CmaCh10G009240 (gene) Cucurbita maxima (Rimu)
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.CTCTTCTTCTTCTAGCTCGTCTCAATTGCCACGCGTTCTTCCATGGCCCAATCACCTCGCTTCCTCTCTCTCTCTCTCTAGCTTCTGTAAACTTCTTTCCCTCTCTCTTAATGTTCTTCTGGATCAGGTGGGTGTTCCCTAAATTCATCTGAAATTTCACATTTCAATCGAATGCTCCCCCTGCCGCCGCTGCCGCTGCCGCCAATTTCAAGCGGTTGCGGTTGTGGGAGAGCTTAACGAGCGGGTTGGGATTGGGATTTATTCTTCCTTCTTCTTTTCCCTCTGTACGCACCCATGTCTCCCGTCAAGTTAATTTCTTCTGTAATCTCTCTCTCCCTCTCTCCATTTACCGTTCTTGTTGTTCTTGTTCTTATGATCTTGATTTATGAATCCACCCCATCTCTCGTTTGGGGTTTTTGATCTGTTGATTATGTTTTCTGGGATTTTTGGCGGTTCTTGTGTTAGTTGAGGATGTGATGCACTGTTTGATTCCTTTACCATTTGGGGTATCTTTAGGTTCAATATTCATGCTATGCTCCTGGAAAATCGTGTTAAGCGTTGATTAATTGGATATTATGGAGAATTTGGAATCGGTCTGTTTGAACAGTGGAGGAACTTTCTCTGTTTCTTAATTGTTTAGAGTGTTTCTCGTGTTATTTAGTTTTTATTTGGCCAACTAAACTGCTGTTGATACAGGGAGAAGGAAACTTTTCTAGCACAATGGCGGAGAACGGTTTTCCGAATGCAACTTCCCTGTTGAACTCTGAGAAGGCGGTCCAGGAGCTTCTTCAACGGTCGCCATTAATGGAGACTGATGAGCATCTTATTGAGTTTTCAGAGGCTTTGAGAAGTATGTGTATCACAGTTTTGTTTCATATATTTTACTGATTCATTTGTGTTTGCTATTGAATATGAGTTGGTTAAGATATGCTGCTTATATTATTTCTTTAATCTTTAGCTGTTGCAAAAGCATTAAGAAGGGCAGCTGAAGGAAAGGCTGCTGCACAAGCTGAGGCGGCTGAATGGAAGCGCAAATTTGAACTGGAGAGGACAAGGAATCTTCAACTTGAACATAAAGGTTTTTCTTATAGAATTTGTTGTGTTATTTGGAATGTATTTGTTGATGTTTTCTTGCTTAGTGTTTAGAAAGTATCTGTAATGGCCAAGCCCACTGTTAGTAGATATTGTCTTTAGCCTTTCGGGCTTCCTATTAAAGTTTTTAAAATGCGTCTGCTAAGAAAAGGTTTCCACGCTTTTCCTTTTGGGTTTCCCCTTAAGATTTTTAAAATGCGTCTACTAAGGAGAGGTTTCCACACCCTTGTAAAGAAGGTTTTTAAAACGTGTTTGCTAAGGAGAGGTTTCTACACCCTTATAAAGAAGGTTTTTAAAACACGTTTGCTAAGGAGAGGTTTCCACACCCTTATAAAGAAGGTTTTTAAAATGCGTTTGCTAAGGAGAGGTTTCCACACCCTTATAAAGAAGGTTTTTAAAACGCGTTTGCTAAGGAGAGGTTTCCACACCCTTATAAAGAAGGTTTTTAAAACGTGTCTGCTAAGGAGAGGTTTCCACCCTTATAAAAAATGCTTTGTTCTTCTCCTCAACCGATGTGGGATCTCATAATCCACCCCCCTTCGAGGCCCAGCATCCTCGTTGGCACTCGTTCCCTTCTCCAATCGATGTGGGACCCCCCAATCCACCCCCCTTCGGGGCCTAGCGTCCTTGCGGCATACCCCCTCGTGTCCACTTCTCCCCAACTGATGTGGGATCTCATATTCTACCCCCCTTCAGGGCCCAACGTCCTCGCTGGCACTCATTCCCTTTTCTAATCGATGTGGGACCTCCAAACCACCCCCTTCGGGGCCCAACGTCCTTGTTGGCACACCGCCTCGTGTCCATCTCCTTCGGGGTTCAGCCTCATTGTTGTCACATCGCTCGGTGTCTGGCTCTGATACCATTTGTAATGGCCAAGTCTACTGCTAGCAGATATTGTTTTCTTTGGGTTTTCCCTTTCGGGCTTCCCCTCAAGGTTTTTAAAATGCGTCTACTAGGGAGAGGTTTCCACACCCTTATAAAGAATGCTTCGTTCTCCTCTCCAACCAATGTGGGATCTCACAGTACCAATATAATGCTTATAAATGCCTTATATGTTTTAAGGTGCAGATCTTTTATATTTCGTTCAAGAAAGCTGGATGAACTTCATCCCAGTTTTCTTCAGTTTGATGTCAAAATGGTTTTTGTTTCAGTTTGTGGTGAAGTAGAACCCATTTCTTTCAAATTTAAGAGGTTCTTGACTCATTGGACATTTCACCTTTAATTAAATAAATTCTCTCCAATTTCTATCCAACTAATGACATTAACTTTCGTCAAATGAACATTGCTTCCTTTTCCCAAAGATATGACTTTTGGGCAAAGTAGGTAAGATTTCATTTTTAGAAATAGTGTTTGATTGAAAGTAACTTTTTACCTTACTTTAAATTCAATATGACATCACTAATGTTCAAATCAAAATGTAATTTGGAGAAATGTCATTCAAATTTCACATAGAACATGTGCAAAAGGCATATTAACTGTACTGTGTGTAAATTATTAAAAGTAGAGCCCTTTTTTGGTGTTCTTTTCCTTAAAACTACTTATACTTGTGCATTATAGGGCAGCCACCTGCAGAACGCAACGGTTATGATAGTAAGAGATCAAACAATCTAACCCCACAAGCCACCGAGCAATCAGACTGGTGTTGTGGATCAAATGGAATATGTTCTCATGAAGTTCTTCAAGATGGGGACGTCGATTCTGTTTCTCAAAAGGGGTCCGGAAAATATACTCGAAAGGTATTTGAGTATCTGCTTACCTGTTCTTATCATTGTTATTTTTTGAGTCATGCATGTCTCTGCTGCTTCTTTCTGGTTATAGAGATGGCTTTGATATTTCATTAGTTATTTTTATTGCCAAATTTCCATTAAGAAGATGAAGAAACTAATTACATATTTCTACAATTGTTAATCCCATATGAGTTTGCAATTACAGGCACCATTTGAACTTTCATGGGGCTGCGATGGCGAGCATAGTGATCGACACAAGCACGATGTTGTCTCCTTTGAAAAAGGAAACATAACAACTGCAGAGCGTAGCAGTAGACAGGTTTGATTCTACTGAACATAGATCGACACATTGTGATGGCTTTCACAAATTACATGTCAATAACATAGAATTCTTAGTTTGTTCGTTTTTTTATTTTTTTAATCTCTACCTAATATTTTATTTGATTTTCGGATTATTTCAACCAAGTCCACTCTTGATAGAACATTTTCATTGCAGATCTTTTTGAAGTGGGAATCGCAACCTCAGACTGTGCTTATATTGACCAAACCAAACTCAGTATCAGTTCGAATTCTTTGTTTTGAGATGATCAGGTGTGTATGCCTCTTTTTTAGTAGCTAAATCAGTTTTTCTAATTCTTTTCATTTTATGGGAGCAAATAAGTAAAAATCATCATGCATTTCAAGGATAAGTATGGAAGTAATGATGTTGAATAACAAAAATATTCATCCTTTTCAAGGAAAAGTATGGAAAAAGTTTCGTTAAATAATGAAAACCGGGACACCGGGAATGTTTGATCCCTTTTTTGCCTAGATCAAAGTTTTTATGCGTCATAACATGTGAGATCCCACATCGGTTGGGGAGGAGAACGAATCATTCTTTATAAGAGTGTGGATACCTCTCCCTCGCAAACGTATTTTAAGAACCTTGAGGGGAAGCCCAAAGAGGACAATTTCTGCTAGCGGTGGGCTTGGGCCATTATAAATGGTATCTCAGAGTTAGACACCGAGCGATGTGCCAGCGAGGAGGCTGAGCCCCGAAGGGGGATGGACAGAAGGCGGTGTGCCAGCAAGGACACTGGGTCCCTAAGGGGAGTGGATTGGGTGGTCCCACATCGATTGTGTGCCACAAGGACGCTGGGTCCCAAAAGAGGTGGATTGAGTGGTCCCACATCGATTAGAGAAGGAAATGAGTGCCAACAAAGACACTGGGCCCCGATGGGGGTGGATTGTGAGATCCCACATTGGCCTCTCCCCAGCAGACACGTTTTAAGAACCTTGAGGGGAAGCCCGAAAGGGAAAGCTCAAAGAGGACAATATCTGTTAACGACGGGCTTGGACTCTTACATAACAAGAGTATCAAATTAATGCAAAAATAATGCTATATTTTCCTTATTCCCATTTTCTATTCCTCCTAGATGGTTGAGAGAGCATAAAGGTCTTCACATTTACGTTGAACCACGCGTCAAAAATGAGCTTCTGACAGAGTCAGACTACTATGATTTTGTCCGGACATGGAAAGATGGTGAGTATGAAACGTTGCTATTACTTTATAGACTTAATGTAAACTTATTATTCTGACTACATCTGTCAATTAGTTTGCGATGTTCATTTAATCAAGGATGGCCTCGAGTTCATATTTGAGCTATGATTTTTATGGCAACCATTTATGGTTTTTGCAACTACTTATTTAATGGCATCGTTGTTCACTCGATTGACCCCTCTTTTCTATCTCTCGACAGACGAGGAAATTTTGCTTCTGCACACGAAAGTTGATCTTGTGGTTACTCTTGGTGGAGATGGAACAGTGCTCTGGGTATGCTGAACAATTTCATTTTCAGGAGTATCTTCTTATTGTTATAGACATTATAACTTGCATTCAATTTTCATGACTGCCTGTCAAGTTTATTAGGACATGGTTGGAACAAATCTGTTCAAGTAAGGTCATGTCTACATATCAAGATGTTTATTAACAACCATGAACTGATGCTTTCATTAGCCATCTTTGTCTAATATAAACATTTAAGTGTATCGTGTAACGTCCCAAGCCCACCGCTAGTAGATATTGTCCTCTTTGGGCTTTCCCTTTCGAGCTTCCCCTCAAAGTTTTTAAAACGTGTCGGCTAGGAAGAGGTTTTCACACCCTTGTAAAGAATGCTTCGTTTTCCTCCCCAACTGACGTGGGATCTCACAATCCACCCCCCTTCGAGACCCATTGTCCTCGTTGACACTCGTTCCCTTCTCCAATCGATATAGGACCCCCCAAATCCATCCCCTTCGGGGCCTAGCGTCCCTACTAGCACACTGCCTCGTGTCCACCCCCTTTGGGGCTTAGCCTCCTTATTGGCACATCGCCCATTGTCTGGCTCTGATACCATTTGTAACAGCCCAAGCCCACCGCTAGCAGATATTGTTTTTTTTGGGCTTGCCCTTTTGGGCCTCCCTTCAACGTTTTAAAATGCATTTGCTAGAGAGAGGTTTCCACACTCTTATAAAGAATGCTTCGTTATACTTCCCAACCAATGTGGATTCTCACATACCGCCTTACATATTTGACTGGGAAGGATGTTATCCCTTGTTTCTAAACACCCCGAAAGATCTTTCTTAATGAATTGATTGAATATTTTGCACTTTAATCCGTGTGCCTACCAAAAAAGAGGAGTACAGTTAGCTTGTCAAGTCTTGCTACTTTTGTTGTTAACTATGCCCTTAACAATTAATGACATTTAGTGTTTTTGTTAGTAAGAATCATGACTTCCTTATTAGATGATTTTATGACTTCTTGAGTTTTATACTTCGAAATATCTTTTCTGGATTAATTTGGCACTTGATTGCAGGCAGCATCAATGTTTAAAGGACCAGTTCCTCCTCTTGTTCCATTTTCTTTAGGGTCTCTGGGTTTTATGACTCCTTTTCGTATCCTTTGGTTCTGAGGAAGTATTATTTACCATAGAAATTAATTTATTGTTACGAACCGGAATGGAATTGATTTGCTTCCCAAAGACCTGTATGATAGTTTCTTTTATGTTTAAAAGTTATTCTTAAAGTAACATATTACACCATGACGTTTATTTTCGTTCATTGCTGAAAAGTTTCTTTAGCACGCTCCAGACAGTGAGCATTACAGAGAATGTTTGGATTCAGTTCTAAAGGGTCCAATTAGTATCACATTGCGACACCGACTGCAGTGCCATGTTATTCGAGATGCAGCAAGAAATGAATATGAAACGGAAGAACCGATACTCGTGCTGAATGAGGTTACAATTGATCGTGGAATGTCGTCATACCTTACGAATCTGGAATGTTATTGTGACCGTTCCTTTGTAACTTGTGTCCAAGGGGATGGTCTGATTCTTTCAACTACTTCGGGCAGCACAGCGTACTCATTGGCTGCTGGAGGATCGATGGTTCATCCTCAGGTATGTTCCTTTGGTTGACTGGTTTTCAGATAGTAGTTTTATCATGGTCCGTGCGACATTTCTTAAAAGCTACTGCGACATTCACAGGTTCCCGGCATTCTATTTACTCCGATATGCCCGCACTCCTTGTCTTTTCGGCCCTTGATATTTCCCGAATACGTAACGATACGCATACAAGTACCTTTCAATAGCAAGGGGCATGCATGGGCATCTTTTGATGGAAAGGGCAGGAAGGAATTGGGTGCAGGAGATGCACTTGTATGCAGCATGGCACCTTGGCCAGTGCCTACAGCGTGCCAGGTCGACTCGACAAACGACTTCTTGCACAGCATTCATGATGGCCTTCACTGGAATTTAAGAAAGAAGCAGTCTTCCGATGGACCTCGAGACACATGAACGGATCAGGTAGCTTCTTTAACTCCTCGATAGGACGCAGTTGATCTGCTGCAACATATCCTGATTCTGCCTCAAAAACGAATAGATGTAGTAGAGGGGAAAAAGGAGAAATAAAATCACTGAATAACAGTAGTTTTCTTCCATAGTATTTATGGTTTAAGCTCAAGGCTCAAGCTGATGTGAGCCCATATCCTAATAAGTTGCATTATAGAATCAGTGCTGACAAGTTTTTGAATAGTAAGGAATAGCTCATTTTAATCTTACTATGTTCTTAGTATGTATGATTAGAATGTCTAGACAGGCATGGTCCAAAGTAAATTAACACAAGTGAAGCTTGGGGAGCTGTCTCTAAGAAATGTTTTGATATGATTGCTTTGTGTCGTGGTCATGCTTGTTCAAGGCATGTTGCATGTGGCTGCGTGTCGGATGTTTGATTATACTTGTTTAGGGCATATTGTCATGACTGCATGTCCATTCCAAACCCCTTTTTACTTGCTTACAATTTCATGTTTGTTAGGTTTTTACTATTCTTCTTATGTCGGGGTGTATTAACCGTTCACCAAAATCTTGTTTATACCCACCATGGTTAAAATGCCCTAAAATGTACTATACAGGGGAATGCGATTAGTTATCAATTATTTTTGTCCGAG CTCTTCTTCTTCTAGCTCGTCTCAATTGCCACGCGTTCTTCCATGGCCCAATCACCTCGCTTCCTCTCTCTCTCTCTCTAGCTTCTGTAAACTTCTTTCCCTCTCTCTTAATGTTCTTCTGGATCAGGTGGGTGTTCCCTAAATTCATCTGAAATTTCACATTTCAATCGAATGCTCCCCCTGCCGCCGCTGCCGCTGCCGCCAATTTCAAGCGGTTGCGGTTGTGGGAGAGCTTAACGAGCGGGTTGGGATTGGGATTTATTCTTCCTTCTTCTTTTCCCTCTGTACGCACCCATGTCTCCCGTCAAGTTAATTTCTTCTGGAGAAGGAAACTTTTCTAGCACAATGGCGGAGAACGGTTTTCCGAATGCAACTTCCCTGTTGAACTCTGAGAAGGCGGTCCAGGAGCTTCTTCAACGGTCGCCATTAATGGAGACTGATGAGCATCTTATTGAGTTTTCAGAGGCTTTGAGAACTGTTGCAAAAGCATTAAGAAGGGCAGCTGAAGGAAAGGCTGCTGCACAAGCTGAGGCGGCTGAATGGAAGCGCAAATTTGAACTGGAGAGGACAAGGAATCTTCAACTTGAACATAAAGGGCAGCCACCTGCAGAACGCAACGGTTATGATAGTAAGAGATCAAACAATCTAACCCCACAAGCCACCGAGCAATCAGACTGGTGTTGTGGATCAAATGGAATATGTTCTCATGAAGTTCTTCAAGATGGGGACGTCGATTCTGTTTCTCAAAAGGGGTCCGGAAAATATACTCGAAAGGCACCATTTGAACTTTCATGGGGCTGCGATGGCGAGCATAGTGATCGACACAAGCACGATGTTGTCTCCTTTGAAAAAGGAAACATAACAACTGCAGAGCGTAGCAGTAGACAGATCTTTTTGAAGTGGGAATCGCAACCTCAGACTGTGCTTATATTGACCAAACCAAACTCAGTATCAGTTCGAATTCTTTGTTTTGAGATGATCAGATGGTTGAGAGAGCATAAAGGTCTTCACATTTACGTTGAACCACGCGTCAAAAATGAGCTTCTGACAGAGTCAGACTACTATGATTTTGTCCGGACATGGAAAGATGACGAGGAAATTTTGCTTCTGCACACGAAAGTTGATCTTGTGGTTACTCTTGGTGGAGATGGAACAGTGCTCTGGGCAGCATCAATGTTTAAAGGACCAGTTCCTCCTCTTGTTCCATTTTCTTTAGGGTCTCTGGGTTTTATGACTCCTTTTCACAGTGAGCATTACAGAGAATGTTTGGATTCAGTTCTAAAGGGTCCAATTAGTATCACATTGCGACACCGACTGCAGTGCCATGTTATTCGAGATGCAGCAAGAAATGAATATGAAACGGAAGAACCGATACTCGTGCTGAATGAGGTTACAATTGATCGTGGAATGTCGTCATACCTTACGAATCTGGAATGTTATTGTGACCGTTCCTTTGTAACTTGTGTCCAAGGGGATGGTCTGATTCTTTCAACTACTTCGGGCAGCACAGCGTACTCATTGGCTGCTGGAGGATCGATGGTTCATCCTCAGGTTCCCGGCATTCTATTTACTCCGATATGCCCGCACTCCTTGTCTTTTCGGCCCTTGATATTTCCCGAATACGTAACGATACGCATACAAGTACCTTTCAATAGCAAGGGGCATGCATGGGCATCTTTTGATGGAAAGGGCAGGAAGGAATTGGGTGCAGGAGATGCACTTGTATGCAGCATGGCACCTTGGCCAGTGCCTACAGCGTGCCAGGTCGACTCGACAAACGACTTCTTGCACAGCATTCATGATGGCCTTCACTGGAATTTAAGAAAGAAGCAGTCTTCCGATGGACCTCGAGACACATGAACGGATCAGGTAGCTTCTTTAACTCCTCGATAGGACGCAGTTGATCTGCTGCAACATATCCTGATTCTGCCTCAAAAACGAATAGATGTAGTAGAGGGGAAAAAGGAGAAATAAAATCACTGAATAACAGTAGTTTTCTTCCATAGTATTTATGGTTTAAGCTCAAGGCTCAAGCTGATGTGAGCCCATATCCTAATAAGTTGCATTATAGAATCAGTGCTGACAAGTTTTTGAATAGTAAGGAATAGCTCATTTTAATCTTACTATGTTCTTAGTATGTATGATTAGAATGTCTAGACAGGCATGGTCCAAAGTAAATTAACACAAGTGAAGCTTGGGGAGCTGTCTCTAAGAAATGTTTTGATATGATTGCTTTGTGTCGTGGTCATGCTTGTTCAAGGCATGTTGCATGTGGCTGCGTGTCGGATGTTTGATTATACTTGTTTAGGGCATATTGTCATGACTGCATGTCCATTCCAAACCCCTTTTTACTTGCTTACAATTTCATGTTTGTTAGGTTTTTACTATTCTTCTTATGTCGGGGTGTATTAACCGTTCACCAAAATCTTGTTTATACCCACCATGGTTAAAATGCCCTAAAATGTACTATACAGGGGAATGCGATTAGTTATCAATTATTTTTGTCCGAG ATGTCTCCCGTCAAGTTAATTTCTTCTGGAGAAGGAAACTTTTCTAGCACAATGGCGGAGAACGGTTTTCCGAATGCAACTTCCCTGTTGAACTCTGAGAAGGCGGTCCAGGAGCTTCTTCAACGGTCGCCATTAATGGAGACTGATGAGCATCTTATTGAGTTTTCAGAGGCTTTGAGAACTGTTGCAAAAGCATTAAGAAGGGCAGCTGAAGGAAAGGCTGCTGCACAAGCTGAGGCGGCTGAATGGAAGCGCAAATTTGAACTGGAGAGGACAAGGAATCTTCAACTTGAACATAAAGGGCAGCCACCTGCAGAACGCAACGGTTATGATAGTAAGAGATCAAACAATCTAACCCCACAAGCCACCGAGCAATCAGACTGGTGTTGTGGATCAAATGGAATATGTTCTCATGAAGTTCTTCAAGATGGGGACGTCGATTCTGTTTCTCAAAAGGGGTCCGGAAAATATACTCGAAAGGCACCATTTGAACTTTCATGGGGCTGCGATGGCGAGCATAGTGATCGACACAAGCACGATGTTGTCTCCTTTGAAAAAGGAAACATAACAACTGCAGAGCGTAGCAGTAGACAGATCTTTTTGAAGTGGGAATCGCAACCTCAGACTGTGCTTATATTGACCAAACCAAACTCAGTATCAGTTCGAATTCTTTGTTTTGAGATGATCAGATGGTTGAGAGAGCATAAAGGTCTTCACATTTACGTTGAACCACGCGTCAAAAATGAGCTTCTGACAGAGTCAGACTACTATGATTTTGTCCGGACATGGAAAGATGACGAGGAAATTTTGCTTCTGCACACGAAAGTTGATCTTGTGGTTACTCTTGGTGGAGATGGAACAGTGCTCTGGGCAGCATCAATGTTTAAAGGACCAGTTCCTCCTCTTGTTCCATTTTCTTTAGGGTCTCTGGGTTTTATGACTCCTTTTCACAGTGAGCATTACAGAGAATGTTTGGATTCAGTTCTAAAGGGTCCAATTAGTATCACATTGCGACACCGACTGCAGTGCCATGTTATTCGAGATGCAGCAAGAAATGAATATGAAACGGAAGAACCGATACTCGTGCTGAATGAGGTTACAATTGATCGTGGAATGTCGTCATACCTTACGAATCTGGAATGTTATTGTGACCGTTCCTTTGTAACTTGTGTCCAAGGGGATGGTCTGATTCTTTCAACTACTTCGGGCAGCACAGCGTACTCATTGGCTGCTGGAGGATCGATGGTTCATCCTCAGGTTCCCGGCATTCTATTTACTCCGATATGCCCGCACTCCTTGTCTTTTCGGCCCTTGATATTTCCCGAATACGTAACGATACGCATACAAGTACCTTTCAATAGCAAGGGGCATGCATGGGCATCTTTTGATGGAAAGGGCAGGAAGGAATTGGGTGCAGGAGATGCACTTGTATGCAGCATGGCACCTTGGCCAGTGCCTACAGCGTGCCAGGTCGACTCGACAAACGACTTCTTGCACAGCATTCATGATGGCCTTCACTGGAATTTAAGAAAGAAGCAGTCTTCCGATGGACCTCGAGACACATGA MSPVKLISSGEGNFSSTMAENGFPNATSLLNSEKAVQELLQRSPLMETDEHLIEFSEALRTVAKALRRAAEGKAAAQAEAAEWKRKFELERTRNLQLEHKGQPPAERNGYDSKRSNNLTPQATEQSDWCCGSNGICSHEVLQDGDVDSVSQKGSGKYTRKAPFELSWGCDGEHSDRHKHDVVSFEKGNITTAERSSRQIFLKWESQPQTVLILTKPNSVSVRILCFEMIRWLREHKGLHIYVEPRVKNELLTESDYYDFVRTWKDDEEILLLHTKVDLVVTLGGDGTVLWAASMFKGPVPPLVPFSLGSLGFMTPFHSEHYRECLDSVLKGPISITLRHRLQCHVIRDAARNEYETEEPILVLNEVTIDRGMSSYLTNLECYCDRSFVTCVQGDGLILSTTSGSTAYSLAAGGSMVHPQVPGILFTPICPHSLSFRPLIFPEYVTIRIQVPFNSKGHAWASFDGKGRKELGAGDALVCSMAPWPVPTACQVDSTNDFLHSIHDGLHWNLRKKQSSDGPRDT
BLAST of CmaCh10G009240 vs. Swiss-Prot
Match: NADK1_ARATH (NAD(H) kinase 1 OS=Arabidopsis thaliana GN=NADK1 PE=1 SV=2) HSP 1 Score: 744.2 bits (1920), Expect = 9.7e-214 Identity = 371/506 (73.32%), Postives = 428/506 (84.58%), Query Frame = 1
BLAST of CmaCh10G009240 vs. Swiss-Prot
Match: NADK1_ORYSJ (Probable NAD kinase 1 OS=Oryza sativa subsp. japonica GN=Os01g0957000 PE=2 SV=1) HSP 1 Score: 720.3 bits (1858), Expect = 1.5e-206 Identity = 352/497 (70.82%), Postives = 405/497 (81.49%), Query Frame = 1
BLAST of CmaCh10G009240 vs. Swiss-Prot
Match: NADK3_ORYSJ (Putative NAD kinase 3 OS=Oryza sativa subsp. japonica GN=Os05g0388400 PE=3 SV=2) HSP 1 Score: 688.0 bits (1774), Expect = 8.3e-197 Identity = 335/492 (68.09%), Postives = 392/492 (79.67%), Query Frame = 1
BLAST of CmaCh10G009240 vs. Swiss-Prot
Match: NADK2_ORYSJ (Probable NAD kinase 2, chloroplastic OS=Oryza sativa subsp. japonica GN=Os11g0191400 PE=2 SV=1) HSP 1 Score: 263.1 bits (671), Expect = 6.6e-69 Identity = 139/325 (42.77%), Postives = 209/325 (64.31%), Query Frame = 1
BLAST of CmaCh10G009240 vs. Swiss-Prot
Match: NADK_MOUSE (NAD kinase OS=Mus musculus GN=Nadk PE=1 SV=2) HSP 1 Score: 262.7 bits (670), Expect = 8.6e-69 Identity = 133/335 (39.70%), Postives = 213/335 (63.58%), Query Frame = 1
BLAST of CmaCh10G009240 vs. TrEMBL
Match: A0A0A0M068_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_1G615160 PE=3 SV=1) HSP 1 Score: 976.5 bits (2523), Expect = 1.3e-281 Identity = 474/520 (91.15%), Postives = 496/520 (95.38%), Query Frame = 1
BLAST of CmaCh10G009240 vs. TrEMBL
Match: B9HNY6_POPTR (ATP-NAD kinase family protein OS=Populus trichocarpa GN=POPTR_0009s05620g PE=3 SV=2) HSP 1 Score: 807.7 bits (2085), Expect = 8.0e-231 Identity = 400/532 (75.19%), Postives = 457/532 (85.90%), Query Frame = 1
BLAST of CmaCh10G009240 vs. TrEMBL
Match: A0A068UNU2_COFCA (Uncharacterized protein OS=Coffea canephora GN=GSCOC_T00028550001 PE=3 SV=1) HSP 1 Score: 806.2 bits (2081), Expect = 2.3e-230 Identity = 398/526 (75.67%), Postives = 445/526 (84.60%), Query Frame = 1
BLAST of CmaCh10G009240 vs. TrEMBL
Match: W9RHY3_9ROSA (NAD(H) kinase 1 OS=Morus notabilis GN=L484_015318 PE=3 SV=1) HSP 1 Score: 804.7 bits (2077), Expect = 6.7e-230 Identity = 405/539 (75.14%), Postives = 451/539 (83.67%), Query Frame = 1
BLAST of CmaCh10G009240 vs. TrEMBL
Match: B9RIE7_RICCO (Poly(P)/ATP NAD kinase, putative OS=Ricinus communis GN=RCOM_1578630 PE=3 SV=1) HSP 1 Score: 798.9 bits (2062), Expect = 3.7e-228 Identity = 397/532 (74.62%), Postives = 455/532 (85.53%), Query Frame = 1
BLAST of CmaCh10G009240 vs. TAIR10
Match: AT3G21070.1 (AT3G21070.1 NAD kinase 1) HSP 1 Score: 737.6 bits (1903), Expect = 5.1e-213 Identity = 371/512 (72.46%), Postives = 428/512 (83.59%), Query Frame = 1
BLAST of CmaCh10G009240 vs. TAIR10
Match: AT1G21640.2 (AT1G21640.2 NAD kinase 2) HSP 1 Score: 260.4 bits (664), Expect = 2.4e-69 Identity = 141/341 (41.35%), Postives = 211/341 (61.88%), Query Frame = 1
BLAST of CmaCh10G009240 vs. NCBI nr
Match: gi|449442539|ref|XP_004139039.1| (PREDICTED: NAD(H) kinase 1 [Cucumis sativus]) HSP 1 Score: 976.5 bits (2523), Expect = 1.9e-281 Identity = 474/520 (91.15%), Postives = 496/520 (95.38%), Query Frame = 1
BLAST of CmaCh10G009240 vs. NCBI nr
Match: gi|659099061|ref|XP_008450412.1| (PREDICTED: NAD(H) kinase 1 [Cucumis melo]) HSP 1 Score: 970.3 bits (2507), Expect = 1.3e-279 Identity = 471/520 (90.58%), Postives = 496/520 (95.38%), Query Frame = 1
BLAST of CmaCh10G009240 vs. NCBI nr
Match: gi|645241978|ref|XP_008227335.1| (PREDICTED: NAD(H) kinase 1 isoform X1 [Prunus mume]) HSP 1 Score: 851.7 bits (2199), Expect = 6.9e-244 Identity = 416/521 (79.85%), Postives = 463/521 (88.87%), Query Frame = 1
BLAST of CmaCh10G009240 vs. NCBI nr
Match: gi|645241981|ref|XP_008227336.1| (PREDICTED: NAD(H) kinase 1 isoform X2 [Prunus mume]) HSP 1 Score: 845.5 bits (2183), Expect = 4.9e-242 Identity = 413/514 (80.35%), Postives = 457/514 (88.91%), Query Frame = 1
BLAST of CmaCh10G009240 vs. NCBI nr
Match: gi|764545484|ref|XP_011459496.1| (PREDICTED: NAD(H) kinase 1 [Fragaria vesca subsp. vesca]) HSP 1 Score: 830.5 bits (2144), Expect = 1.6e-237 Identity = 410/520 (78.85%), Postives = 455/520 (87.50%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
The following mRNA feature(s) are a part of this gene:
Analysis Name: InterPro Annotations of Cucurbita maxima
Date Performed: 2017-05-20
The following gene(s) are orthologous to this gene: The following gene(s) are paralogous to this gene:
The following block(s) are covering this gene:
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