CmaCh18G012020.1 (mRNA) Cucurbita maxima (Rimu)
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDS Hold the cursor over a type above to highlight its positions in the sequence below.CTGGAATCTACAGAGGTTACAACACTAAGTCTCTTCCTGTCAGATAGCTTTCTAACGTGTCAACGTTGAATCAGACACGTCACTATGAGTGTGCTGGTGAGATAAAATCACGCCACGTATACAGTATTTGCAAAAATAAATAAAAATTAAAAAGAAAAAACAGATTCCGAAAGTAAAGCCTAGTCGATGTGGGACCCATATCTATCGTTTGTGGCAAGCCTGGCGTGGGAGTTTCTGATTGATCCACCTGTGTCATCCTCGCAAGCTGGGCCTCCAGTTTTCAAGCACTTTTGACACGTGTCACAAGGGATAATTCTCGCGATACGATTAATTGACTGGAAAGAGAAAAGGAATTAGGGGAGAGGATCGTCATGGGTAACACGTGTCCTAACAGCATGAAATGGAGGTCGGGTAGGGCAGGTTCTGTAGCTGCCCGTAGAATTAGAGTTGCACGAGAGTCTCTCTTTTGTTCCTGGGTGGGAGGAAGAAACGAAGCGACACGTTTTCTTCTCAGCGAAATTCCGTAACGCATTCCATTACTTGCTTATACTATTAAACTTCGCTAACGATGATTATTCTTATCGTGAGATTCTCGACGGCGAGTTCCTGTTTCGGACGATTCCGATGACGGAGGTTTACTGTAGAATGCCAAGTGATGATTATATAGGTTCGCCGGCCAAATGCCGAGAGCGCCGGCGCCGTAGAATAGAAATGAGGCGATTAGCAGCAGTACTGTCGGCGAAACCCTCGCCATCGCCGTCGACCAGTCACCACCACCGGAAGGAGAACCAAACTGAGAGTTCCGGTTTTGAGAAGAAGCGTGTTCGGAAGACGGACGGCGGCGACACTCCGGAGGTTTTAACGTCTTCGTCTTCGGGGGAGGACGTGAACGCTGTAGTTGCTTCATCGTCGGTACCTCAGCCGGTGTTCGGGATGATGTCGGTATCTGGTAGATCACGTGAGATGGAGGACGCAGTATCGGTGAGCACGTGCCTTATTGGTCCAGAAAGGCGACTACCGGTGCATTTCTTCGCCGTCTATGATGGACATGGAGGCCCTCACGTAAAGTTTAAATTTTATTTTTCCAGAAAATTAGTAAATAGAGAAAAAAAAAAAATTGGAGGTGGAAATTACCATTGAGATCAAACTGAATTATCCTCTATAATGGCGGCATTGAGGGTTATTATCGTCATTATGATGGTCTAATGTGCTTTATTTCACAGGTGGCAACACTATGTATGGAGAAGATGCACGTGTTAGTACAGGAGGAATTGGCGCGCGTGGTGAATACGCGCGAGGAAACTGAGAGTATCGGTGGAGGAAGTAGCACGGAGGAGGAGGCGACTTGGAGAAGAGTGATGCGACGGAGCTTTGAGAGAATGGATGAAGTGGCACTCAATACTTGTGCCTGTGGGAGCGTCGGAGGCCAGTGTGCTTGCCATCCAATGGAGGTGGCTCTCGGCGGTTCCACCGCCGTTGTCGCTGTGCTCACGCCGGATCATATAGTCGTTGCCAACTGCGGTGACTCACGCGCCGTCCTCTGTCGAGGAGGAAGGGCCATTCCGCTTTCCAATGATCACAAGGTTTACTCTCTCTCAAGTCCTTCTCTCCCGAAAATTGTTGACGTAATCGTCGCCAGCTGTTTGCTCAACACTTATATGCTGTCAATTTTTGACGAAATGATAACGATTAAAGGATTGCTTGTCTAATCTTGTTGCTTCTATGATGCGATTAGACCATTTTAGCGTAAAAGAAATTTTAGATTGATTAGGTCTCCCTTACATTCTCATTCATTCAGCCATTTGTTCTTCTTTTCTCCAATTTTTTACTAATTTTGGGACACAAGCATAATGCTTCGCAAATTCTGTCCCATCCTTCTAGGGCTATGAATTCGTCGTAGTTATGTTATGGATGGCGACCCTGACGTGCTATAGTCATTCATACAACACTTGTTGCCCGACTCTGGCTATGGGGATCAGTTCTTCGATCTCGGTTTAGATTCGTTAACCCATTTGTATCACTGCGAAGAAAAGTGTGTAATGGTATCATTTAATATAACCTTTCTGCGTAAGGTTGAGTACTTCCATGAAGCTTGGTCTTTTTATTTTTTTTGTCTGAAGTACATTTAGATGGATAGAATGTTGTGTGAGCAGAAAATATATGATATTTTCTGCTTTCTCGAATTATTGATTCAGTGTTCTAATTTTGTTTGTCTACTTAATTTCAATGTGTATTATTGCATGATACATTTTCCAGCCAGTAGGTGTCTCATGATGAACATATAATATATTTTTTGTCTCACTATTTTGCTTATCCTAATTCTCAGCCTGATAGAATTGATGAACTAGCAAGGATCGAAGCTGCAGGAGGACAGGTGATTTTCATAGATGGAGCTCGTGTTAAAGGCATCCTTGCAATGTCCCGTGCAATTGGTAATAGTTTCTGCTATTATGGATGTTGAATATGTTATTATCTGCTTTTGTGGAGTTTGCTTAAACATTCCGACGTAAATTATAATGCTTCCAGTGTATGATTATTGCATATGGTCATCTACAGAAGTCTGATTTTGTTTTCAAGGAATTAAATAAACTTCTCACAGTGACACCGTCTAGGTAATTATGAGGTACACCTCTTGCTATTCACAAACTGATTGTGGTCGTGTTTAGTTTTGGTACAGTTCTATGCAATCTTCTTTGTCAAATCCTGCATTCTTTTCTAAGTTCGAACTTTGATTAGATTATAAGTTTCAAGGATTTCCTAAAAATTTGATTGTCATACTCTGTCGCTAGTGCAATATATATACATATATATATATATATATATGAATACTCTCTAGAAGAGAATGTATAAAGCCTTAAATGAATGGAAGGATTTAGATTCTGATATATTTTTTAGTGATAAGAATTAATAGATAAAGGGACTGTTGATTCACTGAGGTTATGTAGTGCTTGGATCAAACACTATTTCATTTTATTAGGTTGAGTCCATGGACAATTACAAATTGCGAAATGGATGCTCATTTGGAATATACATATGATTTGACAAAAGAGGTTTATGCTGTACGGTTCACTGTGTTTGCATTCACTTATAATATTCTGGACAACCTTACTTGAACAAGATTCATGCTATAAAGTTGTGTAAATGAGTCCTCGAGTTTAGGGGACGAAAAAATTTGTAACATTTTGAGTAAGATTGTTACTTCCTTGAATCTGAAGTCCACTTCTCACTCCCCATTTCATCTTGGAGCATTGGGCTTGCTGTAGCCTCGTGATTCTTCTGAAATGGGTTCCCTTACAACATTGCTTGGCAGAAATGTGAAGCATGTGATTTCTGAATGAAAATGCTTTATGTTGCATTTCTTCATCAACAGATTGCTAGCATGATTGAATGGTAGTGTGGATAAAGATTGGCAAAAAATTTCCTAGTAACTTCATAGAACACCCTCTTTGATGACTCAGAGGGTCTAAGAGCAAAACAGATTTTGAAAAAAAACTAATCAGATTGGAAATCTTTGTTGCCCTTAAAGTCATAATTTTCCTGAAGTAATTTGATTCAATGGGACAAGTTATTTTCTTCAAGGAAAGTTTTTAAGTACTGTACAGATCATGGCAGTTTGTTGGGAAAAAAAATTGAACAGGGTGATATTAGTTATGTGCATAATTGAGACTTTAAACCCTCGCAAATTTCCTTTCTTATAACAACATTACTTTGGGATTGTATGCTAACATTGCAATGTAATGCGGCTTTGACATGCTGAGAGTAGGGAAGATTCAGCAAATAAGTGTAAGGGTCAGTAATGTTTATGATTTTTCTTTGTGATAATCTCAATGTATGTCCCGTGATTTAGACAAATTTTCTTTTTTGTCTGACGGACCATTTCAAGAGTTTGAAGCATTTGGGTCTTCAATATGGATTCTAACTTCTTGCAAGTTGCAACTAGAATGACCTTATTAAATGTACGAGTCAGAGGTATATCTTCCTCTTGTGATGGAGTTCATGGAAATCAATTTGATAGTGGCAGAAATCTGCAGAATCGTGTCTTGTTGGCAAGTACCTCTGTTGGATCGTCACTCACTTTACTTGACAATATCTAATCTGTTTTGAACATGATTGGGCATTGTAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAGGAAAAGAAAAAGAAAAAAGGTTTGGAACTGGTCAACTGGTGCTTACCATGTTGGGCATGCAAAACTGTTTTTTCCCTTTCAGTTGGCTGTTGAATACTGGTCTATACCATCATTTTTGTTTGGTTTACTTGGGGATTGGTTGACATAAAATTTGTGACTTCGTATATTTGCATTTTTAAAAACTTGGAACTAACTGTGCTTCTTTACTGTGATTTCGTTTGTTGCTTTTTCTAAGATATTTTGGGAAATCAGGTCAGAGTAATTTTGACTGATGAACAACATTAACAAGTAGCAACATGGACTTGAGAGGTGCCAAGTTTCCAAATGCAAAACTTATTCTAGCAGTGGGACATTGGTGTCTTGAATCTTATCTCCATATGTCTATATGTATACATTTGTTGAAACATAAGTTTTGTCTTATAACTTAGAAGGAAATGTTAGACTGATGCCTTGCCAGCTTATGATTAGATTCACTTTTTGTTGTTGGAAGATCACGACAGTGTTGAAACGAAAAATATAAGCTTAGTGAAAAGTGGGTCGTACCATGAGATTGACTAATCATGACTCGTTCTTGCCTTTTCACCATGCTAAGAATGGCCATCTTGTAATTTTATCCAAAATGAGATTTTATTCTAAAAGTTCAAGGTATCTTGGGAAGCTTGCTGAATGTGGTTGCTCAATTGAGATTTATGATGACTGCAATATCAACTTGTTGATGTTCATCAGGGATGAGAGAGATGTCACCATGTAGGCCAACTATGATGCAAGTATATAAAGAAATTGGAAAGAAAACAAGAGTTATGAGTTGTCTCTGTTAGAATCGGAATAGTTTATTCCAGTGTGAAAATTGGTCGATTGTTGAAGCTTTTGCATTTGAAAGACGGATGAAGGACCTAATGATGAGTGTTCTAAATATCTTTCTTACCATATGGAACGATACTATCATGGATATAAACTGTACCAAGTTTCTAATACCTTGAGTTATCAGCTGTTCAGCTAGCGTTTAAGGGGTGGATTTATTTTTCCATTAATGAGTCTTTTTTCAAAATCTTGGACTCTCACTCATGATACCTGGAAGTCCAGGTCGAGAAATTGACCTCATATCTTTTGCTGAGACTTGCCTAGATCCGGTCCTGTGAATACCAATGGGGGGGTTTTTTCTAGATTTAATGCCATGTTTAGAAATACCGTAACTGGCTTGAGCCATTTGCAAATTTGTAAGCTTGAGCTATTTTACTGAGGAACTAGTTCTTATTTTTAATTACAAAATATGATATTGTTCACCATTTTTTTGGTATTTATTTTTAACCAATCGACTGTTGGTCTGTTCATTTGAATGGTTGAAGGTGAGCATCGACAGATAATCTGATAAAGAGTGACTGGCGGGGTAATGCTATTCTGAAAGTGAATTCAGAGCTTCATATCTCGAGGTTGTATTTATGGGTTAAGAAACCCATGGAATCTTTGGAAACTTATTAAGGAAGTTGTACTTCACATTTGTGTTGACTGTGCTCCGGGAACTCTAATGAAATCCTCGTTCCTTTAGTGCTTGATTTCTGTTCTGCAATTTCCCTGGTCTAGGTTCTGTTCTGCAATTTCCCTAGTCTAGTCGCCTATAACAACTTCTTTGGAAAGATGCCTAATTTGTGTAGTTTTATATACCTTCTGTATCAAATTACTCGAGTTACTGTTTGATTCTAGGAATAGGATTAACAAAATAGACTGGTGATCATTCTATGGCTTAAGGCAGGTGGGGAAATGTGGCTATTAAGGGTGACATTGTATTTATGGTTCATGGGTTGAATCGGGGAGAAGTAATTAAGTTCTGTATTAAGGTATGGGTTCAGCGACTCTGATCAATTGATTCTGTTGGAGATTGGATGAGCATAATTCTCTTTCTTCTTTCCTCTTCATGTACTGTCAGGATGGACATAGTTCTTTCCATTTCCCTTTCTTCCGGTGTTATCAGACTTACGTTTTTATGTGTTAAGTTCATTCTTTGTTATCTAGATTTCGGCAAAATAAATAACCTTTTTTGCGACAAGTGATAATTCTAGTCGCTTAGATTGAGATTCACTTCTACATTTGCCCCTAATGTTATACTGTCAGGCAAGCAGCGAACATTATGTATGATCTTTCGATTATAATAAAACAAGTTCTTGCGGAATTCCATTTGTCTATTTTTTTTTTTTTCTTTTGGAAGATTGATTTCTGTTGATTTTTCCACTTGTATGATGCTTTGAACAGGCGACAAATATCTCAAGTCAGTTGTAATATCAGAGCCAGAAATTACCTTCACCAAAAGAGAACCTGATGATGAATGTTTAATACTTGCAAGTGATGGTTTGTGGGATGTTCTTTCAAGTGAGTTGGCTTGTGAGATAGCTCGTGAATGTCTCCAGGAAACGGTCGCTGCTTCTAGCACTACAATAGATCTCAACGCCTTGCCTCAAATTGAAGAAGGGGCTGGAACTTCATATACCTCTCGTAGTTCAGTTGCTGCAGCACTGCTTACTCGTCTTGCTTTGGGGCGGAAAAGCACCGACAATATCAGTGTCATAGTTATCGATCTAAAGAGGAGCTAA CTGGAATCTACAGAGGTTACAACACTAAGTCTCTTCCTGTCAGATAGCTTTCTAACGTGTCAACGTTGAATCAGACACGTCACTATGAGTGTGCTGGTGAGATAAAATCACGCCACGTATACAGTATTTGCAAAAATAAATAAAAATTAAAAAGAAAAAACAGATTCCGAAAGTAAAGCCTAGTCGATGTGGGACCCATATCTATCGTTTGTGGCAAGCCTGGCGTGGGAGTTTCTGATTGATCCACCTGTGTCATCCTCGCAAGCTGGGCCTCCAGTTTTCAAGCACTTTTGACACGTGTCACAAGGGATAATTCTCGCGATACGATTAATTGACTGGAAAGAGAAAAGGAATTAGGGGAGAGGATCGTCATGGGTAACACGTGTCCTAACAGCATGAAATGGAGGTCGGGTAGGGCAGGTTCTGTAGCTGCCCGTAGAATTAGAGTTGCACGAGAGTCTCTCTTTTGTTCCTGGGTGGGAGGAAGAAACGAAGCGACACGTTTTCTTCTCAGCGAAATTCCGTAACGCATTCCATTACTTGCTTATACTATTAAACTTCGCTAACGATGATTATTCTTATCGTGAGATTCTCGACGGCGAGTTCCTGTTTCGGACGATTCCGATGACGGAGGTTTACTGTAGAATGCCAAGTGATGATTATATAGGTTCGCCGGCCAAATGCCGAGAGCGCCGGCGCCGTAGAATAGAAATGAGGCGATTAGCAGCAGTACTGTCGGCGAAACCCTCGCCATCGCCGTCGACCAGTCACCACCACCGGAAGGAGAACCAAACTGAGAGTTCCGGTTTTGAGAAGAAGCGTGTTCGGAAGACGGACGGCGGCGACACTCCGGAGGTTTTAACGTCTTCGTCTTCGGGGGAGGACGTGAACGCTGTAGTTGCTTCATCGTCGGTACCTCAGCCGGTGTTCGGGATGATGTCGGTATCTGGTAGATCACGTGAGATGGAGGACGCAGTATCGGTGAGCACGTGCCTTATTGGTCCAGAAAGGCGACTACCGGTGCATTTCTTCGCCGTCTATGATGGACATGGAGGCCCTCACGTGGCAACACTATGTATGGAGAAGATGCACGTGTTAGTACAGGAGGAATTGGCGCGCGTGGTGAATACGCGCGAGGAAACTGAGAGTATCGGTGGAGGAAGTAGCACGGAGGAGGAGGCGACTTGGAGAAGAGTGATGCGACGGAGCTTTGAGAGAATGGATGAAGTGGCACTCAATACTTGTGCCTGTGGGAGCGTCGGAGGCCAGTGTGCTTGCCATCCAATGGAGGTGGCTCTCGGCGGTTCCACCGCCGTTGTCGCTGTGCTCACGCCGGATCATATAGTCGTTGCCAACTGCGGTGACTCACGCGCCGTCCTCTGTCGAGGAGGAAGGGCCATTCCGCTTTCCAATGATCACAAGCCTGATAGAATTGATGAACTAGCAAGGATCGAAGCTGCAGGAGGACAGGTGATTTTCATAGATGGAGCTCGTGTTAAAGGCATCCTTGCAATGTCCCGTGCAATTGGCGACAAATATCTCAAGTCAGTTGTAATATCAGAGCCAGAAATTACCTTCACCAAAAGAGAACCTGATGATGAATGTTTAATACTTGCAAGTGATGGTTTGTGGGATGTTCTTTCAAGTGAGTTGGCTTGTGAGATAGCTCGTGAATGTCTCCAGGAAACGGTCGCTGCTTCTAGCACTACAATAGATCTCAACGCCTTGCCTCAAATTGAAGAAGGGGCTGGAACTTCATATACCTCTCGTAGTTCAGTTGCTGCAGCACTGCTTACTCGTCTTGCTTTGGGGCGGAAAAGCACCGACAATATCAGTGTCATAGTTATCGATCTAAAGAGGAGCTAA ATGACGGAGGTTTACTGTAGAATGCCAAGTGATGATTATATAGGTTCGCCGGCCAAATGCCGAGAGCGCCGGCGCCGTAGAATAGAAATGAGGCGATTAGCAGCAGTACTGTCGGCGAAACCCTCGCCATCGCCGTCGACCAGTCACCACCACCGGAAGGAGAACCAAACTGAGAGTTCCGGTTTTGAGAAGAAGCGTGTTCGGAAGACGGACGGCGGCGACACTCCGGAGGTTTTAACGTCTTCGTCTTCGGGGGAGGACGTGAACGCTGTAGTTGCTTCATCGTCGGTACCTCAGCCGGTGTTCGGGATGATGTCGGTATCTGGTAGATCACGTGAGATGGAGGACGCAGTATCGGTGAGCACGTGCCTTATTGGTCCAGAAAGGCGACTACCGGTGCATTTCTTCGCCGTCTATGATGGACATGGAGGCCCTCACGTGGCAACACTATGTATGGAGAAGATGCACGTGTTAGTACAGGAGGAATTGGCGCGCGTGGTGAATACGCGCGAGGAAACTGAGAGTATCGGTGGAGGAAGTAGCACGGAGGAGGAGGCGACTTGGAGAAGAGTGATGCGACGGAGCTTTGAGAGAATGGATGAAGTGGCACTCAATACTTGTGCCTGTGGGAGCGTCGGAGGCCAGTGTGCTTGCCATCCAATGGAGGTGGCTCTCGGCGGTTCCACCGCCGTTGTCGCTGTGCTCACGCCGGATCATATAGTCGTTGCCAACTGCGGTGACTCACGCGCCGTCCTCTGTCGAGGAGGAAGGGCCATTCCGCTTTCCAATGATCACAAGCCTGATAGAATTGATGAACTAGCAAGGATCGAAGCTGCAGGAGGACAGGTGATTTTCATAGATGGAGCTCGTGTTAAAGGCATCCTTGCAATGTCCCGTGCAATTGGCGACAAATATCTCAAGTCAGTTGTAATATCAGAGCCAGAAATTACCTTCACCAAAAGAGAACCTGATGATGAATGTTTAATACTTGCAAGTGATGGTTTGTGGGATGTTCTTTCAAGTGAGTTGGCTTGTGAGATAGCTCGTGAATGTCTCCAGGAAACGGTCGCTGCTTCTAGCACTACAATAGATCTCAACGCCTTGCCTCAAATTGAAGAAGGGGCTGGAACTTCATATACCTCTCGTAGTTCAGTTGCTGCAGCACTGCTTACTCGTCTTGCTTTGGGGCGGAAAAGCACCGACAATATCAGTGTCATAGTTATCGATCTAAAGAGGAGCTAA MTEVYCRMPSDDYIGSPAKCRERRRRRIEMRRLAAVLSAKPSPSPSTSHHHRKENQTESSGFEKKRVRKTDGGDTPEVLTSSSSGEDVNAVVASSSVPQPVFGMMSVSGRSREMEDAVSVSTCLIGPERRLPVHFFAVYDGHGGPHVATLCMEKMHVLVQEELARVVNTREETESIGGGSSTEEEATWRRVMRRSFERMDEVALNTCACGSVGGQCACHPMEVALGGSTAVVAVLTPDHIVVANCGDSRAVLCRGGRAIPLSNDHKPDRIDELARIEAAGGQVIFIDGARVKGILAMSRAIGDKYLKSVVISEPEITFTKREPDDECLILASDGLWDVLSSELACEIARECLQETVAASSTTIDLNALPQIEEGAGTSYTSRSSVAAALLTRLALGRKSTDNISVIVIDLKRS
BLAST of CmaCh18G012020.1 vs. Swiss-Prot
Match: P2C75_ARATH (Probable protein phosphatase 2C 75 OS=Arabidopsis thaliana GN=AHG1 PE=2 SV=1) HSP 1 Score: 401.0 bits (1029), Expect = 1.6e-110 Identity = 236/429 (55.01%), Postives = 295/429 (68.76%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. Swiss-Prot
Match: P2C24_ARATH (Probable protein phosphatase 2C 24 OS=Arabidopsis thaliana GN=At2g29380 PE=2 SV=1) HSP 1 Score: 281.6 bits (719), Expect = 1.4e-74 Identity = 165/319 (51.72%), Postives = 199/319 (62.38%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. Swiss-Prot
Match: P2C30_ORYSJ (Probable protein phosphatase 2C 30 OS=Oryza sativa subsp. japonica GN=Os03g0268600 PE=2 SV=1) HSP 1 Score: 267.7 bits (683), Expect = 2.1e-70 Identity = 191/447 (42.73%), Postives = 247/447 (55.26%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. Swiss-Prot
Match: P2C68_ORYSJ (Probable protein phosphatase 2C 68 OS=Oryza sativa subsp. japonica GN=Os09g0325700 PE=2 SV=2) HSP 1 Score: 264.6 bits (675), Expect = 1.8e-69 Identity = 178/419 (42.48%), Postives = 220/419 (52.51%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. Swiss-Prot
Match: P2C78_ARATH (Probable protein phosphatase 2C 78 OS=Arabidopsis thaliana GN=At5g59220 PE=2 SV=1) HSP 1 Score: 263.5 bits (672), Expect = 4.0e-69 Identity = 173/397 (43.58%), Postives = 222/397 (55.92%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. TrEMBL
Match: A0A0A0L8I0_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_3G178550 PE=3 SV=1) HSP 1 Score: 635.6 bits (1638), Expect = 4.3e-179 Identity = 340/424 (80.19%), Postives = 367/424 (86.56%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. TrEMBL
Match: A0A061FZP4_THECC (Phosphatase 2C family protein, putative OS=Theobroma cacao GN=TCM_015028 PE=3 SV=1) HSP 1 Score: 491.9 bits (1265), Expect = 7.7e-136 Identity = 278/426 (65.26%), Postives = 326/426 (76.53%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. TrEMBL
Match: W9S9E8_9ROSA (Uncharacterized protein OS=Morus notabilis GN=L484_012946 PE=3 SV=1) HSP 1 Score: 481.1 bits (1237), Expect = 1.4e-132 Identity = 270/428 (63.08%), Postives = 319/428 (74.53%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. TrEMBL
Match: A0A0B0PZ88_GOSAR (Putative phosphatase 2C 75-like protein OS=Gossypium arboreum GN=F383_10871 PE=3 SV=1) HSP 1 Score: 475.7 bits (1223), Expect = 5.7e-131 Identity = 275/427 (64.40%), Postives = 313/427 (73.30%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. TrEMBL
Match: A0A067FQ73_CITSI (Uncharacterized protein OS=Citrus sinensis GN=CISIN_1g013591mg PE=3 SV=1) HSP 1 Score: 468.8 bits (1205), Expect = 7.0e-129 Identity = 272/443 (61.40%), Postives = 323/443 (72.91%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. TAIR10
Match: AT5G51760.1 (AT5G51760.1 Protein phosphatase 2C family protein) HSP 1 Score: 401.0 bits (1029), Expect = 9.0e-112 Identity = 236/429 (55.01%), Postives = 295/429 (68.76%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. TAIR10
Match: AT2G29380.1 (AT2G29380.1 highly ABA-induced PP2C gene 3) HSP 1 Score: 281.6 bits (719), Expect = 8.0e-76 Identity = 165/319 (51.72%), Postives = 199/319 (62.38%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. TAIR10
Match: AT5G59220.1 (AT5G59220.1 highly ABA-induced PP2C gene 1) HSP 1 Score: 263.5 bits (672), Expect = 2.2e-70 Identity = 173/397 (43.58%), Postives = 222/397 (55.92%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. TAIR10
Match: AT1G07430.1 (AT1G07430.1 highly ABA-induced PP2C gene 2) HSP 1 Score: 258.8 bits (660), Expect = 5.5e-69 Identity = 167/396 (42.17%), Postives = 222/396 (56.06%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. TAIR10
Match: AT3G11410.1 (AT3G11410.1 protein phosphatase 2CA) HSP 1 Score: 258.1 bits (658), Expect = 9.4e-69 Identity = 157/341 (46.04%), Postives = 203/341 (59.53%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. NCBI nr
Match: gi|659077298|ref|XP_008439132.1| (PREDICTED: probable protein phosphatase 2C 75 isoform X1 [Cucumis melo]) HSP 1 Score: 649.0 bits (1673), Expect = 5.4e-183 Identity = 347/422 (82.23%), Postives = 374/422 (88.63%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. NCBI nr
Match: gi|778679392|ref|XP_004148120.2| (PREDICTED: probable protein phosphatase 2C 75 [Cucumis sativus]) HSP 1 Score: 635.6 bits (1638), Expect = 6.2e-179 Identity = 340/424 (80.19%), Postives = 367/424 (86.56%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. NCBI nr
Match: gi|1009122413|ref|XP_015877991.1| (PREDICTED: probable protein phosphatase 2C 75 isoform X1 [Ziziphus jujuba]) HSP 1 Score: 498.8 bits (1283), Expect = 9.0e-138 Identity = 284/428 (66.36%), Postives = 328/428 (76.64%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. NCBI nr
Match: gi|590672099|ref|XP_007038514.1| (Phosphatase 2C family protein, putative [Theobroma cacao]) HSP 1 Score: 491.9 bits (1265), Expect = 1.1e-135 Identity = 278/426 (65.26%), Postives = 326/426 (76.53%), Query Frame = 1
BLAST of CmaCh18G012020.1 vs. NCBI nr
Match: gi|743856796|ref|XP_011030010.1| (PREDICTED: probable protein phosphatase 2C 75 [Populus euphratica]) HSP 1 Score: 484.6 bits (1246), Expect = 1.8e-133 Identity = 275/416 (66.11%), Postives = 315/416 (75.72%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this mRNA:
GO Assignments
This mRNA is annotated with the following GO terms.
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following exon feature(s) are a part of this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
Analysis Name: InterPro Annotations of Cucurbita maxima
Date Performed: 2017-05-20
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