CmaCh11G003340 (gene) Cucurbita maxima (Rimu) v1.1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGGGACCAATGGATTATGAAAGTAACAGTTGGATATGGGATGGTGTGTGTTACTACCCACATTTGTTTGGTGGTTTGATGCTCACAGCGGCCTTGCTTGGATTTTCTACGAGTTATTTCAGCGGGATTGGAGTACCATCTTTGCCATTCTTCTGGTCTGATTTTGGTATCTTCCAGAAAAGAAAGAGCGAAAAGAAGCGCATTCGGGTCTACATGGATGGGTGTTTTGATCTCATGCATTTTGGTCACGCCAATGCGTTGAGGCAAGCGAAGGCTTTGGGAGATGAGTTGGTGGTGGGTGTTGTAAGTGATGAAGAAATCATAGCGAATAAGGGTCCACCAGTATTACCAATGGAAGAAAGGTATCCGCTGAAATCTTATTTATGTTCTACCCATCTTCACTCCTTATAGTTTGTAGGTTGTCTTAATCTTCTTAGATATTTATACATTCTATTTTATTTATACTTTTTGTTGTTGGAATTATTTTTAACTTTTCATAACCCACACACCTGAAGTCACAAAATTTAAAATGTTTACAGAACTAAAATTTTACCTCAATAATTTGCTCAGCTTCTTCTAACCGAAGGCTCCTTTTAGGCTGGCTCTCGTTAGTGGTTTGAAGTGGGTGGATGAAGTTATTTCCAACGCCCCATATGCAATTACTGAGCAATTCATGAACAGACTCTTTAATGAGCATAAGATTGACTATATTATTCACGGAGATGATCCATGCCTACTTCCAGATGGGACTGATGCATATGCCTTAGCTAAGAAAGCTGGACGGTTCAAGCAGATCAAGCGTACTGAAGGAGTCTCCAGCACCGATATCGTAGGTACTGTCTTTCAATTTTCTCCAAGCAGTTTTTGGTTGGTGCCACTTTGTCATCCTCTCTTCTCTTGTTTTCCCCATTCATCTCCTTGCTACATATTTTGGTCACTGTCACGAGAAACATAACTTTGTTTTGCATTTTCTTGTATTGCCTTTTTATCCTTGCATTAATCTCTTGATGTAGGAAGAATACTCTCTTCCATTAATGATGCTATGGATTCAGAAGATCACAATGCAACATCCATGAATGGAGATGCTAAAAAAGGAAGTCCGTCCCATGGTGCCCTTTCTCATTTTCTACCAACATCACAACGTATTGTACAGTTTTCAAATGGAAGGGTATGGTTCTCTAGTGACCAAAAGATTCTTGAAGCCTTATACAGGAGGATTGTTTTTCAATAGATACTAATTCACCTATCTTGTCCATACAGTGTTTGTTGTGACAAAAAATGGAACAACACAATCTGTAACCGATGCATCTAATGAAATATTGATATTATATTTAGTTTTGAGGGTTAGATGATAGACCCAGTTATTTAAGTTGGTTATCTCACTTTTGTCTATGAAATGATTTCCGTTTCTTATCAATAGAAGTGTTAGGAGGAAACATGTGAGTAGGGAGAAACTAATATATTGTGCATGTAGCGTGTTGTAATGGTGAGCCCTTAAATGAGTTGGTAACTGATGCGGGAGGGCATCTAGAATTCTTTTGTGACGGGAGAACTTATGCTTTTGCCTGGATTGGGTGGTTGTTAGGAAGAGATAGGGACTCTTTAAATGTCACTTAAGCTGCATTTCTGATAATCTTCTGAAATATAGTAGATTCTATCGTTTAGTTTGCTTGCGGTGGGTCTATTCTAATATTTTTTAGTTACATTAAATTTCTAGTTGGAAATTTATTTTTTTATCTTACATCTATTCATCTATCAAGAACTTGACTGGATAACATGAAAGGGCAATTCCTTGGTAGAAAATATCTTTGGCCTCTATATTATACAGGCTGACATAAAAAGTCTTTGGAAATTTGTTCCTTTCATCCCTCTAGGAATTCATTCTTCTAGCTTCTGTTTGTATCTGGCCTCTGTATTAATCTATGTCCATGTCCCGCGAGCAAACATGATATTCTTCCCCTCTTTGAGTTTTTCTAGCTTAGCCTCCGCTTTGTAGTAAATTCTGTTTTGCGGCCAATCCATTAATGCTAACAAATTATCATATCCAATTTTAGGGGCCTGGACAAAATGCTCGTATTGTGTACATTGATGGGGCTTTTGATCTTTTTCATGCAGGACATATTGAGGTATGACGCTTCACAGTTTTTACAATCTCTTCTCTATTCATCCACCACTCCAGATTGCTTTTATGTTAAACTTAACATTGGTTTGGTTTTTGATATTTTATGCTTACATGTGTCTGTGTGCATAACAATTCTTTGCTTTGAATTTTTTCAATACTCCTCCATTTAAAACAATAGATTTTAGCTGGGGAAGATTATGTCTCTAGGATGCTGATTCCAAAACTGTGCATAAGCTTTAAAAGTTTGACTAGGATTCTTAGACCTTATGATTCAAAGAGGTCACTTCCTTTGTTGGTAAAAGCAAGCCTTCACGATGAACACCTAAACATTGCAGAGGGTAGTAGTGCTAGTAGCTGTGTTACACATAGTGTATGTCCGACAATGGTTAAAAGACAGCAGGATTAGTTTGAGTAAGATCCAACTCGGTAAGTGTGAGTCATTTGGCAGCTACAGATTTAATTATGAGCTTGGATGGGAATGTTATTGACCATGAGCTAATACATTTGCAACATTTTCTTTCTTTTAGAGTGAACAGTGGCAATTAAGTATTCTCTGCATTCTTTTCCACTATTTCAATTCATTTATGTATGAATTTGATTTGTGCTTTACAGGCTACGTAATAATAACTGAATAATTTCTCAGGAATAACCCCATTTTGTGATCGCATCATCCTCCTTCTTTTCAGATTCTCAAGAGTGCTAGGCAGCTTGGAGACTTTTTACTAGTTGGCATACATAATGATCAGACTGTGAGGTATCTTATTTTCTTTTCCTTCTCAATATTTGACTTGTTTGTACTTTTTCAATCAACTTTTTGGCTTGTTTCTCTCATCCGGAAGTTTTGAATACCTTTCCTGAGACTATGGCTATGGACTTTTCCCTTAGATTTTAATGAGCTAGCAAAGTAGAAGTTAATATCTCATTATCTCCTGCAGTAAACTCAGAGGGAAGCAATTTCCAATTATGCATTTGCACGAACGTAGTCTCAGTGTGCTGGGTTGCCGGTATGTCGATGAGGTGATCATCGGTGCACCTTGGGAAATTACAAAAGACATGGTAAGTTGTGTGCTCCTGTTTTGGTTTTTCCTTAAACATTATACCCATTCATCCACATTGCTTGTTGGAAGCCCCTTTTTCCCTGATGGGTGAGAAGCAAAGAAATGGATAGAATTTAGACTCTTATGTCTGCATCCAATGATTGCTTATGAGAGTCGCTCTCTTTGATCATCAACTGTGAGGTTCTAATTACTGAAGCATTCTTTTTCTGGCAGATAACTACTTTCAATATATCTTTAGTTGTGCATGGGACTGTTGCTGAAAATAACTCTTTTGCTGTAAGTTTAGCTATTTCACTGTAGATGAGATTTTTTTTTTTTTTTTTTTTTTTTTTTAAATTTTAAATTTAGCCTCTTTAACTTTCTTATTTACAAAATCATGACAAGATGAGCTCGTCTGTTTCAGGGCGACAGTGATCCGTATGCCGTTCCAAAGAGTATTGGAATTTTCAAGTTGCTTGAAAGCCCTAAAAACATTACCACTACTTCAATAGCCAAAAGGATAGTTGCCAATCACGATGCTTTTAAGGTACTCACTCTTATGCTCTTATTTCTTGAGCCTAAACTCCAGAAAAGTAATCTGCTTTGTATTTTTATAGAAATTTGAATGTGTTATTAGCTATCAATATAGACTAGATTTTCAAAACTGAATTACCGAACTTTCATTCAGAAGAAGTGAAAGAATCCAAATAATAACAAAAGAACTTCGCCACTTAAGCCCACAAAGTGATGTTGTACTTAATAAAGGTCCAAACATCAACCTCAGACCTCTCAAATCCTCTAAAGACCTCATCATTAAAGAATAATTTTAGAAGTCAAATTGGCAACGCCTTTATATTAACCAGATACTTGGGAATTCCTGTTTCTGCCTTTTAGACGTTATACTCTGACTAATGCCTAATCTAATGAATTTGTTGGACTTTTCATTTCTTGTGTATTTACAATATGCAGAAACGAAATGCCAAGAAAGTGGAAAGCGAGAAGAAATACTATGCAGAGAAGAAATACATATGTGGGGAATAAATGGTTTTGGTTTACAATTTACTATTCGGCCTTAGGAATGTGGTTGTTGTAGCTCTTGTTTCTGAAGATCTTCGGTACAGATTTTTCCCATGAAGATAGGTTTAGAACATGGAAGGAGTTGCATCCTTAAGAATTTGACATGGCAGTTAACTTTGTAATTTCACTGTAGGCGCTATAAGCTGCAGCTAGAATAGATCAAAATTGGGACACCAAAACTCTCAACTACACAAACAATTTGCTATTATGCGTGTAAACGTCCAAATCGTATAGGTACCATCTTGTGCCTTTATTGGCTTTGTTTTTTCTTTTCTTTTATTTTTTCAGGTAATTTAGGTGTTGGTTGTATTGTTCTGAAAGAAAGCAGTAAAAGCAATATTTATTATATTATTTGATTGCTATGGAATTAGTATTCATTTTCCCCAA ATGGGACCAATGGATTATGAAAGTAACAGTTGGATATGGGATGGTGTGTGTTACTACCCACATTTGTTTGGTGGTTTGATGCTCACAGCGGCCTTGCTTGGATTTTCTACGAGTTATTTCAGCGGGATTGGAGTACCATCTTTGCCATTCTTCTGGTCTGATTTTGGTATCTTCCAGAAAAGAAAGAGCGAAAAGAAGCGCATTCGGGTCTACATGGATGGGTGTTTTGATCTCATGCATTTTGGTCACGCCAATGCGTTGAGGCAAGCGAAGGCTTTGGGAGATGAGTTGGTGGTGGGTGTTGTAAGTGATGAAGAAATCATAGCGAATAAGGGTCCACCAGTATTACCAATGGAAGAAAGGCTGGCTCTCGTTAGTGGTTTGAAGTGGGTGGATGAAGTTATTTCCAACGCCCCATATGCAATTACTGAGCAATTCATGAACAGACTCTTTAATGAGCATAAGATTGACTATATTATTCACGGAGATGATCCATGCCTACTTCCAGATGGGACTGATGCATATGCCTTAGCTAAGAAAGCTGGACGGTTCAAGCAGATCAAGCGTACTGAAGGAGTCTCCAGCACCGATATCGTAGGAAGAATACTCTCTTCCATTAATGATGCTATGGATTCAGAAGATCACAATGCAACATCCATGAATGGAGATGCTAAAAAAGGAAGTCCGTCCCATGGTGCCCTTTCTCATTTTCTACCAACATCACAACGTATTGTACAGTTTTCAAATGGAAGGGGGCCTGGACAAAATGCTCGTATTGTGTACATTGATGGGGCTTTTGATCTTTTTCATGCAGGACATATTGAGATTCTCAAGAGTGCTAGGCAGCTTGGAGACTTTTTACTAGTTGGCATACATAATGATCAGACTGTGAGTAAACTCAGAGGGAAGCAATTTCCAATTATGCATTTGCACGAACGTAGTCTCAGTGTGCTGGGTTGCCGGTATGTCGATGAGGTGATCATCGGTGCACCTTGGGAAATTACAAAAGACATGATAACTACTTTCAATATATCTTTAGTTGTGCATGGGACTGTTGCTGAAAATAACTCTTTTGCTGGCGACAGTGATCCGTATGCCGTTCCAAAGAGTATTGGAATTTTCAAGTTGCTTGAAAGCCCTAAAAACATTACCACTACTTCAATAGCCAAAAGGATAGTTGCCAATCACGATGCTTTTAAGAAACGAAATGCCAAGAAAGTGGAAAGCGAGAAGAAATACTATGCAGAGAAGAAATACATATGTGGGGAATAAATGGTTTTGGTTTACAATTTACTATTCGGCCTTAGGAATGTGGTTGTTGTAGCTCTTGTTTCTGAAGATCTTCGGTACAGATTTTTCCCATGAAGATAGGTTTAGAACATGGAAGGAGTTGCATCCTTAAGAATTTGACATGGCAGTTAACTTTGTAATTTCACTGTAGGCGCTATAAGCTGCAGCTAGAATAGATCAAAATTGGGACACCAAAACTCTCAACTACACAAACAATTTGCTATTATGCGTGTAAACGTCCAAATCGTATAGGTACCATCTTGTGCCTTTATTGGCTTTGTTTTTTCTTTTCTTTTATTTTTTCAGGTAATTTAGGTGTTGGTTGTATTGTTCTGAAAGAAAGCAGTAAAAGCAATATTTATTATATTATTTGATTGCTATGGAATTAGTATTCATTTTCCCCAA ATGGGACCAATGGATTATGAAAGTAACAGTTGGATATGGGATGGTGTGTGTTACTACCCACATTTGTTTGGTGGTTTGATGCTCACAGCGGCCTTGCTTGGATTTTCTACGAGTTATTTCAGCGGGATTGGAGTACCATCTTTGCCATTCTTCTGGTCTGATTTTGGTATCTTCCAGAAAAGAAAGAGCGAAAAGAAGCGCATTCGGGTCTACATGGATGGGTGTTTTGATCTCATGCATTTTGGTCACGCCAATGCGTTGAGGCAAGCGAAGGCTTTGGGAGATGAGTTGGTGGTGGGTGTTGTAAGTGATGAAGAAATCATAGCGAATAAGGGTCCACCAGTATTACCAATGGAAGAAAGGCTGGCTCTCGTTAGTGGTTTGAAGTGGGTGGATGAAGTTATTTCCAACGCCCCATATGCAATTACTGAGCAATTCATGAACAGACTCTTTAATGAGCATAAGATTGACTATATTATTCACGGAGATGATCCATGCCTACTTCCAGATGGGACTGATGCATATGCCTTAGCTAAGAAAGCTGGACGGTTCAAGCAGATCAAGCGTACTGAAGGAGTCTCCAGCACCGATATCGTAGGAAGAATACTCTCTTCCATTAATGATGCTATGGATTCAGAAGATCACAATGCAACATCCATGAATGGAGATGCTAAAAAAGGAAGTCCGTCCCATGGTGCCCTTTCTCATTTTCTACCAACATCACAACGTATTGTACAGTTTTCAAATGGAAGGGGGCCTGGACAAAATGCTCGTATTGTGTACATTGATGGGGCTTTTGATCTTTTTCATGCAGGACATATTGAGATTCTCAAGAGTGCTAGGCAGCTTGGAGACTTTTTACTAGTTGGCATACATAATGATCAGACTGTGAGTAAACTCAGAGGGAAGCAATTTCCAATTATGCATTTGCACGAACGTAGTCTCAGTGTGCTGGGTTGCCGGTATGTCGATGAGGTGATCATCGGTGCACCTTGGGAAATTACAAAAGACATGATAACTACTTTCAATATATCTTTAGTTGTGCATGGGACTGTTGCTGAAAATAACTCTTTTGCTGGCGACAGTGATCCGTATGCCGTTCCAAAGAGTATTGGAATTTTCAAGTTGCTTGAAAGCCCTAAAAACATTACCACTACTTCAATAGCCAAAAGGATAGTTGCCAATCACGATGCTTTTAAGAAACGAAATGCCAAGAAAGTGGAAAGCGAGAAGAAATACTATGCAGAGAAGAAATACATATGTGGGGAATAA MGPMDYESNSWIWDGVCYYPHLFGGLMLTAALLGFSTSYFSGIGVPSLPFFWSDFGIFQKRKSEKKRIRVYMDGCFDLMHFGHANALRQAKALGDELVVGVVSDEEIIANKGPPVLPMEERLALVSGLKWVDEVISNAPYAITEQFMNRLFNEHKIDYIIHGDDPCLLPDGTDAYALAKKAGRFKQIKRTEGVSSTDIVGRILSSINDAMDSEDHNATSMNGDAKKGSPSHGALSHFLPTSQRIVQFSNGRGPGQNARIVYIDGAFDLFHAGHIEILKSARQLGDFLLVGIHNDQTVSKLRGKQFPIMHLHERSLSVLGCRYVDEVIIGAPWEITKDMITTFNISLVVHGTVAENNSFAGDSDPYAVPKSIGIFKLLESPKNITTTSIAKRIVANHDAFKKRNAKKVESEKKYYAEKKYICGE Homology
BLAST of CmaCh11G003340 vs. ExPASy Swiss-Prot
Match: Q9ZVI9 (Ethanolamine-phosphate cytidylyltransferase OS=Arabidopsis thaliana OX=3702 GN=PECT1 PE=1 SV=1) HSP 1 Score: 526.9 bits (1356), Expect = 2.0e-148 Identity = 256/371 (69.00%), Postives = 313/371 (84.37%), Query Frame = 0
BLAST of CmaCh11G003340 vs. ExPASy Swiss-Prot
Match: Q55BZ4 (Ethanolamine-phosphate cytidylyltransferase OS=Dictyostelium discoideum OX=44689 GN=pctA PE=1 SV=1) HSP 1 Score: 364.8 bits (935), Expect = 1.3e-99 Identity = 183/353 (51.84%), Postives = 241/353 (68.27%), Query Frame = 0
BLAST of CmaCh11G003340 vs. ExPASy Swiss-Prot
Match: Q99447 (Ethanolamine-phosphate cytidylyltransferase OS=Homo sapiens OX=9606 GN=PCYT2 PE=1 SV=1) HSP 1 Score: 316.6 bits (810), Expect = 4.2e-85 Identity = 156/362 (43.09%), Postives = 229/362 (63.26%), Query Frame = 0
BLAST of CmaCh11G003340 vs. ExPASy Swiss-Prot
Match: Q5EA75 (Ethanolamine-phosphate cytidylyltransferase OS=Bos taurus OX=9913 GN=PCYT2 PE=2 SV=1) HSP 1 Score: 309.3 bits (791), Expect = 6.7e-83 Identity = 153/353 (43.34%), Postives = 224/353 (63.46%), Query Frame = 0
BLAST of CmaCh11G003340 vs. ExPASy Swiss-Prot
Match: Q922E4 (Ethanolamine-phosphate cytidylyltransferase OS=Mus musculus OX=10090 GN=Pcyt2 PE=1 SV=1) HSP 1 Score: 305.8 bits (782), Expect = 7.4e-82 Identity = 156/384 (40.62%), Postives = 233/384 (60.68%), Query Frame = 0
BLAST of CmaCh11G003340 vs. TAIR 10
Match: AT2G38670.1 (phosphorylethanolamine cytidylyltransferase 1 ) HSP 1 Score: 526.9 bits (1356), Expect = 1.5e-149 Identity = 256/371 (69.00%), Postives = 313/371 (84.37%), Query Frame = 0
BLAST of CmaCh11G003340 vs. TAIR 10
Match: AT2G32260.1 (phosphorylcholine cytidylyltransferase ) HSP 1 Score: 120.6 bits (301), Expect = 3.1e-27 Identity = 62/145 (42.76%), Postives = 86/145 (59.31%), Query Frame = 0
BLAST of CmaCh11G003340 vs. TAIR 10
Match: AT4G15130.1 (phosphorylcholine cytidylyltransferase2 ) HSP 1 Score: 119.8 bits (299), Expect = 5.4e-27 Identity = 64/149 (42.95%), Postives = 86/149 (57.72%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucurbita maxima (Rimu) v1.1
Date Performed: 2021-10-25
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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