
Spg007106 (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.GCGCCGAGCGTGTTAATATAATAAATCTTGACTTCATTATATTATTACAAATAGCAAATTCGAATCAATTCGAGCGTTAGGGTTTTTACTTAGCGTCCGCATCCATAGAAATTTCTGGATTCCATCTTACTCTCTTCTGTCAATTCTGTTCACAGGGAAGGTGCTACACGGGGGCCGAGCTCGTACCTAATTTGGAAGGTTTGTTTCTTTGATTCTGCTCTATGGAAGTTTTAGACATGGCGTACGCGATTCAGGTTGCTAGAATTAGGTTTCCGATTTAGTTTTTATGTGATTGACCTGGGAGTGTGAGCTTTCCTGTAGTTGTCATTTGATTCTCTATTTTTCCCGTATTGTCGGCGACTTTATCCATTTTTGGGTTTTCATTTTTGAATATGTGCGTCATGGTTTGTCTTCATTTTAGTGTTAATGATAAATGTATTCACGGTATTTAAGGATCGGTCTCGTGCGTTTCAACTTTCAATTAGTTCCTGGATCGTCAATGAATGTTTTCTAAAGGAGAAATAAAATTATTAACTAGGTTGTGGTAAAATGTTTCAACTGAAGTTCTGTTGTGATCGGTCAGTGAATTTGTTTTACTTAGCAAGAATTTATGCTATCAAATTCTCTACCCATGCGATTGGCTGACGGTGACGGTGATTTTAGAATAGGGTATACCCTGATTAAGTTATCATATATCTTTACTCATTTAGTGAACTTTTGACTGAGCAGGTTCTAATTTTCTGGAACATATTGACATACTGATCAGGGGAAGTACTATGCATCAAGTAATTTGAAGATAGATGTGCTGGGAGGAATGATATATTTTCTCATACAAAGTTGTAGTGGTTGCATCCTGTGCAGGAGAAGAATCAAAGAGAGGCCCTTCTGTTTAAGGGGCTAACATGCCATCTTATATGTCAAAACTACGAGCACCAGTTCAATTTCTAGGGTGGGAGGGTGGATTTAAAAGTTCTCTGGAGTTGCTTTTTGGGCATCAGAAACTGTTGTGTGGCAATTCTAGTCTGTTTCATTCAGTACCTTATTCCTCCCTTACAGAGTTGCATGCACTCTTAAGACCTGGCACTATTTCCGGTGCTAGTTCAGAGCTAGTTAATCGTAGGAAGAATATCTCAGTTCTTGGAGCAATTTCTCGCACATTTTCCATTCCTTCTGTGTCAGGCCCTGCATTACAGACCTGTGGGTATCACATTGATTGTGCCATTGCCGAATCCAATCAATATTCAACTCGCAGCAAGTTTCAAGATAAACCAATGGCTGCTTGTGGTTCTGGAGCTGCACTTGGTGAATGCTCTTTTGAGAATTTAAGTTTTAGGAATGCATGCTTGTCTCCTTCAGCGATCAGTGCTAATATTTGTTTCAACAATAGAAGTGTTGATTGCTGTCGAAAAGCCAGCATGAGTTTGAAAAATCAAGAGCAGCCCAGCAGTAATGTGATATATGGATACTTCACTTACAATGTTGCAAAAAGGTTTTGCAGTAGTTACCTAAATACTGGGTTTGGAGCAAGAGATCTTCACAGTTCATCAACATCTCACTTTGCTGCTGGTTCTGCCCCCAATGTGTCGTTTGATAATTCTGCACGGGAGGAACAACTTGCCAACTCTACCGATTCATCTGAACAGTATGTTCTCTACCAGGTTCCTTTGTTTAGAATGAAAATATTATAGGTTAAATGCTTCATTTTGATTTCATCACAACTTTGATTTTAACTTCCAGATCGAATGTTTATGAATGTTGTTGTCAATTGAACTTGTTCTTGCCTCAGGGATTGCAATGATCCCCCTGTGGACTTGAATGGTTAGAGATATGTGTCATATTCAGTTAGTTATATGGTCATCCCAAAAAAGTGAATAATAGCCACTTGATGAACATTTGTGGTTATTTTCTTGTTAAAATGAATTGGTTTTATGAATATTTCAATATCGTACTCGTACCGTAAGGTATTTATTGTTTTTGGATCTCATTATGGAACACTTGTACTTGATCAGTATTGCTGACACGAAGTACGCTGAGATACCCTTACCTCTTTTAAGTGACTGTGGGCAGTCTGAATGCAAGTGTTCTTATTTCTAAATTTCCTACTATATTCTTCACAGGAAGATCCCGACAGGCAAATCATTGAAACTGGTTTCTGGATCGTGCTATCTGCCCCACCCAGATAAAGAAGATACTGGTGGAGAGGACGCTCACTTTATCTGTGTAGATGAACAAGCTGTAGGGGTGGCTGATGGTGTGGGTGGTTGGGCAGATCTTGGTGTTGATGCTGGACAGTATTCCCGAGAACTCATGTCTAATTCAGTTAGTGCAGTTCAAGAGGAGCCCAAGGGCTCAATTGATCCAGCTAGAGTCTTGGAGAAGGCGCACTCGAAAACAAAAGCCAAAGGTTCCTCCACTGCTTGTATCATAGCGCTTACAGAACAAGTATGTCATTTTACTTGAGACCATCATTCTTTATAAGTTTGAATGTAATCAAGTTGTTTGAGGGCTTGAAAGTTGAAGATCCAGTGTTTGAGGTCCTTGGTTTGTTGATTCATTATAATTTTTCTTTCTTTGACCAAAATAGTTCTTGATAGTTTCTATTTACTTGGAATTATAGCCTAAATTGTCCTAGTTTGAAGTTGAACTTTTGGGTGGAATATATAACAAGAGAAGAAGTCTTTGATGTCTTCTAGAGCTTGCTACAACATAAAATTTTAATTTTTTTTCCCTAGAGTAGTGAGGTGGAGATTGACACTTCTTGTATATAATATATCAGTATCTATCATTTATTTTAGCTAGTTTCTGTACAAGTACTTTCTCATATATTCCGTCTTACAAGGATGTCTAGCAGTTCGTTGTTTTGTTTCTGCATCAGAGGTAATAGTGTAAGGCATCATTGCAGGGTCTCCATGCAATCAATTTAGGAGACAGTGGATTTATGGTGGTTAGAGACGGATGCACTATTTTCAGATCTCCTGTGCAGCAGCATGATTTTAACTTCACCTTTCAATTGGAGAGTGGAAATAATGGAGATTTGCCTAGCTCTGGACAGGTTACTCTCATCATATTCTTTGTCTTCTGTAGTTGTCTTTCCTGTTCTGATTTAGGAACTTGGTCATATTTTTTAGCGAGTCAATTAACATATGTATTGATGCATTGATGCCAGATTAAGTATTCCCTTCCTTTATATCAATCTGTCATTCAAGATAACAGTAATATGTAAGGTAGTGCCTGGTAGAAACCTATATAAATATGTGAATAATCTCGCATATTATACAGGTTTGTGACTTTCTCACTTATGGTTATTTTTAATATAAATTGATATAGTTTGAAGGCCTACCCAAATAATATCATGAATTTTTTTTAAAAAAACTATGGTGTGGGTCTTGGGACTGCCTCGCATATGGTTGTTATTTTGAGCAGAAATTGATATAGGCGGGAATGATATCTTTTTTACGTGGGTTTTCTCCTCGAACTGCTTTAATCTCAATTATTTTTCTGCTACTTGTTCAACTGTTTATGTATCAATTACCTGGGAATTAATATCTCTAAATGTCTTAGTATATGAGGTGGGGGAAGAAGAATATTATGTTTTCTCCCGGTCTATGTTTCTTCTTCATTTCCACCTTAATAAGGAAAGAGAACAAGTGATGCCTGCTTGTAATCATTTGTCTTTTTCCCTCATTTCATACTTCAAAGTTAAGACATTGAACGATTTTGTTTGTAGAATACTATGCTGGTTGCTTCATGACTTTTTAGAAACAGAGTGAGCAGAATTAACTTGATGATGATGGGATTATCGAAACTGATTCAGGTTTTCTCAGTCCCTGTTGCTCCTGGAGATGTCATAATTGCTGGCACCGATGGGCTCTTCGACAACTTGTACAACAACGAGATCACCGCAGTTGTGGTTCATGCCATGAGAGCAGGCTTAGGCGCCCAGGTGACTGCCCAGAAGATAGCTGCTCTTGCACGCCAGCGAGCTCAAGACAAAGATCGACAAACGCCTTTCTCCACTGCTGCTCAAGACGCTGGGTTTCGCTATTACGGAGGGAAGCTTGATGACATCACCGTCGTTGTGTCGTATGTTACGAGCTCAAATGACAAGTGAGTTCCCATGAACGTCTTCTCCCATACTTGCATCTCCACGCTTCTGTATATAATCTTTCCTGCATAACCATTAACAATGCTTATTGTATCTAAGCATTTCATTGAACTATCTCAACTCTTTACATGGTTGAAGAGTGGATGACCTCTTTTGTAAGTGAAAAATCAGAGGCGTGAGCCATCCCCAGGTTTGAGCGGTTGTTTCTCTGTTTTCTACTTCCATCTGAAACCTTTTGTGCTCTTCTGATGCGTTAGTGAGCAAGACCAAAGTTAAAGGGTTTATTTTTTGTTGTTCTTTCCCTCCCTGTTTTCCACAATATTATTTAGCTATAAATAAATTTTGCGGTCTTCTTTTTTCCTCCTAAAGTTAACTATCTTTATTTTTTATTTATTGGAAATTCGATTTTGGTCAAAAGGTTGAATTCTGACTGGCGGCTCCAATGTGGGAGTGGCTTCCATGAGATTGACTAGTGTCGCTTTTTTAAAACAGAAGTTCTTCGATAGTAATATGAGGGCTGCATTCATGAGGACACACAAGTCACAAAGCAACGGCCGTAATGATTTTCATATTTATCATTTTTCTTAATTCTTATTGATATTAAATCAAATAAATTGATAATTTAAAAGAAAAAATCCTTGTAAAACAAAGTACACCGTTTTCTATTTTTTTTTTTTTTTTTTTTTTTTTGAAAAGAACATACTTCTATTAAATAACAACAATAAGTACGTTAAATTTAAGCATATAATAAAAATACTATAGGATATGTTGATTCCTATGCAAACTTTTACAAATCAGTATTAAACCTTTTGTGGCTTTCTTTTCTTGAAGACATACCATTTCAAATTTTCTAATTTGTTTTCTTTTCATATTTACCACAATACATAACTGTCATCTTTTCAAGATAATGTTTCCTTCTTTTTTCTCTTTTTAATATTACATCACATGTGACTACGTGAAAGGTACGTGATTTTATTTAGTTTTATATTGATCTTTTCATGAGTAACCATTTGTCATATTTAAATAATTTTATTATTAAAACTAAAAGCGAGTTAGCTTGTTTCAAAAAAAAAAAAAAAAAAAAAAAAGCGAGTTAGCTTGAAGGTATTGTCATCCCTTAGATAAATTTTGGCCATGGAAACAATGCTAGGACGATAGAGATGAAATTAATAATATTGATAGGTTAATAATTTTTTTATGGGTTGTGGAGTTCTAAAGTTGACTTTTTTTTTTTTTTCCTTTTTAGTTCGACGTTGACTATAGAGATAAGGAGAAAGGATTGATCTTGATGGGTAGCTTTCAATGAGGGGCATAAATGGAAAAAGAAGTTAGGTGGGAATATCCTCAATGAGGCCCAGGCCCATATTGAACATTGACTTAGTATTCAAATGCGGGCCTTCATGACTGAGACCAAGTCCATAATTACTGCCCATAAATTTAGCGAAGGTCCAACGTTAGGCTGTTAGGCGGAGCAGCAAGTAACGACGAAATCAACTCCAAAAGAAGAACAAGAAGAACAACACTGGATCTTCTTCCCCTTCGCTACGCTCATCTCTCCCTTGCTCCTCTGAACCAAGACAAAATAAAAGTCAGCCCCACCATCTCTCTCTCTCTCTCTCGCTCCTCCCAATTCCGATGACCAAGATATCTGGGCCGTTACGATAACCGAAACCAACCCCATTTCTATATTTATGGATTCCTAACTGTTCCTTCCTTCTATTTGAAGGAAACGCCCAATCATCAATTCCAAGAAGATTCTCCGATTTTTCCATTCAAGTCTCTGCTCTGCTGCTTCACTCACTCGGAACTGCGCCTGATTTCTCTATGGCCGGTCGGAAAGACAAAGCTCAGTCTGCTCGTGTGTCTCGAGTTGTCATCGCCATCGCAATCGGAGTTTTCGTTGGGTGTCTTTTTGCTTTCTTCTATCCTCATGGACTTTTCGGCTCTGATCTGCCTGTCCAGAACCGTCGACTCGGGAAATCGGAGTTTAAGGTTCGGTGCTCGTTGCCCTAATTCCTGTTCCTGTGCGATTCTGAATTGTGTACCAATTTGAATCCTCATTTATTGTTTCTGATAGTGGCGTGAATCCGAATTGACATGTATGTTTTTTTGTTAAGGTTTCTAGTGTCGTGGACAGTACGGACAGTATTTTTATTGTCTTATACCATCGTGTAAATGAGAGGAATTCTAATTCGTTTTTTTTTTTTTTTTTACCTTCACTGAATTTTAATCTTCAGCTTTTAATCTTATCTAATTGAGTGGTGAAATTAATACTCAATTAGTTGAATTTTTATGTTTTCGAAAGATTTGTGGTTGGTATGAGTATTATTGTGGCTGGATCAGTTCTTCTGGTGGTGGTGTTTACTCAGCTATGCTGTGCCTTTAGCTAAATTGAGTAAGCTTGGGTGTGCATGGAGTTTCAACCCAATTTGGACTTGCTTTGGAAGTTTGTTGGAGGCATCATTTGTTTTGTTATCTTAAACTTACTCAGCATTTGAAAGATTAACTGCACTGAATATTTGATGGAATCTTTAGTCTTTTAGATATCATGAAGGAAACTTTTTGTATATCCTTAATTTCCTAACTTTTTCTTCTTTTACAGGTTCAATCTTCTTCCCCGTGCGAATCTTCGGAGCGGTTCAAGATGATTAAAGCTGATGTTGTTTCAATATTAGAGAAGAACTCCCAGTTGGAGAAGCATATCAAGGATCTAACAAGGGAGCTGAGGATAGTGGAACAAGCTAAAGATCATGCTCAGAAGCAATATTTAGCGCTTGGTGAAAATCATAAGGCTGGTCCATTTGGTACTGTCAAAGGTCTTAGAACCAACCCTACTGTAATCCCTGATGAATCCGTAAATTCTCGATTGGCGAAGCTCCTGGAGAAAGTTGCTATTCAGAAGGAGCTGATTGTGACACTTGCAAATTCTAATGTAAGACCCATGTTGGAGGTTTGGTTTACCAGCATCCAGAAGGTCGGTATAAGCAATTATTTAGTCGTGGCTCTGGACGACCAGACTGAGGAATTCTGCATATCCCATGATGTTCCTGTCTACAAGAGAGATCCAGACAATAGCATCGATTCAGTTGGAAAGCAAGGAGGCAACCACGAAGTATCTGCATTGAAATTTCGTATTCTGAGGGAGTTCTTGCAACTTGGATACAGTGTTCTCCTCTCAGACGTCGATATCGTCTACTTACAGAACCCTTTCGATCATCTTTACCGGGATTCAGATGTGGAGTCGATGAGTGATGGTCATAACAATATGACAGCTTATGGATATAACGATGTATTTGATGAACCCGCCATGGGTTGGGCTAGATATGCACACACTATGAGAATATGGGTTTACAACTCTGGTTTCTTTTACATTAGGCCTACACTTCCTTCATTCGAGCTTTTGGATCGTGTCGCTACTCGGCTTTCCCAAGAAAAGGCATGGGACCAAGCCGTGTTTAACGAGGAACTCTTTTATCCTTCTCGTCCTGGACGTGATGGGCTTCATGCCTCCAAGAGAACCATGGATATGTATCTCTTCATGAACAGTAAGGTACTCTTCAAGACTGTTCGAAAGGACCTGAGACTCAGACAGTTGAAACCCGTCATTGTTCATATAAATTATCATCCCGACAAGTATCCTAGAATGAAAGCAGTCGTGGAATTCTACGTGAACGGTAACCAAGATGCTCTGGATTCTTTCCCAGATGGTTCAGAATGATGAAACTCTCTTCCAGCACATTACCACAGAGCCGAGTCCCGTGAACAAGCATTACGACCATTGTTCTATACAATTCAGCTGCTACAAGGAAGATTCATTTGATCATCTCGTAGAAAAACACAGCAAAATATTCACCTGTTATTTCCTTTTCCAAGGTTTTTGTCCATGTACTTTTGTAAGAACATTTGTAACGATATAACTAAAGTTGAGAAACTTATCTTTTGCAAAAGGAAATTTCCTTGACTTCTTACATCTGGGATTATATTCTTGTTCTTCCCATGTGTTTTTAAGGCTGCTTAAGCATGTAATGTGCCCCTAATGCTCCACCGAACATGGTGTGCCACTGACAATCTCC ATGCCATCTTATATGTCAAAACTACGAGCACCAGTTCAATTTCTAGGGTGGGAGGGTGGATTTAAAAGTTCTCTGGAGTTGCTTTTTGGGCATCAGAAACTGTTGTGTGGCAATTCTAGTCTGTTTCATTCAGTACCTTATTCCTCCCTTACAGAGTTGCATGCACTCTTAAGACCTGGCACTATTTCCGGTGCTAGTTCAGAGCTAGTTAATCGTAGGAAGAATATCTCAGTTCTTGGAGCAATTTCTCGCACATTTTCCATTCCTTCTGTGTCAGGCCCTGCATTACAGACCTGTGGGTATCACATTGATTGTGCCATTGCCGAATCCAATCAATATTCAACTCGCAGCAAGTTTCAAGATAAACCAATGGCTGCTTGTGGTTCTGGAGCTGCACTTGGTGAATGCTCTTTTGAGAATTTAAGTTTTAGGAATGCATGCTTGTCTCCTTCAGCGATCAGTGCTAATATTTGTTTCAACAATAGAAGTGTTGATTGCTGTCGAAAAGCCAGCATGAGTTTGAAAAATCAAGAGCAGCCCAGCAGTAATGTGATATATGGATACTTCACTTACAATGTTGCAAAAAGGTTTTGCAGTAGTTACCTAAATACTGGGTTTGGAGCAAGAGATCTTCACAGTTCATCAACATCTCACTTTGCTGCTGGTTCTGCCCCCAATGTGTCGTTTGATAATTCTGCACGGGAGGAACAACTTGCCAACTCTACCGATTCATCTGAACAGAAGATCCCGACAGGCAAATCATTGAAACTGGTTTCTGGATCGTGCTATCTGCCCCACCCAGATAAAGAAGATACTGGTGGAGAGGACGCTCACTTTATCTGTGTAGATGAACAAGCTGTAGGGGTGGCTGATGGTGTGGGTGGTTGGGCAGATCTTGGTGTTGATGCTGGACAGTATTCCCGAGAACTCATGTCTAATTCAGTTAGTGCAGTTCAAGAGGAGCCCAAGGGCTCAATTGATCCAGCTAGAGTCTTGGAGAAGGCGCACTCGAAAACAAAAGCCAAAGGTTCCTCCACTGCTTGTATCATAGCGCTTACAGAACAAGGTCTCCATGCAATCAATTTAGGAGACAGTGGATTTATGGTGGTTAGAGACGGATGCACTATTTTCAGATCTCCTGTGCAGCAGCATGATTTTAACTTCACCTTTCAATTGGAGAGTGGAAATAATGGAGATTTGCCTAGCTCTGGACAGGTTTTCTCAGTCCCTGTTGCTCCTGGAGATGTCATAATTGCTGGCACCGATGGGCTCTTCGACAACTTGTACAACAACGAGATCACCGCAGTTGTGGTTCATGCCATGAGAGCAGGCTTAGGCGCCCAGGTGACTGCCCAGAAGATAGCTGCTCTTGCACGCCAGCGAGCTCAAGACAAAGATCGACAAACGCCTTTCTCCACTGCTGCTCAAGACGCTGGGTTTCGCTATTACGGAGGGAAGCTTGATGACATCACCGTCGTTGTGTCGTATGTTACGAGCTCAAATGACAAAGTGGATGACCTCTTTTGA ATGCCATCTTATATGTCAAAACTACGAGCACCAGTTCAATTTCTAGGGTGGGAGGGTGGATTTAAAAGTTCTCTGGAGTTGCTTTTTGGGCATCAGAAACTGTTGTGTGGCAATTCTAGTCTGTTTCATTCAGTACCTTATTCCTCCCTTACAGAGTTGCATGCACTCTTAAGACCTGGCACTATTTCCGGTGCTAGTTCAGAGCTAGTTAATCGTAGGAAGAATATCTCAGTTCTTGGAGCAATTTCTCGCACATTTTCCATTCCTTCTGTGTCAGGCCCTGCATTACAGACCTGTGGGTATCACATTGATTGTGCCATTGCCGAATCCAATCAATATTCAACTCGCAGCAAGTTTCAAGATAAACCAATGGCTGCTTGTGGTTCTGGAGCTGCACTTGGTGAATGCTCTTTTGAGAATTTAAGTTTTAGGAATGCATGCTTGTCTCCTTCAGCGATCAGTGCTAATATTTGTTTCAACAATAGAAGTGTTGATTGCTGTCGAAAAGCCAGCATGAGTTTGAAAAATCAAGAGCAGCCCAGCAGTAATGTGATATATGGATACTTCACTTACAATGTTGCAAAAAGGTTTTGCAGTAGTTACCTAAATACTGGGTTTGGAGCAAGAGATCTTCACAGTTCATCAACATCTCACTTTGCTGCTGGTTCTGCCCCCAATGTGTCGTTTGATAATTCTGCACGGGAGGAACAACTTGCCAACTCTACCGATTCATCTGAACAGAAGATCCCGACAGGCAAATCATTGAAACTGGTTTCTGGATCGTGCTATCTGCCCCACCCAGATAAAGAAGATACTGGTGGAGAGGACGCTCACTTTATCTGTGTAGATGAACAAGCTGTAGGGGTGGCTGATGGTGTGGGTGGTTGGGCAGATCTTGGTGTTGATGCTGGACAGTATTCCCGAGAACTCATGTCTAATTCAGTTAGTGCAGTTCAAGAGGAGCCCAAGGGCTCAATTGATCCAGCTAGAGTCTTGGAGAAGGCGCACTCGAAAACAAAAGCCAAAGGTTCCTCCACTGCTTGTATCATAGCGCTTACAGAACAAGGTCTCCATGCAATCAATTTAGGAGACAGTGGATTTATGGTGGTTAGAGACGGATGCACTATTTTCAGATCTCCTGTGCAGCAGCATGATTTTAACTTCACCTTTCAATTGGAGAGTGGAAATAATGGAGATTTGCCTAGCTCTGGACAGGTTTTCTCAGTCCCTGTTGCTCCTGGAGATGTCATAATTGCTGGCACCGATGGGCTCTTCGACAACTTGTACAACAACGAGATCACCGCAGTTGTGGTTCATGCCATGAGAGCAGGCTTAGGCGCCCAGGTGACTGCCCAGAAGATAGCTGCTCTTGCACGCCAGCGAGCTCAAGACAAAGATCGACAAACGCCTTTCTCCACTGCTGCTCAAGACGCTGGGTTTCGCTATTACGGAGGGAAGCTTGATGACATCACCGTCGTTGTGTCGTATGTTACGAGCTCAAATGACAAAGTGGATGACCTCTTTTGA MPSYMSKLRAPVQFLGWEGGFKSSLELLFGHQKLLCGNSSLFHSVPYSSLTELHALLRPGTISGASSELVNRRKNISVLGAISRTFSIPSVSGPALQTCGYHIDCAIAESNQYSTRSKFQDKPMAACGSGAALGECSFENLSFRNACLSPSAISANICFNNRSVDCCRKASMSLKNQEQPSSNVIYGYFTYNVAKRFCSSYLNTGFGARDLHSSSTSHFAAGSAPNVSFDNSAREEQLANSTDSSEQKIPTGKSLKLVSGSCYLPHPDKEDTGGEDAHFICVDEQAVGVADGVGGWADLGVDAGQYSRELMSNSVSAVQEEPKGSIDPARVLEKAHSKTKAKGSSTACIIALTEQGLHAINLGDSGFMVVRDGCTIFRSPVQQHDFNFTFQLESGNNGDLPSSGQVFSVPVAPGDVIIAGTDGLFDNLYNNEITAVVVHAMRAGLGAQVTAQKIAALARQRAQDKDRQTPFSTAAQDAGFRYYGGKLDDITVVVSYVTSSNDKVDDLF Homology
BLAST of Spg007106 vs. NCBI nr
Match: KAG7037845.1 (Arabinosyltransferase RRA3 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 932.2 bits (2408), Expect = 1.9e-267 Identity = 473/506 (93.48%), Postives = 483/506 (95.45%), Query Frame = 0
BLAST of Spg007106 vs. NCBI nr
Match: XP_023523900.1 (probable protein phosphatase 2C 55 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 928.7 bits (2399), Expect = 2.1e-266 Identity = 471/503 (93.64%), Postives = 481/503 (95.63%), Query Frame = 0
BLAST of Spg007106 vs. NCBI nr
Match: XP_022941137.1 (probable protein phosphatase 2C 55 [Cucurbita moschata]) HSP 1 Score: 925.6 bits (2391), Expect = 1.8e-265 Identity = 469/503 (93.24%), Postives = 480/503 (95.43%), Query Frame = 0
BLAST of Spg007106 vs. NCBI nr
Match: XP_022981913.1 (probable protein phosphatase 2C 55 [Cucurbita maxima]) HSP 1 Score: 924.9 bits (2389), Expect = 3.1e-265 Identity = 469/503 (93.24%), Postives = 481/503 (95.63%), Query Frame = 0
BLAST of Spg007106 vs. NCBI nr
Match: XP_038904913.1 (probable protein phosphatase 2C 55 isoform X1 [Benincasa hispida]) HSP 1 Score: 915.6 bits (2365), Expect = 1.9e-262 Identity = 469/504 (93.06%), Postives = 480/504 (95.24%), Query Frame = 0
BLAST of Spg007106 vs. ExPASy Swiss-Prot
Match: Q9SUK9 (Probable protein phosphatase 2C 55 OS=Arabidopsis thaliana OX=3702 GN=At4g16580 PE=2 SV=2) HSP 1 Score: 536.2 bits (1380), Expect = 4.1e-151 Identity = 296/465 (63.66%), Postives = 350/465 (75.27%), Query Frame = 0
BLAST of Spg007106 vs. ExPASy Swiss-Prot
Match: Q9LVQ8 (Probable protein phosphatase 2C 80 OS=Arabidopsis thaliana OX=3702 GN=At5g66720 PE=2 SV=1) HSP 1 Score: 387.9 bits (995), Expect = 1.8e-106 Identity = 222/389 (57.07%), Postives = 275/389 (70.69%), Query Frame = 0
BLAST of Spg007106 vs. ExPASy Swiss-Prot
Match: Q6J2K6 (Probable protein phosphatase 2C BIPP2C1 OS=Oryza sativa subsp. indica OX=39946 GN=BIPP2C1 PE=2 SV=1) HSP 1 Score: 179.9 bits (455), Expect = 7.4e-44 Identity = 112/269 (41.64%), Postives = 155/269 (57.62%), Query Frame = 0
BLAST of Spg007106 vs. ExPASy Swiss-Prot
Match: Q10QL5 (Probable protein phosphatase 2C BIPP2C1 OS=Oryza sativa subsp. japonica OX=39947 GN=BIPP2C1 PE=2 SV=1) HSP 1 Score: 179.9 bits (455), Expect = 7.4e-44 Identity = 112/269 (41.64%), Postives = 155/269 (57.62%), Query Frame = 0
BLAST of Spg007106 vs. ExPASy Swiss-Prot
Match: Q93V88 (Probable protein phosphatase 2C 62 OS=Arabidopsis thaliana OX=3702 GN=At4g33500 PE=2 SV=1) HSP 1 Score: 177.2 bits (448), Expect = 4.8e-43 Identity = 101/246 (41.06%), Postives = 146/246 (59.35%), Query Frame = 0
BLAST of Spg007106 vs. ExPASy TrEMBL
Match: A0A6J1FLK9 (Protein phosphatase OS=Cucurbita moschata OX=3662 GN=LOC111446526 PE=3 SV=1) HSP 1 Score: 925.6 bits (2391), Expect = 8.8e-266 Identity = 469/503 (93.24%), Postives = 480/503 (95.43%), Query Frame = 0
BLAST of Spg007106 vs. ExPASy TrEMBL
Match: A0A6J1J3D5 (Protein phosphatase OS=Cucurbita maxima OX=3661 GN=LOC111480913 PE=3 SV=1) HSP 1 Score: 924.9 bits (2389), Expect = 1.5e-265 Identity = 469/503 (93.24%), Postives = 481/503 (95.63%), Query Frame = 0
BLAST of Spg007106 vs. ExPASy TrEMBL
Match: A0A6J1C6Q0 (Protein phosphatase OS=Momordica charantia OX=3673 GN=LOC111008904 PE=3 SV=1) HSP 1 Score: 914.8 bits (2363), Expect = 1.5e-262 Identity = 466/504 (92.46%), Postives = 481/504 (95.44%), Query Frame = 0
BLAST of Spg007106 vs. ExPASy TrEMBL
Match: A0A0A0LG25 (Protein phosphatase OS=Cucumis sativus OX=3659 GN=Csa_3G855330 PE=3 SV=1) HSP 1 Score: 910.2 bits (2351), Expect = 3.8e-261 Identity = 471/504 (93.45%), Postives = 479/504 (95.04%), Query Frame = 0
BLAST of Spg007106 vs. ExPASy TrEMBL
Match: A0A5A7UDV7 (Protein phosphatase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold234G00390 PE=3 SV=1) HSP 1 Score: 901.7 bits (2329), Expect = 1.4e-258 Identity = 467/504 (92.66%), Postives = 478/504 (94.84%), Query Frame = 0
BLAST of Spg007106 vs. TAIR 10
Match: AT4G16580.1 (Protein phosphatase 2C family protein ) HSP 1 Score: 536.2 bits (1380), Expect = 2.9e-152 Identity = 296/465 (63.66%), Postives = 350/465 (75.27%), Query Frame = 0
BLAST of Spg007106 vs. TAIR 10
Match: AT5G66720.1 (Protein phosphatase 2C family protein ) HSP 1 Score: 387.9 bits (995), Expect = 1.3e-107 Identity = 222/389 (57.07%), Postives = 275/389 (70.69%), Query Frame = 0
BLAST of Spg007106 vs. TAIR 10
Match: AT5G66720.2 (Protein phosphatase 2C family protein ) HSP 1 Score: 386.0 bits (990), Expect = 4.8e-107 Identity = 221/389 (56.81%), Postives = 273/389 (70.18%), Query Frame = 0
BLAST of Spg007106 vs. TAIR 10
Match: AT4G33500.1 (Protein phosphatase 2C family protein ) HSP 1 Score: 177.2 bits (448), Expect = 3.4e-44 Identity = 101/246 (41.06%), Postives = 146/246 (59.35%), Query Frame = 0
BLAST of Spg007106 vs. TAIR 10
Match: AT2G30170.1 (Protein phosphatase 2C family protein ) HSP 1 Score: 153.7 bits (387), Expect = 4.0e-37 Identity = 100/287 (34.84%), Postives = 158/287 (55.05%), 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:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
|