
Lag0017333 (gene) Sponge gourd (AG‐4) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGAGATGGCAATGGACACTCAATTTCTTCATCATCAACCTTTGCAACGAATGGAACTTCTGTTGTAAGGATTATCTCTTGGGTCAGTTGTGCTTGTTGCTCTACATGCTTCCCCAGTTTTGTCTCATGTGCTTCTATCTTATAAATGTTATCAGACATGGTTTTCAACTCAACTCAAGTACTTTCCTGAAATTGAAGAGTATTTTTAGCAAGCTCATAAATTTGATCCTCAAGAGATTTACCTGAATTGGGACGTTGATAGTGTTGATGTGACTGTTTGACTTGATATCCCTGCACTAATTTCTCACATAAAGAAGTTAGAATTGATAGTTTATCATCGAGCGATCCTACCCTCTTCACTAAGCCTAGAGAAATTGGGGAATGGATAGTATATCAAAATTGGGGAAGACCCTTGGATTGGCTCGGTAATGGATTCAAGCCTGTGTTGGTGAGGAATGATTTGGCAGGGAATTATGTAAGTTCCCTCATCGATGGAAATGGCTTATGGAATGAAAACCTTATCAAGGAGTGTTTCATCCCTTCCAACGCTGAAGCTATAACAAACATTCCGCTGGGAAGTTTGGATTCTAAAGACGAAATTATTTGGGGGCAGAATGCTAGCGGCCTTTTCATGGTGAAGAGTGCCTATTTCTTGGCTCAGAACATAGCAGCGGCTGGGAAGGAAGCCCTCTCGGACGTCTCAGAAGCTAAGTCCATGTGGAGGGACTTGTGGAAGTCCAATGCTAAGCCTAGAGAAAAAATATGTGCCTGGAGGGCAATTCGAAATATCCTTCTGGCCTTTTCCAACATAGTAGCTAGAGGGATTGACACTAATCTGTCTTGCTTTTTGTGCAAGAGGAAAAGGGAATCAGGGAGCCATGTCTTCTGGGATTGCAAGGTAACTCGAAAAATTTGGGGCTTCTTTTTTCCTAATCGTAGTTTTATTGGTTATGGTTGCAGAGAGGCAGGGGCCGAGATAGACAAATGGAGGGAGATGAGAAATCAATTGGATGAGGAAGAAAGGGACCTGGCTATTAGCGTTATCTGGCGCATATGGAAGCTCAGAAATACAGTTAAGGCAAAAAATTCTCTCCCAGATCTCAAGTCAGTTTTCAGAGAAATTGAAATTGCAAATGAAAGGAGAATTTACCTGAAGGAGCAAAAAGCTTCTGGTCAGAGGTTGGAGAGTCAATCGAGTCAAGGGCAGTGGAAGCCCCCTCCGAGCGGTTGCTGGAAAATAAATTTTGATGCCTCTTGGTCGGATTCTAAAGGGGAAGGAGGAACCGGTTGGATAGCTCGTGACTCTAATGGGTCTCCTATCCTGACCGAATTTCAAAGATCAAAGAAGAATTGGTCGATTAAATGCTTAGAGTTGAAGGTGATCTCCGATAGTCTGAATTGCATTCAACATCAAATTTCTAGGCCTTACCCGCGTATCTTTGTGGAATCTGATTCATCTGAAGCGATTTCGCTGCTAAATGGGGACTCCATCGATCTCTCAGAGGCCCATTTGGTGGTGAACGAAGCGAAAGACGTTGCAGGTGTTGCTGGACGCGTTTCGTTCTCCTTCTGGCGGCGGGAAGGTAACCGTGAAGCGCATATCTTGGTGTGAATGGCTTACAATCATGATATGTTGGTTGGTTCAAGCCCTTTTTTTTTGCCAATTCCAATTCGGAAGAGGAATTCTTTTGTATAGACAGTGGGCCTTCGTGGTTGGGCTCTTCTTTCTTGTTGAAGAGAGTTAATGGGAGTGGTTGTTTGTTGTTTTCTAATTAATGAAGTTTCTTTTCAAAAAAAAAACACCTAATTCATCAATACTCTTAATAATTTAATTAAACTCAATTAAAAAAACCTAATTGATTTTAATTAAACAAATACTAGAAATTGATAAATTGAAAACAATTCTAACATAGATCATAGATTAATCTTAGTTGACTTTTATTCCCGATCATTCTATTTCTAATAATGTGATTATAGGACATGAAAGTCTCCACTATTTGAATAAATGAAAAACTAGAAAGGTGGGGTATGCGACATTGAAACTAGATACGAGCGAGACATATGATAGGGTTGGAATGACTTTTTATTCAACAGGTGTTGTCTAAGGCGAGTTTCCATTTTGATTGGATCGCCCTTATTATGGATTACATTACATCGGCCACAAATTCTCAGTTCTAAACGAAGAATCCAATGGCCATATTCAATCGTCTCAAGGCTTACACCAAAGTGATCCTATTTCTCTATATCTATTCTTATTATGTGTTGAAGGTCTCTCTTCTCTATTATATGTTGCAGTTCACAAGGGTGACATCTCTAGAATTTCCATAGCCCGACCTTGTCCAAAAGGTTTCACATTTTTTTTTCTTATGATAGTCTGATTTTCGTGTAAGCTTCTATCCATGAGTTTGAGTGTTTAAACAGGTGATTCAGATATATGAGCATGTTACTAGTCAATGTATCAATCTGAATAAGTCGGCGATATGTTTCTTACCAAATGTTACCAAATTGAAAAATTACACACAAATTACTTCTAATTTACACTTAATACCAATTTAGGCAATTAAAATAACAAGATAAATCCTAAAACATGCAATCTATGTTATTTGATAATTTAACTATGAAAATTAAAATGCAAAAGATAAAGAGAGTGAGGGAAAGAAGACACTGAAAAAACCAATACATTGTGCAAAATAAGAACTAATAAGAACAATTTCTACATTAATTCTATGTTAAGCATGGTTTCTAATCTACAAAAGTCTCCTAGGAATTATACTTACTTTTGTAGACTCTATTGAATACTATTTAGAATTAATATGTTACAGCAAGAACTCCTTCACAAAGAGTTGCTTGTGAAATTACTGAGTGTCAGAACTCCCTCTTCCCAGAACTCCCTCTTCCCAGACGTAGGGTCAAAAAGTTGACTCCATTTTAAATACTATCTATAATTAATATGTTAAAAAAAGGAAGTATCTTTGAAAAATATTTTTGAATTTCTCTTTTAATTTTGATTTTTAAAATTACAAGTATGTGATTTACATTAATTATTAATAATTAAGTAATTTTAATATGTACAATTTTTTTTCTTCTAATTTTTAAATGATTTTTAAAACAATCGATCTAACCAGTTAAACTCCATAAAATAATAATAATAAATGGTAACCTGTTATTAACAATATTAATTGATTAAGTATTTATTATTAATTATTTAATAAAATTTTATCTAAATGTGATATTTAAACAAAAAAAAATATAAAATGCTATCAAAATAAGATTTTTATTTCTGAAAATTTATGTTTTTCGTTTTTCTTTTGTTTATGATTAAAGATAAAATTATATTTTGAAAATTTTAAGCATGATAATTAAAAGAAAACGTTATAATTTAAGTAAATTCTATATCATGAAATTATATATAAAATATTATTTTTTTTTTATTTTATTGAAGGTATAAGAATGTAAAAGGTTGGAAGGTAGAAAAATGAATGCAAAAGAATTTTTGTTCATTAAATTTCTATGATTTAATTATAAATTTTATAACTAAAATTTAACTAAAATTCCTATGATTTAATTATAAATTTCAAAGGTTCTAAAATTTGAAAGTCTTGAAACATTGTTCAACTTTTAGCCCGTACTATATAAAGAACTCTTCCTTACTTTTTTTTTCTACAAAATCTTAGAGTATCCTCTTTTTATTATTTTTTTTTCTCTCTTATTTTTTCTCTTTTAAGTTTCATCATTAGGATCAAATATTGAATTCTCTCGATATGAGAGTTCTCCCCTCGACATGAGGGTTTCCCCCTTTTTTGGTTCTAGGGTTTCGGCAAGGGCTTTGCGGCGGAGGAAGGTCACGGCGAGGCGGTGCAGCTGGGTTTGCGGTGGAGTCGAGACGTGATCGGTGAGCAAGGCGTTGTTCTGAAAGAGGTGGCCTCTGTATGTGGGTCGCGAAGTGAGGGGTACGAGGGTTTCTGAAGTGGCGTGCGATTCCGGCGACGGAGAGGAGGTTGTGCGACTTGGAGGCGGTGGATCTGAGTACTGGGTTCTTGCTAGTCAGGCGGCGTCGTGGTGGCGGTGTGACGGCGCGGTTGGACTGCGGCCGAGACGCGACGACAAGCGATTGGACTGGGGCGGTTTTCTGTACTCTGTTCTTGTGGGCTGGTCTGCGACGGCAGCAGAGGTAGGTGTTTGTGTGTCTGGGGTGTTTTTGTGTGTGCAGGATTTGGGCGACGGATCAGTGCGGCTGGGGAAGGTGTGTTGGGCTGGGAACAAGTCTGTTTTGTTTGGGGCTGTGCGGCAAGGTGTGCTGGTATGGGCGGCGGCTGGGAGGCTGTCTTGGTCATAGACTGGAAGTTGCTGGGTGTGTGATTGATTGGTTTTTGCTGGGCTGAGTGATTGAGGAAGGCGTTGCGTGTGGTGTGAATTGGCGAGGTGTGTTGTGCAGGGCATAGCGTGGTTTGGTGTGGCGCTCTGATAGGGGCTTGAACGGATGCGCATGTGGTGGTCTGGATTGTCAGCTTGCTGTTTGGGTTGTTTCGCGTTGTTAGTTTGGTTTGGTGCGGTTTTGGAGCTACAGTTTGGTTGTTGGGTGCTTAGTTTGCTATTGGGTGCTTCGATCTTCGAGTGGTGCGTCTGGTGTTCCGTGTGGGGTTTGTTGCGCAGTGTAAGTGTGTGGTGTCTTGTGTGGTTCTCAGTTTGTTGTCTCGGTTGTGTTTGGTGTGTGTCGGTGTTGCAGCAGCTAGTGGGGTGTGTGTGTGCTAGTGGTGTGTGCATTGGTGTTCCTGGGTGAGGGGTTGGGTAGTGGTTAAAGCCTAGGTGATAATGGAGGATCTTGTTAGCAGGTGGAATTCTTGGAAGTTGACGGAGGAGGAGGCGGAGATGGTTCGACCAGGGGAGGGAGCATCGGCCTTGTCGGTGGATTCGCTAGATTTGTGTGTGATAGGGAAAGTGTTCTCCTCGAAACGCGTGAATGTAGAGGCCTTTCGGAATGTCATGAGGCAGCGTGGAAAGCTCATGGGGCAACGCGCATAG ATGAGATGGCAATGGACACTCAATTTCTTCATCATCAACCTTTGCAACGAATGGAACTTCTGTTGTAAGGATTATCTCTTGGAAGTTAGAATTGATAGTTTATCATCGAGCGATCCTACCCTCTTCACTAAGCCTAGAGAAATTGGGGAATGGATAGTATATCAAAATTGGGGAAGACCCTTGGATTGGCTCGGTAATGGATTCAAGCCTGTGTTGGTGAGGAATGATTTGGCAGGGAATTATGTAAGTTCCCTCATCGATGGAAATGGCTTATGGAATGAAAACCTTATCAAGGAGTGTTTCATCCCTTCCAACGCTGAAGCTATAACAAACATTCCGCTGGGAAGTTTGGATTCTAAAGACGAAATTATTTGGGGGCAGAATGCTAGCGGCCTTTTCATGGTGAAGAGTGCCTATTTCTTGGCTCAGAACATAGCAGCGGCTGGGAAGGAAGCCCTCTCGGACGTCTCAGAAGCTAAGTCCATGTGGAGGGACTTGTGGAAGTCCAATGCTAAGCCTAGAGAAAAAATATGTGCCTGGAGGGCAATTCGAAATATCCTTCTGGCCTTTTCCAACATAGTAGCTAGAGGGATTGACACTAATCTGTCTTGCTTTTTGTGCAAGAGGAAAAGGGAATCAGGGAGCCATGTCTTCTGGGATTGCAAGGTAACTCGAAAAATTTGGGGCTTCTTTTTTCCTAATCGTAGTTTTATTGGTTATGGTTGCAGAGAGGCAGGGGCCGAGATAGACAAATGGAGGGAGATGAGAAATCAATTGGATGAGGAAGAAAGGGACCTGGCTATTAGCGTTATCTGGCGCATATGGAAGCTCAGAAATACAGTTAAGGCAAAAAATTCTCTCCCAGATCTCAAGTCAGTTTTCAGAGAAATTGAAATTGCAAATGAAAGGAGAATTTACCTGAAGGAGCAAAAAGCTTCTGGTCAGAGGTTGGAGAGTCAATCGAGTCAAGGGCAGTGGAAGCCCCCTCCGAGCGGTTGCTGGAAAATAAATTTTGATGCCTCTTGGTCGGATTCTAAAGGGGAAGGAGGAACCGGTTGGATAGCTCGTGACTCTAATGGGTCTCCTATCCTGACCGAATTTCAAAGATCAAAGAAGAATTGGTCGATTAAATGCTTAGAGTTGAAGGTGATCTCCGATAGTCTGAATTGCATTCAACATCAAATTTCTAGGCCTTACCCGCGTATCTTTGTGGAATCTGATTCATCTGAAGCGATTTCGCTGCTAAATGGGGACTCCATCGATCTCTCAGAGGCCCATTTGGTGGTGAACGAAGCGAAAGACGTTGCAGGTGTTGCTGGACGCGTTTCGTTCTCCTTCTGGCGGCGGGAAGGTAACCGTGAAGCGCATATCTTGGGTTTCGGCAAGGGCTTTGCGGCGGAGGAAGGTCACGGCGAGGCGGTGCAGCTGGGTTTGCGGTGGAGTCGAGACGTGATCGTGGCGTGCGATTCCGGCGACGGAGAGGAGGTTGTGCGACTTGGAGGCGGTGGATCTGAGTACTGGGTTCTTGCTAGTCAGGCGGCGTCGTGGTGGCGGTGTGACGGCGCGGTTGGACTGCGGCCGAGACGCGACGACAAGCGATTGGACTGGGGCGGTTTTCTGTACTCTGTTCTTGTGGGCTGGTCTGCGACGGCAGCAGAGGTAGGTGTTTGTGTGTCTGGGGTGTTTTTGTGTGTGCAGGATTTGGGCGACGGATCAGTGCGGCTGGGGAAGGTGTGTTGGGCTGGGAACAAGTCTGTTTTGTTTGGGGCTGTGCGGCAAGGTGTGCTGGGGCTTGAACGGATGCGCATGTGGTGGTCTGGATTGTCAGCTTGCTGTTTGGGTTGTTTCGCGTTGTTAGTTTGGTTTGGTGCGGTTTTGGAGCTACAGTTTGGTTGTTGGGTGCTTAGTTTGCTATTGGGTGCTTCGATCTTCGAGTGGTGCGTCTGGTGTTCCGTGTGGGGTTTGTTGCGCAGTGTGATAATGGAGGATCTTGTTAGCAGGTGGAATTCTTGGAAGTTGACGGAGGAGGAGGCGGAGATGGTTCGACCAGGGGAGGGAGCATCGGCCTTGTCGGTGGATTCGCTAGATTTGTGTGTGATAGGGAAAGTGTTCTCCTCGAAACGCGTGAATGTAGAGGCCTTTCGGAATGTCATGAGGCAGCGTGGAAAGCTCATGGGGCAACGCGCATAG ATGAGATGGCAATGGACACTCAATTTCTTCATCATCAACCTTTGCAACGAATGGAACTTCTGTTGTAAGGATTATCTCTTGGAAGTTAGAATTGATAGTTTATCATCGAGCGATCCTACCCTCTTCACTAAGCCTAGAGAAATTGGGGAATGGATAGTATATCAAAATTGGGGAAGACCCTTGGATTGGCTCGGTAATGGATTCAAGCCTGTGTTGGTGAGGAATGATTTGGCAGGGAATTATGTAAGTTCCCTCATCGATGGAAATGGCTTATGGAATGAAAACCTTATCAAGGAGTGTTTCATCCCTTCCAACGCTGAAGCTATAACAAACATTCCGCTGGGAAGTTTGGATTCTAAAGACGAAATTATTTGGGGGCAGAATGCTAGCGGCCTTTTCATGGTGAAGAGTGCCTATTTCTTGGCTCAGAACATAGCAGCGGCTGGGAAGGAAGCCCTCTCGGACGTCTCAGAAGCTAAGTCCATGTGGAGGGACTTGTGGAAGTCCAATGCTAAGCCTAGAGAAAAAATATGTGCCTGGAGGGCAATTCGAAATATCCTTCTGGCCTTTTCCAACATAGTAGCTAGAGGGATTGACACTAATCTGTCTTGCTTTTTGTGCAAGAGGAAAAGGGAATCAGGGAGCCATGTCTTCTGGGATTGCAAGGTAACTCGAAAAATTTGGGGCTTCTTTTTTCCTAATCGTAGTTTTATTGGTTATGGTTGCAGAGAGGCAGGGGCCGAGATAGACAAATGGAGGGAGATGAGAAATCAATTGGATGAGGAAGAAAGGGACCTGGCTATTAGCGTTATCTGGCGCATATGGAAGCTCAGAAATACAGTTAAGGCAAAAAATTCTCTCCCAGATCTCAAGTCAGTTTTCAGAGAAATTGAAATTGCAAATGAAAGGAGAATTTACCTGAAGGAGCAAAAAGCTTCTGGTCAGAGGTTGGAGAGTCAATCGAGTCAAGGGCAGTGGAAGCCCCCTCCGAGCGGTTGCTGGAAAATAAATTTTGATGCCTCTTGGTCGGATTCTAAAGGGGAAGGAGGAACCGGTTGGATAGCTCGTGACTCTAATGGGTCTCCTATCCTGACCGAATTTCAAAGATCAAAGAAGAATTGGTCGATTAAATGCTTAGAGTTGAAGGTGATCTCCGATAGTCTGAATTGCATTCAACATCAAATTTCTAGGCCTTACCCGCGTATCTTTGTGGAATCTGATTCATCTGAAGCGATTTCGCTGCTAAATGGGGACTCCATCGATCTCTCAGAGGCCCATTTGGTGGTGAACGAAGCGAAAGACGTTGCAGGTGTTGCTGGACGCGTTTCGTTCTCCTTCTGGCGGCGGGAAGGTAACCGTGAAGCGCATATCTTGGGTTTCGGCAAGGGCTTTGCGGCGGAGGAAGGTCACGGCGAGGCGGTGCAGCTGGGTTTGCGGTGGAGTCGAGACGTGATCGTGGCGTGCGATTCCGGCGACGGAGAGGAGGTTGTGCGACTTGGAGGCGGTGGATCTGAGTACTGGGTTCTTGCTAGTCAGGCGGCGTCGTGGTGGCGGTGTGACGGCGCGGTTGGACTGCGGCCGAGACGCGACGACAAGCGATTGGACTGGGGCGGTTTTCTGTACTCTGTTCTTGTGGGCTGGTCTGCGACGGCAGCAGAGGTAGGTGTTTGTGTGTCTGGGGTGTTTTTGTGTGTGCAGGATTTGGGCGACGGATCAGTGCGGCTGGGGAAGGTGTGTTGGGCTGGGAACAAGTCTGTTTTGTTTGGGGCTGTGCGGCAAGGTGTGCTGGGGCTTGAACGGATGCGCATGTGGTGGTCTGGATTGTCAGCTTGCTGTTTGGGTTGTTTCGCGTTGTTAGTTTGGTTTGGTGCGGTTTTGGAGCTACAGTTTGGTTGTTGGGTGCTTAGTTTGCTATTGGGTGCTTCGATCTTCGAGTGGTGCGTCTGGTGTTCCGTGTGGGGTTTGTTGCGCAGTGTGATAATGGAGGATCTTGTTAGCAGGTGGAATTCTTGGAAGTTGACGGAGGAGGAGGCGGAGATGGTTCGACCAGGGGAGGGAGCATCGGCCTTGTCGGTGGATTCGCTAGATTTGTGTGTGATAGGGAAAGTGTTCTCCTCGAAACGCGTGAATGTAGAGGCCTTTCGGAATGTCATGAGGCAGCGTGGAAAGCTCATGGGGCAACGCGCATAG MRWQWTLNFFIINLCNEWNFCCKDYLLEVRIDSLSSSDPTLFTKPREIGEWIVYQNWGRPLDWLGNGFKPVLVRNDLAGNYVSSLIDGNGLWNENLIKECFIPSNAEAITNIPLGSLDSKDEIIWGQNASGLFMVKSAYFLAQNIAAAGKEALSDVSEAKSMWRDLWKSNAKPREKICAWRAIRNILLAFSNIVARGIDTNLSCFLCKRKRESGSHVFWDCKVTRKIWGFFFPNRSFIGYGCREAGAEIDKWREMRNQLDEEERDLAISVIWRIWKLRNTVKAKNSLPDLKSVFREIEIANERRIYLKEQKASGQRLESQSSQGQWKPPPSGCWKINFDASWSDSKGEGGTGWIARDSNGSPILTEFQRSKKNWSIKCLELKVISDSLNCIQHQISRPYPRIFVESDSSEAISLLNGDSIDLSEAHLVVNEAKDVAGVAGRVSFSFWRREGNREAHILGFGKGFAAEEGHGEAVQLGLRWSRDVIVACDSGDGEEVVRLGGGGSEYWVLASQAASWWRCDGAVGLRPRRDDKRLDWGGFLYSVLVGWSATAAEVGVCVSGVFLCVQDLGDGSVRLGKVCWAGNKSVLFGAVRQGVLGLERMRMWWSGLSACCLGCFALLVWFGAVLELQFGCWVLSLLLGASIFEWCVWCSVWGLLRSVIMEDLVSRWNSWKLTEEEAEMVRPGEGASALSVDSLDLCVIGKVFSSKRVNVEAFRNVMRQRGKLMGQRA Homology
BLAST of Lag0017333 vs. NCBI nr
Match: GAY61101.1 (hypothetical protein CUMW_207140, partial [Citrus unshiu]) HSP 1 Score: 159.5 bits (402), Expect = 1.1e-34 Identity = 117/391 (29.92%), Postives = 176/391 (45.01%), Query Frame = 0
BLAST of Lag0017333 vs. NCBI nr
Match: XP_023876230.1 (uncharacterized protein LOC111988681 [Quercus suber]) HSP 1 Score: 154.5 bits (389), Expect = 3.6e-33 Identity = 113/393 (28.75%), Postives = 181/393 (46.06%), Query Frame = 0
BLAST of Lag0017333 vs. NCBI nr
Match: XP_024956542.1 (uncharacterized protein LOC112498908 [Citrus sinensis]) HSP 1 Score: 153.7 bits (387), Expect = 6.2e-33 Identity = 116/394 (29.44%), Postives = 177/394 (44.92%), Query Frame = 0
BLAST of Lag0017333 vs. NCBI nr
Match: XP_030932272.1 (uncharacterized protein LOC115958047 [Quercus lobata]) HSP 1 Score: 152.1 bits (383), Expect = 1.8e-32 Identity = 113/414 (27.29%), Postives = 180/414 (43.48%), Query Frame = 0
BLAST of Lag0017333 vs. NCBI nr
Match: XP_023915006.1 (uncharacterized protein LOC112026546 [Quercus suber]) HSP 1 Score: 151.8 bits (382), Expect = 2.4e-32 Identity = 110/380 (28.95%), Postives = 170/380 (44.74%), Query Frame = 0
BLAST of Lag0017333 vs. ExPASy TrEMBL
Match: Q2QNX8 (Retrotransposon protein, putative, unclassified OS=Oryza sativa subsp. japonica OX=39947 GN=LOC_Os12g36390 PE=4 SV=1) HSP 1 Score: 151.8 bits (382), Expect = 1.1e-32 Identity = 115/424 (27.12%), Postives = 185/424 (43.63%), Query Frame = 0
BLAST of Lag0017333 vs. ExPASy TrEMBL
Match: A0A6J5UAY2 (Reverse transcriptase domain-containing protein OS=Prunus armeniaca OX=36596 GN=CURHAP_LOCUS20161 PE=4 SV=1) HSP 1 Score: 150.6 bits (379), Expect = 2.5e-32 Identity = 105/397 (26.45%), Postives = 186/397 (46.85%), Query Frame = 0
BLAST of Lag0017333 vs. ExPASy TrEMBL
Match: A0A2N9GI95 (Reverse transcriptase domain-containing protein OS=Fagus sylvatica OX=28930 GN=FSB_LOCUS27032 PE=4 SV=1) HSP 1 Score: 147.9 bits (372), Expect = 1.6e-31 Identity = 101/384 (26.30%), Postives = 165/384 (42.97%), Query Frame = 0
BLAST of Lag0017333 vs. ExPASy TrEMBL
Match: A0A7C9A7V4 (Uncharacterized protein OS=Opuntia streptacantha OX=393608 PE=4 SV=1) HSP 1 Score: 147.5 bits (371), Expect = 2.1e-31 Identity = 105/375 (28.00%), Postives = 176/375 (46.93%), Query Frame = 0
BLAST of Lag0017333 vs. ExPASy TrEMBL
Match: A0A2N9GAE6 (Uncharacterized protein OS=Fagus sylvatica OX=28930 GN=FSB_LOCUS24083 PE=4 SV=1) HSP 1 Score: 142.9 bits (359), Expect = 5.3e-30 Identity = 95/370 (25.68%), Postives = 161/370 (43.51%), Query Frame = 0
BLAST of Lag0017333 vs. TAIR 10
Match: AT4G29090.1 (Ribonuclease H-like superfamily protein ) HSP 1 Score: 110.9 bits (276), Expect = 4.3e-24 Identity = 96/386 (24.87%), Postives = 162/386 (41.97%), Query Frame = 0
BLAST of Lag0017333 vs. TAIR 10
Match: AT1G27870.1 (Polynucleotidyl transferase, ribonuclease H-like superfamily protein ) HSP 1 Score: 53.1 bits (126), Expect = 1.1e-06 Identity = 40/145 (27.59%), Postives = 66/145 (45.52%), Query Frame = 0
BLAST of Lag0017333 vs. TAIR 10
Match: AT5G65005.1 (Polynucleotidyl transferase, ribonuclease H-like superfamily protein ) HSP 1 Score: 52.0 bits (123), Expect = 2.4e-06 Identity = 50/210 (23.81%), Postives = 88/210 (41.90%), Query Frame = 0
BLAST of Lag0017333 vs. TAIR 10
Match: AT2G02520.1 (RNA-directed DNA polymerase (reverse transcriptase)-related family protein ) HSP 1 Score: 46.2 bits (108), Expect = 1.3e-04 Identity = 19/79 (24.05%), Postives = 37/79 (46.84%), Query Frame = 0
BLAST of Lag0017333 vs. TAIR 10
Match: AT1G43730.1 (RNA-directed DNA polymerase (reverse transcriptase)-related family protein ) HSP 1 Score: 43.9 bits (102), Expect = 6.4e-04 Identity = 25/101 (24.75%), Postives = 41/101 (40.59%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (AG-4) 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.
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