Spg021058 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGCACGACACAAGAGGCACGAGACCCACAGGTTTCTCGCTGGCGATCGTGGACCAAGGAACCAATGTCCAAACTCCTTCTTCCTCGACAATGTCGGCTACCTCGAGGGAGAATCCGAGTTCTTCTCAACCAAGAAGGTCCACGCGCACCGAATCCCTCCATAAATCCCAAAAGCCCACGAGCCAACCATTGAGGAAACACTCAAGGGAATGGTTTAAAATGATTAGGGAGATGAGAGCCCAAAGACGTGCGGCTCTTGAAGAAGAAGCAAGACAACGTGATGAAGAAGAAGCCGCCAAAGTTGGGGAGAGCTCTCGACAAGGAGAGACTCTAACGGGTAAAAGTTCCAAACCTTCAACTAACCCATCTTCGTCTTGTAGGGACGGGTAAAAGTCCAAAGAATGTTGCACCTGAACAACCGTTTTTTATTGAACCCCTCAAAGTAGCAAGAATGCCACCGGATGTATTCGAAGACATGATCCGCCAAGTCGTGGCACAAACCCTTATTATTACTGAAGGTTATAGGGCTGAGCAAGATGCCTTGAATGAGATAAGGGTTGAAAGAGAGATGGAAAACCAGAGCATGAGGGAAGATGATGAGTTTGCGAGAAGAATGGATTTTGAAGAAGAAAAAGAAGTTGAGAGAAAGAAGGAAGAGGAAAAGCAAGGGGCCGAGAGGGCCATAAAAGCTGAAAAAGAAAGAAAACAAGATGAAGAACTCAGGAGAGCAGCTGCTGAATTGCAACTCATTGAGGAAGAAAAACAAAAAAGAGAGATTTTGAAAGAAGAAGAGAAAAGAAAAAAAGAGGCGGAAGATTTCCTTGCAGCATTTGAGCCATTGCACAAGGCTCAAAGTGAGGCTGATTTGCTGCAAGGAAGAGAAGAAGAGGCCCTTGAGGGACCAAGTGAAGAAAATCAAGAAAAAGAAGAAGGAAAAAAGGAAGAGCATGAAGGCCAGAATGCGACCGCATTCGGGTCGCATTCTGAAGAAGGCCAAGAAAAGGCCAATTAAGCACAACCAGCTGATGAAGCCTTGGATCCTCTATTTGAGTATGATGTGAGAGGACCTCCACCAGTCGTTGAGAGAACCTCTTCGGGAGAGAAGAGGGATGAAGAAGAGATTGAAAATGAGGAGGCCGAGACCTCCAATGACTCAGAAACAGAATATGATTCAGAGATCAAGGAGTTGGATGACAACCAAATTCCTATCTCTGCAGCATTGAGGAAAAAGAGAAGAAGAAAGATTAGAGCCGAAAGGAGGACAAAGAACAAGAATGACCCGATTTTTGCCAAGAGGCCGAGGGCTAGGTCCATGGACGCCTCTCCTGCAGCTCCATCAACCGTCTCACCTGCCAAGCCGAAAGCCAAGTCCCCCAAGGCTCCATCTCCTAAAAATCCATTCCCAAAAGTCTTAAAAGATGTCAATTTTCAGCAACAGATGGAGATCATGAGAAAAAGAGATTTTCTGAACGAGAAGGGATTCTCTAACAGAGCTGGAACACTGCCAAAGTTCGTAACCAGAGTTATCTCACAGTACAAGTGGCAGGAGTTTTGTGCTCACCCTCAGGAGGCCGTGGTACGTTTAGTTCGAGAATTTTATGCCAGACTGAGGGAGGAAAGCATGAGTATGACAGTGGTGAGAGTGTTGGGTTTTATGTCCTAAAACTCGTAGATAGTGAATGATTAACGAATTATACACTTGTATCAATAAAGTGTTATTGTCATTGATGCGCAATTTGCTTACCGCAAGTGTACGGGTCAAGTAATAATATAGTGTTTTCGTGATTAAACGAGTGTCGTCCTCTGGATTGGTTTTCTAGCAAATTAAGTACCGTGAATAATCTTGTCCAATTTTATTTAGGGAGCAAAACTTAAAGATAAAGATAAATCTAAAGACAAAAAGCATAAAATAAAGGTGGAGACTCAAAGGGAAAGACTCTTAGGGAATTGATTTCATTATTTCAGATTGAGGATTGATTAATATGAATGAATTGATCGTGCAATTATTCTACAAGCCAAGGAAACTTTTATCACGATTACCTCTCCCGAGTATAATTGATTCTCATGCATATAACTAACTCTATATCCCTATCTAAGTTCATTAACGTGCAAGACATTATTCGGTTTAATCCTTGTTATACTTCTAGAGATATTCCAAATCTCGTCACAAACTTAGAATTTCTACTCTAGTCATGCAATTAAACAAGGCAAGACTTAGGCCAAATCCTCTCTCCCGAGTTAGATTCAACACTTAAATCATTCAATTAGTGATCAAGTAATTGAAAGCATTACACAAAATTGCATGCATAAAATAAAAGCACATTCATACCAAAAATCAATCCAACAACTAAATCAACTACATCAATCCCTAAGACAAACAACTAGAAATTCATAGTCTTTAAACCACAAACACTAATTGCAAGAAAAGCCATAAAAACTACAAGAATTAAGGGAAAGAGAAAGGAAAACTCGAATCCGCCGACACCGCACGTCCCCGTCACGATCTCCACGTCTTCTCGCTTGATTCCCGCTCCTTGGCCTTGCCTTTAGCTCCCACAAAAGGTCTCTAGTCGAAATTAGGGCTAAAATCTCACCAATTGGACTCCCCCAATCCGTAGCTGAAAAGAGGAATTTATAGAAAATCTGTCGATAGCGTCGCGACGCTGTGTACATAGCGTCGCGACGCTATTTTTTTTTTTTTTTTTTTTAGGATTGAACTCCATTTGACTCCAATTGCTGAATTAAGCTTCAAACACATACTTCCTACAAATAAAACATAAAAATCATAAATTTGGGCAAAAAATTGTAAAAGACTAACTTAATTAATCAGAGAAAAATAGCTAGCTATGCTCGCTATCAGTCATATTAAGTCTAGAATTGCACAATATGATCCAAATCCAATAAACTAAGATCCAAGGTTGTTTACATGAGACTTGGACTAATATGTGGGGACATACGGGGATCAGTGTTCAAGTAACAACCTAAAAGGTCTATAGTATAGGGATAAGGCTGGGTACCTTATCCTGGTAACACTATGTGATACGGCCCGCTTTGTATTCGATATAGACGTATTGATCCAAGGCGTCCATGTAGGAGACATGCGAGCGGGGGTATCCTATGCAATGAGTTTGCATAAGACCGGACCACGAAATAGTAAACCACTAGATGTAACACCGTTAACTAGTTAGGTTACTGTTTCAATAGGATGACCTAGGTAACTCAATCTTAATCCTGAGTGTGTCATGAACTCCTTCTCACGAGGGATTGTCCTTTGATTAGTACGGGTGAGAGTGGCCAGCACGCCGACTCAATAAGCCTACCTTCTTGGGGACAAAACCGAGTGGGGGGCTGGGGACATGACAATACAATATGGAATTCACTTCTTCCCCTATTGGGGCAAGTAGATGTGTGTTCCCTTAAGGGCTGATTCCGAGGCTTGAACAAAGGTGCGCCGTCCTCTCCTGGCCCGAGAGGAATTCTTGTTTAGAGGTTGGACCCTAAACAAATTGTTCATTAGAGGGATCAGTGGTACTTAAGGAACCAGAAGTAACCCAGGGGTAAAACGGTAATTTGACCCAGCTGGTGTTACGAACACACGTGAAGGATTGACTTATTGCATTGGTCGATATCCGTGGACACAGAAATATTCTACAGTGAGAAGAGTGCAGCTGTGGGTCTTTAGTGGAGTGACCCACAGTTAACGAATGTTGATTGACTCGGTTAATGAGTTTAGCTGATCAATCTCGTATCGTTGGAGCTTCTGATCTGTAGGTCCATTAGGTCCACCTGCTAGCTCATAACGGGTTTTGAGATAATATAGTCTTGAATATTAAAAGGGAATTTAAGTTAATTGTATTTTGATGCAATTAATATAATGTATGGAGATACATTATAGTATAAGTTTAATTAATGAATTAAACTTTATAATAAAGTTAATTTTGGATATGATTCAAAATTAATTAATGAGAGAATTATGAATTTAATTAAATATGTGATATTTGATTAATTCATGAATTAATTAATTGGGAATTAATTAATTTAATTTAATTTGGTTAAATGTGATTTAATCAAATTAATACTATAGTTTATATTAATGTACATTTTGATGCACATTAAAACTATAGGTTAAATGAGAGATAAAATTGAATATGGTTCAATTATAAAATTAATTAAATATTTGATATTTAATTAGTGTGGAATCAATTAATTTAAATTGATTGAATGGCCTGTTTAATTCAATTGAATATGATTTAATTGAATTAAAACTATATGTTATAATTGATTTAATTAAAATTGGTTTAATTAAATTAATTATAATTAATTAGATAATTAATTATTATTTCAATAATTATTAATTATTTAATTTATTAATTATTATTTGATAATAATTAAACGGTCCAGATCTAATTGGTTTAGATCAATGGACAAGATTGGTTAGGGAGTTAAAGATAACTTCCCAACCTAATCCTACGTAGTTGCCTGAGGGGTTTGGCCATCTCACTGATTCTCTCAACTTCACGTAAAAAAAAAAAAAAAAAAACAGAGGGAGTTCTTGTTTTTTTCCTCTCTAGTTTTCTCTCAAGAACAACAAGTTTCTTTGCTGTAATTTTTCCCTTCGAGACAGCGAGGATCCCACAATCCTATTCTCATAGCCCAAGAGGATAGCCGGTGTTCACTTGTGGTCGTGTCTTGATCAAAGGAGCATAGTGCAGTATTTGTTCATCGAATCAAGTAAGTTTTTCTAGATCTAAATAGGTTTTAGATCTAATTTACAGCATGCTTAATCTGATCTAGTTTAATTTAGAAATTGTTTCTAATTTTGATTTGCCAACGTACCGGTTTTTTCTATAATTGAAATTTAATTCGAGAAAGGTCTTGATTGTTTCCGCTGCCAAAGGGATTTTAACCCTTTCAGAGAGGCAAGATGGTCAGCTTCTTTTCTGTTGACATCAATAAAGTGTATAGAATCAAGGCACCATTGCACCCAAGAGGGAATGATGCCATTAAGAACCCCTCGGCCAAACAAATGAAATAAGCGCTGAAATTGGTGGCCAACAAGGGAGTTCAATGGAAGGAGTCCCAAACGAAGGTGAAGACATTAGTGCCAGGCGATCTCAAGCCAGAATCGGCAGTGTGGCTTCACTTTCTCAAGAACAGGTTGATGCCAAAAACCCATGATAGCATCGTTTCAATGGAGAGAGTTATGCTTCTCTACAGTATTATGAAGGGTTTGGAAATCAACATCGGGAGCATCATCAGGGAGGAGATCCTTTCGTGTGGAAGGAAGAAAGCAGGGAAGCTTTTCTTTGGGTCACTTATTACCCAATTATGTCAGAGAGTCAAAATAGTTCCTGGAAAGGATGAAGAACACCACTTCTTCAAGCCTACCATTGATCTACCTCTGATTGGGAAGCTCCAACAGAACAATGCCCAAAGGAAGGACAAAGCTTCCACATCTCAAGCCACTCCACCATCAGGGCTGAATCCGGCTTCAACACCTCAACACACTCCTTTTTCAGGGCCCTCACCATCATCTGAAGCCCTAGCAATTGCCTACCAACAACTGGATCAAATCAGGGACAACCTGAGAACTTATTGGGCTTATGCTAAAGAGAGAGATGAAGCCATTAGAGAGTTCTACCTCTCTATCGCCCCGAGTATTGCTCCTGTCTTTCCTGATTTCCCTCAATCGCTGCTGCCTCAAGAAGAAAAGGATTCTGATGATGAAGAAGAAGATGGAGAAGGTGAAAGAGAGAGTTCCTCGGATGAGGACTAG ATGCACGACACAAGAGGCACGAGACCCACAGGTTTCTCGCTGGCGATCGTGGACCAAGGAACCAATGTCCAAACTCCTTCTTCCTCGACAATGTCGGCTACCTCGAGGGAGAATCCGAGTTCTTCTCAACCAAGAAGGTCCACGCGCACCGAATCCCTCCATAAATCCCAAAAGCCCACGAGCCAACCATTGAGGAAACACTCAAGGGAATGGTTTAAAATGATTAGGGAGATGAGAGCCCAAAGACGTGCGGCTCTTGAAGAAGAAGCAAGACAACGTGATGAAGAAGAAGCCGCCAAAGTTGGGGAGAGCTCTCGACAAGGAGAGACTCTAACGGGTAAAACAAGAATGCCACCGGATGTATTCGAAGACATGATCCGCCAAGTCGTGGCACAAACCCTTATTATTACTGAAGGTTATAGGGCTGAGCAAGATGCCTTGAATGAGATAAGGGTTGAAAGAGAGATGGAAAACCAGAGCATGAGGGAAGATGATGAGTTTGCGAGAAGAATGGATTTTGAAGAAGAAAAAGAAGTTGAGAGAAAGAAGGAAGAGGAAAAGCAAGGGGCCGAGAGGGCCATAAAAGCTGAAAAAGAAAGAAAACAAGATGAAGAACTCAGGAGAGCAGCTGCTGAATTGCAACTCATTGAGGAAGAAAAACAAAAAAGAGAGATTTTGAAAGAAGAAGAGAAAAGAAAAAAAGAGGCGGAAGATTTCCTTGCAGCATTTGAGCCATTGCACAAGGCTCAAAGTGAGGCTGATTTGCTGCAAGGAAGAGAAGAAGAGGCCCTTGAGGGACCAACACAACCAGCTGATGAAGCCTTGGATCCTCTATTTGAGTATGATGTGAGAGGACCTCCACCAGTCGTTGAGAGAACCTCTTCGGGAGAGAAGAGGGATGAAGAAGAGATTGAAAATGAGGAGGCCGAGACCTCCAATGACTCAGAAACAGAATATGATTCAGAGATCAAGGAGTTGGATGACAACCAAATTCCTATCTCTGCAGCATTGAGGAAAAAGAGAAGAAGAAAGATTAGAGCCGAAAGGAGGACAAAGAACAAGAATGACCCGATTTTTGCCAAGAGGCCGAGGGCTAGGTCCATGGACGCCTCTCCTGCAGCTCCATCAACCGTCTCACCTGCCAAGCCGAAAGCCAAGTCCCCCAAGGCTCCATCTCCTAAAAATCCATTCCCAAAAGTCTTAAAAGATGTCAATTTTCAGCAACAGATGGAGATCATGAGAAAAAGAGATTTTCTGAACGAGAAGGGATTCTCTAACAGAGCTGGAACACTGCCAAAGTTCGTAACCAGAGTTATCTCACAGTACAAGTGGCAGGAGTTTTGTGCTCACCCTCAGGAGGCCGTGGGAGTTCAATGGAAGGAGTCCCAAACGAAGGTGAAGACATTAGTGCCAGGCGATCTCAAGCCAGAATCGGCAGTGTGGCTTCACTTTCTCAAGAACAGGTTGATGCCAAAAACCCATGATAGCATCGTTTCAATGGAGAGAGTTATGCTTCTCTACAGTATTATGAAGGGTTTGGAAATCAACATCGGGAGCATCATCAGGGAGGAGATCCTTTCGTGTGGAAGGAAGAAAGCAGGGAAGCTTTTCTTTGGGTCACTTATTACCCAATTATGTCAGAGAGTCAAAATAGTTCCTGGAAAGGATGAAGAACACCACTTCTTCAAGCCTACCATTGATCTACCTCTGATTGGGAAGCTCCAACAGAACAATGCCCAAAGGAAGGACAAAGCTTCCACATCTCAAGCCACTCCACCATCAGGGCTGAATCCGGCTTCAACACCTCAACACACTCCTTTTTCAGGGCCCTCACCATCATCTGAAGCCCTAGCAATTGCCTACCAACAACTGGATCAAATCAGGGACAACCTGAGAACTTATTGGGCTTATGCTAAAGAGAGAGATGAAGCCATTAGAGAGTTCTACCTCTCTATCGCCCCGAGTATTGCTCCTGTCTTTCCTGATTTCCCTCAATCGCTGCTGCCTCAAGAAGAAAAGGATTCTGATGATGAAGAAGAAGATGGAGAAGGTGAAAGAGAGAGTTCCTCGGATGAGGACTAG ATGCACGACACAAGAGGCACGAGACCCACAGGTTTCTCGCTGGCGATCGTGGACCAAGGAACCAATGTCCAAACTCCTTCTTCCTCGACAATGTCGGCTACCTCGAGGGAGAATCCGAGTTCTTCTCAACCAAGAAGGTCCACGCGCACCGAATCCCTCCATAAATCCCAAAAGCCCACGAGCCAACCATTGAGGAAACACTCAAGGGAATGGTTTAAAATGATTAGGGAGATGAGAGCCCAAAGACGTGCGGCTCTTGAAGAAGAAGCAAGACAACGTGATGAAGAAGAAGCCGCCAAAGTTGGGGAGAGCTCTCGACAAGGAGAGACTCTAACGGGTAAAACAAGAATGCCACCGGATGTATTCGAAGACATGATCCGCCAAGTCGTGGCACAAACCCTTATTATTACTGAAGGTTATAGGGCTGAGCAAGATGCCTTGAATGAGATAAGGGTTGAAAGAGAGATGGAAAACCAGAGCATGAGGGAAGATGATGAGTTTGCGAGAAGAATGGATTTTGAAGAAGAAAAAGAAGTTGAGAGAAAGAAGGAAGAGGAAAAGCAAGGGGCCGAGAGGGCCATAAAAGCTGAAAAAGAAAGAAAACAAGATGAAGAACTCAGGAGAGCAGCTGCTGAATTGCAACTCATTGAGGAAGAAAAACAAAAAAGAGAGATTTTGAAAGAAGAAGAGAAAAGAAAAAAAGAGGCGGAAGATTTCCTTGCAGCATTTGAGCCATTGCACAAGGCTCAAAGTGAGGCTGATTTGCTGCAAGGAAGAGAAGAAGAGGCCCTTGAGGGACCAACACAACCAGCTGATGAAGCCTTGGATCCTCTATTTGAGTATGATGTGAGAGGACCTCCACCAGTCGTTGAGAGAACCTCTTCGGGAGAGAAGAGGGATGAAGAAGAGATTGAAAATGAGGAGGCCGAGACCTCCAATGACTCAGAAACAGAATATGATTCAGAGATCAAGGAGTTGGATGACAACCAAATTCCTATCTCTGCAGCATTGAGGAAAAAGAGAAGAAGAAAGATTAGAGCCGAAAGGAGGACAAAGAACAAGAATGACCCGATTTTTGCCAAGAGGCCGAGGGCTAGGTCCATGGACGCCTCTCCTGCAGCTCCATCAACCGTCTCACCTGCCAAGCCGAAAGCCAAGTCCCCCAAGGCTCCATCTCCTAAAAATCCATTCCCAAAAGTCTTAAAAGATGTCAATTTTCAGCAACAGATGGAGATCATGAGAAAAAGAGATTTTCTGAACGAGAAGGGATTCTCTAACAGAGCTGGAACACTGCCAAAGTTCGTAACCAGAGTTATCTCACAGTACAAGTGGCAGGAGTTTTGTGCTCACCCTCAGGAGGCCGTGGGAGTTCAATGGAAGGAGTCCCAAACGAAGGTGAAGACATTAGTGCCAGGCGATCTCAAGCCAGAATCGGCAGTGTGGCTTCACTTTCTCAAGAACAGGTTGATGCCAAAAACCCATGATAGCATCGTTTCAATGGAGAGAGTTATGCTTCTCTACAGTATTATGAAGGGTTTGGAAATCAACATCGGGAGCATCATCAGGGAGGAGATCCTTTCGTGTGGAAGGAAGAAAGCAGGGAAGCTTTTCTTTGGGTCACTTATTACCCAATTATGTCAGAGAGTCAAAATAGTTCCTGGAAAGGATGAAGAACACCACTTCTTCAAGCCTACCATTGATCTACCTCTGATTGGGAAGCTCCAACAGAACAATGCCCAAAGGAAGGACAAAGCTTCCACATCTCAAGCCACTCCACCATCAGGGCTGAATCCGGCTTCAACACCTCAACACACTCCTTTTTCAGGGCCCTCACCATCATCTGAAGCCCTAGCAATTGCCTACCAACAACTGGATCAAATCAGGGACAACCTGAGAACTTATTGGGCTTATGCTAAAGAGAGAGATGAAGCCATTAGAGAGTTCTACCTCTCTATCGCCCCGAGTATTGCTCCTGTCTTTCCTGATTTCCCTCAATCGCTGCTGCCTCAAGAAGAAAAGGATTCTGATGATGAAGAAGAAGATGGAGAAGGTGAAAGAGAGAGTTCCTCGGATGAGGACTAG MHDTRGTRPTGFSLAIVDQGTNVQTPSSSTMSATSRENPSSSQPRRSTRTESLHKSQKPTSQPLRKHSREWFKMIREMRAQRRAALEEEARQRDEEEAAKVGESSRQGETLTGKTRMPPDVFEDMIRQVVAQTLIITEGYRAEQDALNEIRVEREMENQSMREDDEFARRMDFEEEKEVERKKEEEKQGAERAIKAEKERKQDEELRRAAAELQLIEEEKQKREILKEEEKRKKEAEDFLAAFEPLHKAQSEADLLQGREEEALEGPTQPADEALDPLFEYDVRGPPPVVERTSSGEKRDEEEIENEEAETSNDSETEYDSEIKELDDNQIPISAALRKKRRRKIRAERRTKNKNDPIFAKRPRARSMDASPAAPSTVSPAKPKAKSPKAPSPKNPFPKVLKDVNFQQQMEIMRKRDFLNEKGFSNRAGTLPKFVTRVISQYKWQEFCAHPQEAVGVQWKESQTKVKTLVPGDLKPESAVWLHFLKNRLMPKTHDSIVSMERVMLLYSIMKGLEINIGSIIREEILSCGRKKAGKLFFGSLITQLCQRVKIVPGKDEEHHFFKPTIDLPLIGKLQQNNAQRKDKASTSQATPPSGLNPASTPQHTPFSGPSPSSEALAIAYQQLDQIRDNLRTYWAYAKERDEAIREFYLSIAPSIAPVFPDFPQSLLPQEEKDSDDEEEDGEGERESSSDED Homology
BLAST of Spg021058 vs. NCBI nr
Match: PON78020.1 (hypothetical protein PanWU01x14_023740 [Parasponia andersonii]) HSP 1 Score: 119.8 bits (299), Expect = 9.4e-23 Identity = 76/236 (32.20%), Postives = 118/236 (50.00%), Query Frame = 0
BLAST of Spg021058 vs. NCBI nr
Match: PON46472.1 (hypothetical protein PanWU01x14_251180, partial [Parasponia andersonii]) HSP 1 Score: 117.5 bits (293), Expect = 4.7e-22 Identity = 99/363 (27.27%), Postives = 146/363 (40.22%), Query Frame = 0
BLAST of Spg021058 vs. NCBI nr
Match: PON59596.1 (hypothetical protein PanWU01x14_158080 [Parasponia andersonii]) HSP 1 Score: 107.8 bits (268), Expect = 3.7e-19 Identity = 75/222 (33.78%), Postives = 112/222 (50.45%), Query Frame = 0
BLAST of Spg021058 vs. NCBI nr
Match: PON50458.1 (hypothetical protein PanWU01x14_223230, partial [Parasponia andersonii]) HSP 1 Score: 102.4 bits (254), Expect = 1.6e-17 Identity = 56/151 (37.09%), Postives = 87/151 (57.62%), Query Frame = 0
BLAST of Spg021058 vs. NCBI nr
Match: PON35554.1 (hypothetical protein PanWU01x14_335450, partial [Parasponia andersonii]) HSP 1 Score: 99.8 bits (247), Expect = 1.0e-16 Identity = 70/260 (26.92%), Postives = 105/260 (40.38%), Query Frame = 0
BLAST of Spg021058 vs. ExPASy TrEMBL
Match: A0A2P5DXM3 (Uncharacterized protein OS=Parasponia andersonii OX=3476 GN=PanWU01x14_023740 PE=4 SV=1) HSP 1 Score: 119.8 bits (299), Expect = 4.6e-23 Identity = 76/236 (32.20%), Postives = 118/236 (50.00%), Query Frame = 0
BLAST of Spg021058 vs. ExPASy TrEMBL
Match: A0A2P5BCG4 (Uncharacterized protein (Fragment) OS=Parasponia andersonii OX=3476 GN=PanWU01x14_251180 PE=4 SV=1) HSP 1 Score: 117.5 bits (293), Expect = 2.3e-22 Identity = 99/363 (27.27%), Postives = 146/363 (40.22%), Query Frame = 0
BLAST of Spg021058 vs. ExPASy TrEMBL
Match: A0A2P5CEY2 (Uncharacterized protein OS=Parasponia andersonii OX=3476 GN=PanWU01x14_158080 PE=4 SV=1) HSP 1 Score: 107.8 bits (268), Expect = 1.8e-19 Identity = 75/222 (33.78%), Postives = 112/222 (50.45%), Query Frame = 0
BLAST of Spg021058 vs. ExPASy TrEMBL
Match: A0A2P5BNT0 (Uncharacterized protein (Fragment) OS=Parasponia andersonii OX=3476 GN=PanWU01x14_223230 PE=4 SV=1) HSP 1 Score: 102.4 bits (254), Expect = 7.5e-18 Identity = 56/151 (37.09%), Postives = 87/151 (57.62%), Query Frame = 0
BLAST of Spg021058 vs. ExPASy TrEMBL
Match: A0A2P5CPE8 (Uncharacterized protein OS=Parasponia andersonii OX=3476 GN=PanWU01x14_135680 PE=4 SV=1) HSP 1 Score: 98.2 bits (243), Expect = 1.4e-16 Identity = 55/149 (36.91%), Postives = 81/149 (54.36%), 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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