAGAATGAGTATGCCGAGGAGAGGAGATGTTCCAAATGCCTCGAACCTTGGTTATCTTTTACAATTTAGTATACTTGTTTTTATCATAATATGAATGGCTGTTTATGACATAAATGACTCGAGCGAGAAAATGTAACAGACAACATGTAGAATAAGGTCGTACGCATGCATTTTTCTTTCTACGAGGACTATTAAGGATATGTTAGTAAGTTATTCGTGCTTATCGATGAATTCTTCCACAGATTCTCATATCGAACATGGCAATGTTCCTATTTTTTCGTGACAGGTGTAACAACGTTCTATACCTTCGCGGAGTACCAGAGGATGAAGAGATAGAAGATGCCGAGCGTGACTAGCATGTAAATTTTTAGCAGCTTTTCGATGGCGTAGCAGTAGTGAAGTTTTATGATGTTATTGATACTGTTTATGGCATCTCAAGGGACAGGAACACTCCAATTTGGTGGATTTCAAAACCTGCAACAATCGGTTCGCTATCATACAAGGATGTTTATATTTTTAAAATTGACCATTATTCTTGATCCATAAAATTTTTAAAAAATATCTCAAAATTTCTTAACCCTCAATTCACGTATCCAATAATATCACTTATTTTAAAATTTCATTTTTATTAAATGTTTCTCATTTTAAAAAAATCAAACTTTAATTTAAATATATGAATAGCATGACAATTAATTATTTAAATTTTAATATCTGGGTGATATCGAATATCATGAAATTTAAAAAGTAATTATAGATTAAGCTTTTTGGATTTAATTGCAAAGAAAATAAATTTCAGAGAAAGCTGTCAAATCGGTAATAGTTAATGATTTATTCACATTTGTGACTAAACTATTATTTTTTGTCCCAAATTTTCTTATTGATATTATTATTTTAGGGTAAAAATGTTAAATTTAAAAATGAAAAATGAAATAAATATTTTAATATATATTATTTAAATATATATATATATATATATATATATATATATAATAATTGTTTTTTTTAAATGATAAAACTCCCCAAAACCCCCGACCATATTGCATAGAACGAAACATTCCATCCATAATACCAAAAATTGCCTTTCCCTCTTTCAGATCTGAACCGCTGCATTTGCTCGACACGTCCTGTTGAGCTGATTGTCGTCCCCAAATCCCTAATTCCACTATCAACTCCCTTTCCTCTGCTTCTATTCCTTCTCATATTACTGAGTTCTCACCTTCTTCTCGCGGGTTTTTTTTTTTTCTGTTTCATTCTTCGATTCGATCGTTGCTGCATTGTGGAATGTGGGTTTCCTCAGAAGATCTAGGGTTTATATCACCGGATAGCTACGGCCTATATGCAATTTTCAGATCAGGTACTTGAATCTCTGATGATTAATCGTTATGATGTTTGCTGCCTTCTTCTATATATTTTGCCATTTCTGTGGTTGAACGATTGAAACGAATCCCAGAGGACGAACGCTTGGGATGGAGATTGTACTAAAAGAGAAGGATGCTGCGGATTGGGTTTATAGAGGCGAAGGAGCCGCTAATCTTGTTCTTGCATATACTGGCTCCTCTCCAGCTTTTGTATGTTGAACCTGTCGCTCCTTTCTCTTATTACATATAGATAAAAAAACTCGATTGTCATTTGGATGAATTTGGCAGTTTCTACGTTGTTACAGATACTTATCTGTAGTTGCAAGTTTGTGACTGGGAAATGGGGCATTGGATAGCCAGGAAATTCTTGACAATTTCCTTTTCTTTGCGTATATAACAGATGATAATCTAAATGAAGGGATGGTTTGAATTCAACCTACAAAAGAGAGAGCATTACTTTGGGGATTTAAACTTTTTTGGGGACTAACTATTCTTCTTGATATAGATTGGAAAAGTTATGCGTATACAAAAGGCTTCTATCAATGGATCACAGCATGCGAGGACTCCGACCGCATTTTCCAAATACGAATACTTGTTGTGGGGTGACATAGGGAACCTTGTCTCATCCGCTGATAGGGACACTGCTGCCCAAACCTTTGTGCAGCGTGTAATGAGCCCTTTATTGGGTTCCAAACACGTTGATTCTGGTGTATGTTTTTCCTTTGCTCTTTAAGTGGATTGATATATTTCAGAAATACAGCTGATTGTATACTTTTTCTTTTCATAGAATTCTACCATTAGAAGTGTTGCAAAACTGAATACAAATTTCTGAGCGTGGTATATCTTTACACTCGCAGAAACTTGTCTTAGTAACCAGAGAATTTCTAGAGTTGGCAGAGAAGAATGTAAATAGTGAACGCCCATCTTGGAGGGTAGATGCTGGAAAGATTGATACCCATCGTGATTATGTTCTTATTATATCTGATCATTCCATTTTCCCTCACGGTAATATTACATTTTCTACAATGTTCTATTAAATACCAATGTACCGTTGCATTTTCTTATAACGAAGAGGACAACCTGCCTGTATACTCTGTCCGATTAGTCATTGGTCCAGTTAAGGTGAAAAAGTTGTCTACATCATCCTATAGAACATATCTTGTTTAAGTAAGGCATTGCTTATTTGTTTTCTGTTATTTTATTCCCAAGGAATGAACCAAGGGGCAGATAGTAGCTTTTGCACATTATTCATACATGGTTTCCTAGTAGGTTACACATCATAGTAACTTCTTGGAGCTTTTTATGTGCATTGATTTAAATCTGTCTAAGTACTCATGATGTAGGAGTGCCCATTTTGGAGTGACAAAGCTTTCCTAATTCCCTGTTTTCTCAGTGTTGATGCATTGTGGTGTTCCAATTTCTCTCTTTTCTTCATAAGAAAATAAAAAACATGCACCTTCTGAGTTATTTTATAGTTTATTATGGATGGTTAGGTATTCATGAAAACTTTTCCATATATGATCTTGATGAATGGTCAATTGCTGTGCTGCATATGAGTTTGCTGATTAGATTGTCTCCGTCTTCTGTATGCTCTTGAAAAATATAAGCCAATGGTTTTAGAAAAGGAATCACACTCAAATATACTATGTTTCCCGCTCTTGATTTCCTTTCGAAATGGAATGCTACCTTACCAATTGACTGGCCTTACTTGCAGCCATGATATCAGGCAGATAATGACGTCCTTGTTAATTTTCCCCTTTTGTTTTCCACTTTTTTTTCATTATTTAATTTTGGTGATGGAATTGCTTACGTTTTCTATTTCAGGTGCTTTAGAAGGTGAGCCTTGCATATCTGTTGAGATAAAGGTACTTCTCACTTCTATGGTATTTATTTTTATTTTTTCTTTTTAGCATTGATTAATTTAATTCTGCAAGCATTACTCCAAATGAATGATAAAGTGGCTCTTTTTAAAATTTTTTGTTCTGTTTTCTTCTTACCCCAATAGCCAAAATGTGGGTTTCTCCCATTCTCAAGGTTCATAACCCATGGCAATGCAGTTAAGAGGTGTATGACTCGTTTCAGAATGCACCAAGCCCTTAAGTTGCATCAAGAAGAGGTGATCTTTCTTCATTGTTTCATTGAATTTAGCTGTCTTAATTTATTATTTCCTAATTTAGTTTCCATCACTGTTCCAATTTATTTATTTTGTAGATATCAGAGTTCAGTGATTATGATCCACTTGATCTCTTCTCTGGATCGAAGGATCGTATACTTAAAGCAATTAAGGATCTTTTTTCCACGCCTCAAAACAACTTTCGAGTGTTCTATAATGGCTCTCTTATATTTGGGGCATTGGGTGGTTCTGCAGAGAATACTGACGTGATTGTTGGAGAAGCATTTGAAGATGCACTGAAGTCTGTCATCCTGGCAGATGATGGGCTATGCACTACTAGCTTGCTACAGCTTGTCACTGAAACTTTATATAAATCTGGAGTTCTGGATCGACTTCTTGAAGTCCAGAAGCTTGACAGTTTGGACATAGAAGGTGCTATTCATGCATATTATGATGTAATTTCAGAGCCTTGTGTGGTTTGTGGACAGTTGAATGAAGATGAAGAATTGCATAGATATGCCTCTTTGCATTCCCTTCCTCTTGATCAAAGCTTAAAGATTGTCAAAAACTTTTTGATAGCTGCTACTGCCAAAGACTGTAGCTTGATGATTAGTTTTAGGCCAAGAGAAGGGAAAGAATGGGGTTCTTCAAATAACACAATACGCCTTGAATCAACAGGGCAATTTTTTGATTATAAGGTACATGTAATTCATCTTTTTATTCTGTTTATTTCAAAAAGATTATTTGAAAGCATTTTATGTTATAATTCTTCCAATTGATATCCTTTGCCACTCGAGAGTAAATATTTATGAATGAGGAAAGAGAGAGTCTGCTTTTAGAAATAGTTATGAACATTGAAATCAAGCAAGCGTTACATAACTATTTGGCATTTTTATGATAAAATTTATCAGGGCTCACCAATATGGATCTTTCCATTTCAATGATATTTTTGCTACTGCTTCTCTTTGGGTTTGTGTAAAATATTTGCCACTTGCTTCAGTTATGAGCTTTACTTCAATTCACCGTGTGCTTGAAAACCAAATCAGTCCAAATCTAAGCATACAAAAAGAAGTATTTATCAGTATCCTGAGTTGATTTTTCTCCACTTCAAGGTGTCCAATTTGTGAGGTGAAAAATTACCTGCTTACAATATTTCAGGTACACTTCATTGACTTGGATCTAAAACCAATGAAGAAGATGGAAGAATATTATGAACTGGATAAGAAGATAGTGGGTCTCTACAGGAAAATAGAGAAAGGGAAAGTAGGTGATATTCAAATGCAAAATTATATGAGACTAAGGTTGGAAAGTAGATCCAATATTAAGAAACAATTTCCTCATTGAGGATTTACTTATGTATGTGGTAAGTTCAATACTTTGCTTTCCTTACCATAATTATTACAGCGCCTGTTCTGGAATTTTAGTTACAGGCTAATTATATATACTACTTTACTTTATTTGTTTATTGCTCTCACATGATTCACCCTACTAATCCTCAGATAGACTTTTGCCCATCCCAAAGCTAGTTCTAAGTGACAATGAGAATTTTGATTTATTAAATTATTAAGTTTTATACTTTGAGGCTTGAACTAAGGGAAGGTTACTTTAAATATTCTATGCTTTTACTACTAGAGCCACCCAATGCAGATTATGATTAACATGTATATTTTCCATACATTTACTTGTTTACCTGGCATCTTGCCGTAATTTATCATGCATGCATCCTTTAGGAAATTTTCTTAGCATTCAGTATACAGAAGTTTGAAATTATTACCACAAAATTGCAAATATATACATTTTCCGGATAGATTATACTTGCTTTATATCTGTAATATAATTGAATATCATCATTTATGTTTACAGAATACTGGAGATACGGGGTTTGTGTTGCCCATGTCTATATCTGGACCTTCAGATAAAGGATTTATGGGGCATGCTTAAGTGGTGTGTATCATGGTCCAATACAATGGCTGCTCTTGGCTGCACCCATCCCTAAAAAATGAGCGATTGAAAAGGTTACTCTCTAGCATCCTTTGACATTATTTGTATTTATTTGCGTGCATGAAAATAAAAAATCTGTCAAGAATTTCCTTCAAGGGGAATCTCATAAAAGTGGATCAGTTAGTGTGGCAAAATATAAGAACGGGAGAATTCTCATTGGATGTTATTTTTCATTAGTGAAGCTAATTTTTAGTGACATCATTTCAATTTAATGATATTCGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTAAAATTCGCATTCACTTGCATTTACCTTTATTCTCTGCTCCCTTCTGATCATTAACAATTTCCTCCACTGCTTCCTCCCCTCCTTGCTTTCTGGCCCATGGAGGATCCGTCGTGAGGACGCCCTCTCCCATCAAGTCTTACAATATTGTTGGGCTGCAGACCTGATTTCTATGGATGAAGAGATATTATTGGATTTGTTGAACCTTTATTTATGTTCTAAAAACCAGTCCCCTTGTTTAGTAGGGAAGAAGCTTTGGTATTTTCTTAATCCTCCCTCTCAAAAGCGAAACAAAGAAGGGGGATTAAACCTCCTCTCTCTGCCACAGCTCTGCAACCATAGCGACATTTCATAATGCATAACGCCATTGTACCTGTGAACACGTTCCAATCCCATCCGATTTCGGTCATTATTCAAGCTCGTAATTTGCTAGTTGCCTTCTGATTTTGATCGTCTTCTGTTGGCAGGTATGAAAAAGAAGGGAAATCAACCAAGAAACTAGAAGCTTTTTAA ATGAGCATCCCAGTTAACCCGAAGCCGTTTTTGAACAATTTGACTGGAAAGACTGTGGTTGTGAAACTCAAGTGGGGGATGGAGTACAAAGGCTTTCTTGTCTCGGTGGACTCGTACATGAACTTACAGCTTGCCAATACTGAGGAATATATCGACGGACAATGTACTGGGAGTTTGGGAGAAATATTGATCAGGTGTAACAACGTTCTATACCTTCGCGGAGTACCAGAGGATGAAGAGATAGAAGATGCCGAGCGGACAGGAACACTCCAATTTGGTGGATTTCAAAACCTGCAACAATCGATCAGAGGACGAACGCTTGGGATGGAGATTGTACTAAAAGAGAAGGATGCTGCGGATTGGGTTTATAGAGGCGAAGGAGCCGCTAATCTTGTTCTTGCATATACTGGCTCCTCTCCAGCTTTTATTGGAAAAGTTATGCGTATACAAAAGGCTTCTATCAATGGATCACAGCATGCGAGGACTCCGACCGCATTTTCCAAATACGAATACTTGTTGTGGGGTGACATAGGGAACCTTGTCTCATCCGCTGATAGGGACACTGCTGCCCAAACCTTTGTGCAGCGTGTAATGAGCCCTTTATTGGGTTCCAAACACGTTGATTCTGGTAAACTTGTCTTAGTAACCAGAGAATTTCTAGAGTTGGCAGAGAAGAATGTAAATAGTGAACGCCCATCTTGGAGGGTAGATGCTGGAAAGATTGATACCCATCGTGATTATGTTCTTATTATATCTGATCATTCCATTTTCCCTCACGGTGCTTTAGAAGGTGAGCCTTGCATATCTGTTGAGATAAAGCCAAAATGTGGGTTTCTCCCATTCTCAAGGTTCATAACCCATGGCAATGCAGTTAAGAGGTGTATGACTCGTTTCAGAATGCACCAAGCCCTTAAGTTGCATCAAGAAGAGATATCAGAGTTCAGTGATTATGATCCACTTGATCTCTTCTCTGGATCGAAGGATCGTATACTTAAAGCAATTAAGGATCTTTTTTCCACGCCTCAAAACAACTTTCGAGTGTTCTATAATGGCTCTCTTATATTTGGGGCATTGGGTGGTTCTGCAGAGAATACTGACGTGATTGTTGGAGAAGCATTTGAAGATGCACTGAAGTCTGTCATCCTGGCAGATGATGGGCTATGCACTACTAGCTTGCTACAGCTTGTCACTGAAACTTTATATAAATCTGGAGTTCTGGATCGACTTCTTGAAGTCCAGAAGCTTGACAGTTTGGACATAGAAGGTGCTATTCATGCATATTATGATGTAATTTCAGAGCCTTGTGTGGTTTGTGGACAGTTGAATGAAGATGAAGAATTGCATAGATATGCCTCTTTGCATTCCCTTCCTCTTGATCAAAGCTTAAAGATTGTCAAAAACTTTTTGATAGCTGCTACTGCCAAAGACTGTAGCTTGATGATTAGTTTTAGGCCAAGAGAAGGGAAAGAATGGGGTTCTTCAAATAACACAATACGCCTTGAATCAACAGGGCAATTTTTTGATTATAAGGTACACTTCATTGACTTGGATCTAAAACCAATGAAGAAGATGGAAGAATATTATGAACTGGATAAGAAGATAGTGGGTCTCTACAGGAAAATAGAGAAAGGGAAAGTAGTGGTGTGTATCATGGTCCAATACAATGGCTGCTCTTGGCTGCACCCATCCCTAAAAAATGAGCGATTGAAAAGGTATGAAAAAGAAGGGAAATCAACCAAGAAACTAGAAGCTTTTTAA ATGAGCATCCCAGTTAACCCGAAGCCGTTTTTGAACAATTTGACTGGAAAGACTGTGGTTGTGAAACTCAAGTGGGGGATGGAGTACAAAGGCTTTCTTGTCTCGGTGGACTCGTACATGAACTTACAGCTTGCCAATACTGAGGAATATATCGACGGACAATGTACTGGGAGTTTGGGAGAAATATTGATCAGGTGTAACAACGTTCTATACCTTCGCGGAGTACCAGAGGATGAAGAGATAGAAGATGCCGAGCGGACAGGAACACTCCAATTTGGTGGATTTCAAAACCTGCAACAATCGATCAGAGGACGAACGCTTGGGATGGAGATTGTACTAAAAGAGAAGGATGCTGCGGATTGGGTTTATAGAGGCGAAGGAGCCGCTAATCTTGTTCTTGCATATACTGGCTCCTCTCCAGCTTTTATTGGAAAAGTTATGCGTATACAAAAGGCTTCTATCAATGGATCACAGCATGCGAGGACTCCGACCGCATTTTCCAAATACGAATACTTGTTGTGGGGTGACATAGGGAACCTTGTCTCATCCGCTGATAGGGACACTGCTGCCCAAACCTTTGTGCAGCGTGTAATGAGCCCTTTATTGGGTTCCAAACACGTTGATTCTGGTAAACTTGTCTTAGTAACCAGAGAATTTCTAGAGTTGGCAGAGAAGAATGTAAATAGTGAACGCCCATCTTGGAGGGTAGATGCTGGAAAGATTGATACCCATCGTGATTATGTTCTTATTATATCTGATCATTCCATTTTCCCTCACGGTGCTTTAGAAGGTGAGCCTTGCATATCTGTTGAGATAAAGCCAAAATGTGGGTTTCTCCCATTCTCAAGGTTCATAACCCATGGCAATGCAGTTAAGAGGTGTATGACTCGTTTCAGAATGCACCAAGCCCTTAAGTTGCATCAAGAAGAGATATCAGAGTTCAGTGATTATGATCCACTTGATCTCTTCTCTGGATCGAAGGATCGTATACTTAAAGCAATTAAGGATCTTTTTTCCACGCCTCAAAACAACTTTCGAGTGTTCTATAATGGCTCTCTTATATTTGGGGCATTGGGTGGTTCTGCAGAGAATACTGACGTGATTGTTGGAGAAGCATTTGAAGATGCACTGAAGTCTGTCATCCTGGCAGATGATGGGCTATGCACTACTAGCTTGCTACAGCTTGTCACTGAAACTTTATATAAATCTGGAGTTCTGGATCGACTTCTTGAAGTCCAGAAGCTTGACAGTTTGGACATAGAAGGTGCTATTCATGCATATTATGATGTAATTTCAGAGCCTTGTGTGGTTTGTGGACAGTTGAATGAAGATGAAGAATTGCATAGATATGCCTCTTTGCATTCCCTTCCTCTTGATCAAAGCTTAAAGATTGTCAAAAACTTTTTGATAGCTGCTACTGCCAAAGACTGTAGCTTGATGATTAGTTTTAGGCCAAGAGAAGGGAAAGAATGGGGTTCTTCAAATAACACAATACGCCTTGAATCAACAGGGCAATTTTTTGATTATAAGGTACACTTCATTGACTTGGATCTAAAACCAATGAAGAAGATGGAAGAATATTATGAACTGGATAAGAAGATAGTGGGTCTCTACAGGAAAATAGAGAAAGGGAAAGTAGTGGTGTGTATCATGGTCCAATACAATGGCTGCTCTTGGCTGCACCCATCCCTAAAAAATGAGCGATTGAAAAGGTATGAAAAAGAAGGGAAATCAACCAAGAAACTAGAAGCTTTTTAA MSIPVNPKPFLNNLTGKTVVVKLKWGMEYKGFLVSVDSYMNLQLANTEEYIDGQCTGSLGEILIRCNNVLYLRGVPEDEEIEDAERTGTLQFGGFQNLQQSIRGRTLGMEIVLKEKDAADWVYRGEGAANLVLAYTGSSPAFIGKVMRIQKASINGSQHARTPTAFSKYEYLLWGDIGNLVSSADRDTAAQTFVQRVMSPLLGSKHVDSGKLVLVTREFLELAEKNVNSERPSWRVDAGKIDTHRDYVLIISDHSIFPHGALEGEPCISVEIKPKCGFLPFSRFITHGNAVKRCMTRFRMHQALKLHQEEISEFSDYDPLDLFSGSKDRILKAIKDLFSTPQNNFRVFYNGSLIFGALGGSAENTDVIVGEAFEDALKSVILADDGLCTTSLLQLVTETLYKSGVLDRLLEVQKLDSLDIEGAIHAYYDVISEPCVVCGQLNEDEELHRYASLHSLPLDQSLKIVKNFLIAATAKDCSLMISFRPREGKEWGSSNNTIRLESTGQFFDYKVHFIDLDLKPMKKMEEYYELDKKIVGLYRKIEKGKVVVCIMVQYNGCSWLHPSLKNERLKRYEKEGKSTKKLEAF Homology
BLAST of Csor.00g299620 vs. ExPASy Swiss-Prot
Match: Q93YN9 (Inositol-pentakisphosphate 2-kinase OS=Arabidopsis thaliana OX=3702 GN=IPK1 PE=1 SV=1) HSP 1 Score: 498.8 bits (1283), Expect = 8.3e-140 Identity = 251/440 (57.05%), Postives = 318/440 (72.27%), Query Frame = 0
BLAST of Csor.00g299620 vs. ExPASy Swiss-Prot
Match: B8AVX5 (Inositol-pentakisphosphate 2-kinase IPK1 OS=Oryza sativa subsp. indica OX=39946 GN=IPK1 PE=3 SV=1) HSP 1 Score: 456.1 bits (1172), Expect = 6.1e-127 Identity = 228/432 (52.78%), Postives = 302/432 (69.91%), Query Frame = 0
BLAST of Csor.00g299620 vs. ExPASy Swiss-Prot
Match: Q7XQZ6 (Inositol-pentakisphosphate 2-kinase IPK1 OS=Oryza sativa subsp. japonica OX=39947 GN=IPK1 PE=2 SV=1) HSP 1 Score: 456.1 bits (1172), Expect = 6.1e-127 Identity = 228/432 (52.78%), Postives = 302/432 (69.91%), Query Frame = 0
BLAST of Csor.00g299620 vs. ExPASy Swiss-Prot
Match: Q4JL91 (Inositol-pentakisphosphate 2-kinase OS=Danio rerio OX=7955 GN=ippk PE=1 SV=3) HSP 1 Score: 181.8 bits (460), Expect = 2.2e-44 Identity = 158/495 (31.92%), Postives = 214/495 (43.23%), Query Frame = 0
BLAST of Csor.00g299620 vs. ExPASy Swiss-Prot
Match: Q9SUM2 (Probable small nuclear ribonucleoprotein F OS=Arabidopsis thaliana OX=3702 GN=At4g30220 PE=3 SV=1) HSP 1 Score: 164.5 bits (415), Expect = 3.7e-39 Identity = 75/85 (88.24%), Postives = 82/85 (96.47%), Query Frame = 0
BLAST of Csor.00g299620 vs. NCBI nr
Match: KAG6598461.1 (Inositol-pentakisphosphate 2-kinase, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1174 bits (3038), Expect = 0.0 Identity = 585/585 (100.00%), Postives = 585/585 (100.00%), Query Frame = 0
BLAST of Csor.00g299620 vs. NCBI nr
Match: XP_023546839.1 (LOW QUALITY PROTEIN: inositol-pentakisphosphate 2-kinase-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 877 bits (2266), Expect = 0.0 Identity = 438/438 (100.00%), Postives = 438/438 (100.00%), Query Frame = 0
BLAST of Csor.00g299620 vs. NCBI nr
Match: KAG7029400.1 (Inositol-pentakisphosphate 2-kinase [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 877 bits (2266), Expect = 0.0 Identity = 438/438 (100.00%), Postives = 438/438 (100.00%), Query Frame = 0
BLAST of Csor.00g299620 vs. NCBI nr
Match: XP_022961997.1 (LOW QUALITY PROTEIN: inositol-pentakisphosphate 2-kinase-like [Cucurbita moschata]) HSP 1 Score: 875 bits (2262), Expect = 0.0 Identity = 437/438 (99.77%), Postives = 437/438 (99.77%), Query Frame = 0
BLAST of Csor.00g299620 vs. NCBI nr
Match: XP_022996675.1 (inositol-pentakisphosphate 2-kinase-like isoform X1 [Cucurbita maxima] >XP_022996676.1 inositol-pentakisphosphate 2-kinase-like isoform X1 [Cucurbita maxima]) HSP 1 Score: 874 bits (2257), Expect = 0.0 Identity = 436/438 (99.54%), Postives = 437/438 (99.77%), Query Frame = 0
BLAST of Csor.00g299620 vs. ExPASy TrEMBL
Match: A0A6J1HBK4 (Inositol-pentakisphosphate 2-kinase OS=Cucurbita moschata OX=3662 GN=LOC111462600 PE=4 SV=1) HSP 1 Score: 875 bits (2262), Expect = 0.0 Identity = 437/438 (99.77%), Postives = 437/438 (99.77%), Query Frame = 0
BLAST of Csor.00g299620 vs. ExPASy TrEMBL
Match: A0A6J1K5G4 (Inositol-pentakisphosphate 2-kinase OS=Cucurbita maxima OX=3661 GN=LOC111491850 PE=4 SV=1) HSP 1 Score: 874 bits (2257), Expect = 0.0 Identity = 436/438 (99.54%), Postives = 437/438 (99.77%), Query Frame = 0
BLAST of Csor.00g299620 vs. ExPASy TrEMBL
Match: A0A1S3BB09 (Inositol-pentakisphosphate 2-kinase OS=Cucumis melo OX=3656 GN=LOC103487989 PE=4 SV=1) HSP 1 Score: 824 bits (2129), Expect = 5.49e-298 Identity = 410/438 (93.61%), Postives = 428/438 (97.72%), Query Frame = 0
BLAST of Csor.00g299620 vs. ExPASy TrEMBL
Match: A0A0A0LRI9 (Inositol-pentakisphosphate 2-kinase OS=Cucumis sativus OX=3659 GN=Csa_2G361850 PE=4 SV=1) HSP 1 Score: 820 bits (2119), Expect = 1.83e-296 Identity = 408/438 (93.15%), Postives = 425/438 (97.03%), Query Frame = 0
BLAST of Csor.00g299620 vs. ExPASy TrEMBL
Match: A0A6J1KNN0 (Inositol-pentakisphosphate 2-kinase OS=Cucurbita maxima OX=3661 GN=LOC111496203 PE=4 SV=1) HSP 1 Score: 816 bits (2107), Expect = 1.86e-294 Identity = 407/445 (91.46%), Postives = 423/445 (95.06%), Query Frame = 0
BLAST of Csor.00g299620 vs. TAIR 10
Match: AT1G22100.1 (Inositol-pentakisphosphate 2-kinase family protein ) HSP 1 Score: 510.8 bits (1314), Expect = 1.5e-144 Identity = 251/438 (57.31%), Postives = 325/438 (74.20%), Query Frame = 0
BLAST of Csor.00g299620 vs. TAIR 10
Match: AT5G42810.1 (inositol-pentakisphosphate 2-kinase 1 ) HSP 1 Score: 498.8 bits (1283), Expect = 5.9e-141 Identity = 251/440 (57.05%), Postives = 318/440 (72.27%), Query Frame = 0
BLAST of Csor.00g299620 vs. TAIR 10
Match: AT1G58936.1 (Inositol-pentakisphosphate 2-kinase family protein ) HSP 1 Score: 448.0 bits (1151), Expect = 1.2e-125 Identity = 226/441 (51.25%), Postives = 306/441 (69.39%), Query Frame = 0
BLAST of Csor.00g299620 vs. TAIR 10
Match: AT1G59312.1 (Inositol-pentakisphosphate 2-kinase family protein ) HSP 1 Score: 448.0 bits (1151), Expect = 1.2e-125 Identity = 226/441 (51.25%), Postives = 306/441 (69.39%), Query Frame = 0
BLAST of Csor.00g299620 vs. TAIR 10
Match: AT1G58643.1 (Inositol-pentakisphosphate 2-kinase family protein ) HSP 1 Score: 448.0 bits (1151), Expect = 1.2e-125 Identity = 226/441 (51.25%), Postives = 306/441 (69.39%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Silver-seed gourd (sororia) v1
Date Performed: 2021-10-25
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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