Chy10G184650 (gene) Cucumber (hystrix) 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.ATGGGTCCTCGGCATGGGCTTTTTCTTCTCTCTTGTTGGTCCAATAGGCCCAAAGGGCTTCTCGAATTATGCATAAGGTAGTTTTTGCCATATTGACAAACATGAACATCAAAGTAAAAGTACTAACATACATAGATAGAAGATGAAACAAAGTAGTGTTGAAAAATGTGAAATAGAAATAGAAAGAAGATTGTAAAATGCGAAAACAACAACAAATATAATAGGGTTAGATTGAAAACTGTCGGAACAAAATGAGTTTTGTATTACAAGTCGAATACCAAACACTCAATCCAAACATGAGTTTTGGATTACATTATAATACAAAACCAATCCTATTACGACTCACCACATACCTCCTAATAGTTTTTATCAGTGGTAGAAGACTTACTATATTTACAATTTTTAAATTTTAATAAGATTCTTTTATTTCAATAACCTAACTATAAGACTTACATTGATAGACAATAATAGAAGTCTATCGATTTCTATCCATTCAAAATTTTGCTAGTTTATAAATATTTTAATTTATTTTAGCAAAATATAGAAAAATTACATTAGCACAAAAAAAAACAACAACATCTTTTTTTGGGTATTACAAATTTGATAAATATGAATATAATTTGATAGTAATCTGCTTTTAAATTTGCTATTTTTAGAATTTTAAAAATATAAATGATATGACTACCATAATTGTTTTTCTTGTTATTTTTGAACTCCCAATATAGCTTTCTATTTACAAGTGAAATTTTGTTATTTAAAATAAAATTTCTATTAAATTATAAGTTGAAGAAAAAGAAAAAAGAGAAGGGTATAAATATAAATTGCCATTTAAAATCAAACAGCATATAAATATCAACCCAAAGGAAAGGTCGGAGTTGGGGAAAATATCAATCACGGGAAGGCATATCCTCTGAGATTCACAGGAACGTGATCGAAACTATGCTGTGTAGCTACGTAAAGTGAACCAACGCGTTGATCGAACTCCAAAAGTTTCAATTCCTGCTCTAGAGCTCTACTGATTTTGCATCATCGTACACCGGCGACGGATCGCAATTCGGCCATGAACTGTCTTCAAAACCTTTCAATGTCAGTTCTGAAACTGAAATCATCATCTTCTACTTACGATTCATTCAAATATTTTCTTACATTTTTCTTTCCTCTCTGAATCTCAGATCATCTTCTCTTCCCTTCCGGAGCTTCAAATGCCGACAGAGAAAGCCTGAATTCCAGCTCTCTAAACTGGTACACTCGCTCGCGCCACATTATAATTCTGCACCTTATATATTCAGTCTCTCTGTGTTTTTTTTTTTGCATCGAGCGTTTAACAGTTTGTTTCGATTGACACAGGTGATGAGGAACTTTACCGATCTACATCGACGTTCTTCCGTGAAGGTAACTAACGATGATTTGTGATAATGAGAATTCATGAAATATTGCTGTATCGCGATAGATTTTTTAGTTTCGTCATAGTGAGTGATATTTTTCTTCAATCAGTTTGTCGATTGAAATTCTAGCTATGTTTGAGGCTTTGCGTGGTTGTGAATTTTCATATGTTTTTCTTCAATCAGTTTGTCGATTGAATTTTTATATTTTTTGTATCATAACTCAATTTCGGAAATGGAGAAAGCCTTCAAGTAAATAAGTCTGTTCAGTGATCTTTAGTTTTGGTGGCTATAGGTCACTGGTAGTTATAAGCAATAATTGTTTGAAATGATTACTTGTTATGTAGGCAGTGTCTGGCTCTACATCAAGTGCCGAAACGACTGGTGCAGAAGTGGACGATGCTGAGGAAAAGGAGGAAAAATCTGAAATATATAGCCATAACATGACAGAAGCTATGGGTGCTGGTAAGAACCATCATCTTACGACTCTCCTTTCAACTGGAAAATAACTGCGCTGATGCGAATATTTCATAAATAAATTTATTCAGATTTCGGAAATCTTTTAATAAAAAAGTAACTGCAAATTTGTTACAATTTAGAGAAATAAATTGAGTTTTCTATTACGTCCTGCTTAAAATTTGAGTTTAGAGATGTGAATATTTGCTGATCGATTGGATTAATCTGCCAGTGTTTTTTACCATAAAGCTACCTTAAAGTGCTTCTTGCTAAGCCGTTATTCATCAGTTATCTAATCTGATGCCCTTTTTGATCTTTATGATATAGTACTGACATATAGGCATGAGCTGGGAATGAACTACAACTTCATTCGTCCAGATTTAATTGTAGGATCATGCCTACAGGTGATAATTGTTCTCGACATTTTTCATCTTGTAAGTTTTTATGCACTAACTCCTTTACAATTTCATTCTAATTCTACTAATGTCAGACTCCAGAAGATGTTGACAAGCTCCGCAGCATTGGAGTAAGAACAGTTTTCTGCTTGCAGCAAGATCCAGATTTAGAGTATCCATATTTCATTTCTGTTAATATCTTCTTTCATAAATTTTATTTAATTCATGTACTCTGCCTTTTATTTTATTAATTTTTATTAAATAATTAATATTTGAGGAATTCCAATATTTCACAAAAGTAGAGTTTGATCAATAAAGTGAAAACTGCTGAATTCCTTTCACCGTATCGGAAAGATATTTTGGGGTTGACATTGGTGCTATAATAGCATATACAAAGACTTTTGATGATATTGAACATTTGCGAGCTCAGATAAGGTTAGTAGGTGTTTGTTATCTTAAGTCCTCAATCTATAATGAACTGTGCTTCGATGGAAAGCTATAAATCTGTGAAGTATATAACTGCAATTTTAAACTCTTGCAAGATAAGACTAGAACATGATGCAACATTATGTTGGTAAAGCATTTGAATAAGTTAAGTAATCCAACAGGCAGTTTTATTTGTATATTTGGAGACTACATGCAATTTAGTCCGATAATTTGAAGTACAGACTAATTATATGCAAAAAAAAATTTCACAAAGTTCAAACCATTTTCTCATCTAGCCTGAAAAATTCTTTTAATATCATTTCATCGAGCTTTTTCACTTGAATGTTAATTGTAATTAAATGAAAGAAATATTAAAACCTGATCTATACACTTATGGACAATTGATATCTTGAGTTAGACCTAGCTTTTTAACTGTTTCTACCTTGTTATGCCCAACAAATTTATTCACTCAACCTCATGCAAACATGAGCAATGCATAGCATGATTATATTTTTAAGCATGCGGGGATTTGCTTTCTATATTGACCAGCTAAGTTTTGATGCAACAGGGATTTTGATGCATTTGACCTACGACTAAGATTACCGGCTGTTGTAAGCAAATTACATAAAGCCATAAACCGAAATGGTGGAGTGACTTACATACATTGCACTGCTGGACTTGGAAGAGCTCCAGCTGTTGCGGTATGTGCATAAGCATGCTTCTAAAAATAAGTTTTTCTACTGTACAGATTATTTGCTTTGAAATATAATGAACTTTAACCGAGTATAATAGTGCACGAAAAATAGAAATCTCTCCTGAAAAAGGCTTTCTTGATTTTATTGTGCTGTTCCATACCTCGCTTCACTTAATTTTTTTGTATAGATAAACGTGCTTGTGCGGTTATGTCTTTTTTTTTTCCTTGATTCTTTCATCTTCTACTTGGTCTGTCTGCTCTCTTCTTCGTCATGCTAATATTTTCGCTATCTCCTGATATTTCAACATTTTTTCTTTTACTTCCTGAGGATGTCTTCTGGTGTATGGATAAACACATTAAAGCTTGAAATAAATTTTTGGTTTTTGTTGGAGATGTTTGAGATACTCAGGTCCAGTAAGAGGACGTCTTTGGTTGACAGTTGTTAAATAACATCCAATGCACCTTTTTCTGTTCTGTTTAGATTATGAACAGTGATCGCATCTGCTTCAATGTTTTTAGCTTTATTCCAAGTACATTTGTTTTCTTTGTTTTGCCTAATATTGTTTGTGTGTGCGTGTGTTGTGGGCTCCTGAGAATTTCTATTTCACATTAGCATTCTGTGGAATTTTTGTTAATCTTATATTCATCTTAGTTATTGATAACTATGTTGATTAACTCTTGCCAACTTTGAAATGTCTTATTTAAAGATGGCGTATATGTTTTGGGTTCAAGGCTACCAACTCAACGAGGCGCTAGAATTACTGCTGGTAACATCCGCTATAATCCTTATACAGTGCAGAAAATTATTTTAAATGACAAAATTTCTGAAAATATTTACTAATATGGCAAAATATTACAATTTATAAGTGATAGACCAAGATTGACTACTAGACATAGATACTAGTCTATTATCACTGTCCATTATACATAGACTATGATATTTTGTACATATTTTAGTTTATTTTATTATATTTGAAAATAACCCTATGAAAAACTTCTGTTGGTTAGATTGACTCTGCATCTTCTGTTACTATGTATTTGAGATGGAAATATAGGAGTTCAGAAACATTACATATTTTTCGTTTAAACAAAAAAGACTACGTTTCTTAAATTGGATAACTGATCTCTGATTGAGAAAATTTAAAGATTACAAAACGGCATAAAAAGCACCTTACAAAAGGAACCAAAGAAAAACGTTCTCCGTTAAAAGTTCTAAAAGAATAGCGTTATCTTTTAGAAGTTCTATTTTTTAAATTCTGTTCTGTATCACGGTAACTGAACAAAACATTTTTTTTTGTTGCATTCTCTAATTCCAAATACTTTGGTAGTCCTTTTTCCCTTGCCTTCTGCAGATATTTTATGTTGTGATACGATCACATTCTCCCATTTAAAGTATGTGTCCATGATATAGACACAAACATTTCCATTTATTAAAGAGCAGTGAATTCAATAGTTTATTACATCCGTCATACCTTGTGACTTAGAATACCAGGAGGATAAGTACTGATCTCAAGCTATCGGTTTCTAAATTTCTAATGTTGCAAGTGTACTTGGATTTGCTTTCTTGCAGAGCAAACGATCATGCTTCCCAAAAATAGATGCTATTAAAAGTGCAACTGCCGACATTGTAAGTATTTATATTTTATGATTTATTTAAATAATGGTTTTGGTCACTTGGGTTTTTTATCCCAAATCTTAATATGCATTGCTTTTCTAGCTAATTGAGCTCTGTGGGTTAGTTCTTTGGCTGGCTTTGTAACTTTGTAATTTTAATTTGGACATATTTTCAGCATTTTAATTAAGCAAGGAGAAGAGTTATTAATTAATCTCTGTTGAATTTATTTTTTCCATCTAAGAGGTGCGAGGAGATTGGTTACTGTGAAGTAGTTTGGAGTTTAGAGTAGTGAAGGGAGGAGGCTGATTATGAACCTAAGTTCCATTCTTTGCGAGTTGCAACTTTTGCCTTCTAGTTTTATTGCTTTAACGTGATACTAGTAATTGTAGTTACCTGAGAACAGGCAGCACCAAATTAACTGGATATGATTTATGAATTACAAAGACACACACACACACACACACACACACACACATTTATGAATTATCATCTTTTGCTTATTACGTGTTACAAAAGTGGTTCACTGGTTTATTTTTATTGAAGCTTTCAGGATTTAAAAAGAAGCCTGTCGCTTTATCTTGGGAAGATAATCAATGCTCAACTGTAGAAGTAGCTGGACTTGATATTGGATGGGGTCAGGTAACACTTTCTTTCTTTCCTGATAATTCTCTTGATTTCACTTCCCTGAATGTTTGATTTAGTTTTGAAAAACAGTATACGAGTGAGTAACACAGTCCTCTGATACTTTTCTTTCTAACGGTTTTCAAAAGCTTTGGATTTCTCTTTAGTACTTTGTTCAGTTTTATAACCATTTTCAAGTTCCATATGGTCAATGTTTTTGAAATTCGGCTATGGATTCAAAAGTTTGGCAAGAAAATTGTAAGAAACAAACACAATTTAAAAAAAATGAAAGGAACATTTTCAAATATAGTAAGATAAATTAAAATAGTTACGAACTATAGCAAAATTTTGGATTCTATCAATATTAAAAACTGATAAACTTAATTTATTTTACCATGGACAATTTTTGACAATTCTCCAAAATCAAATGGTTATTAGATGGGGTTTACACAAGTCAGTTTTGGCTTCCACAATTATTGTAGACTTGTTGTAAGGTTGATCTTTGTTTTAGTATTCTATAGATTTTAATTGACAATAGGGTCCATGTCATTACATTTTGTAAATTGCAAAAGTAGCAAATTTAAAAGTCGATAACCGTCTGATATCACTAAATATTTGTCATATTCACAATATGCAACAAAGAGGTGTCATGGGCTATTTTTTTCTAAATGTTTTTGTCAATTTTCCTATAGATTTTCTATATTAATAAGCCTTACTGGTCAATAAGTTGGGTTGTCAACACGGTTTATTTGCAGTCGACTTGACCTAATTATAGGTTCAACTTTTGAACCGCTTGTCCTAAACTGTAACATTTCTTTGCATAATGCAATGCATGAAAATTCTCAAGCAAAAGAAGTAAAAATTGTTAAAATTCTTCTGTCTTCGGTAATCTAATTAATTAGAGACCAAAAATGTTTAGTGTGTATTCTCGACACATTTTAGAATTACCAATACATTATTACAGTTAAGAAATTGTAATTAATTATTGTTTTTATCGATCTATGGAACTTTTTCTTCCAGAGGATTCCATTAAAATTCGACAAGGCACGAGGTGCATGGATTCTCAATAGGGAACTCGCGGTATGTCAATTATAATTTTTAATTATTTCATTGCACTAGTCAAAATTTTGTGAGGTATTAGAGATTGAATGTCTAATTTTACAGTGATAAATACATGACAATTATGAATGAGTTATGACATGTTTGGAGTAATTTGGTCATTTTTTAAATCATTCCGAACCCATGCTTTGATGTGGTATTAAAAATTGTATACTTTTCAAATGTAAAACTAGACGTTTTGGATTTATTTAGAACATAACAAAGGTGATTAACTATTGAGTGATGCTCAAATAAATTTAAGAATTATGATGGGTTTGTTTGTTTGTTTGTTTATGATATATAACAGGAAGGACGATATGAATACAAGTATATTATCGATGGTATATGGACGTGCAATGAAAAGGAGCCCATCACTCCACCCAACCAAGATGGCCACGTCAACAATTTCATTGAAGTAACAATCTAAAGATCATTTCAATCTTATAAATGAAATAATAATACCAACTTAATTTCCCAATTAATGAATCATCATCATCATCATCATTATTATTCTTATGTTTTTGTTTTAGGTTATTGAAGATGAGGATCCAGGTAGTGATAGAGCAATTCTTCGGAGAAGGTTAATTGGAGATGAACCAGAACTCACGGCTGAAGAAAGAAGCAAAATAAGACAATTTCTTGAAGCTTGTCCTGATGAAATTTGA ATGGGTCCTCGGCATGGGCTTTTTCTTCTCTCTTGTTGGTCCAATAGGCCCAAAGGGCTTCTCGAATTATGCATAAGATCATCTTCTCTTCCCTTCCGGAGCTTCAAATGCCGACAGAGAAAGCCTGAATTCCAGCTCTCTAAACTGGTGATGAGGAACTTTACCGATCTACATCGACGTTCTTCCGTGAAGGCAGTGTCTGGCTCTACATCAAGTGCCGAAACGACTGGTGCAGAAGTGGACGATGCTGAGGAAAAGGAGGAAAAATCTGAAATATATAGCCATAACATGACAGAAGCTATGGGTGCTGTACTGACATATAGGCATGAGCTGGGAATGAACTACAACTTCATTCGTCCAGATTTAATTGTAGGATCATGCCTACAGACTCCAGAAGATGTTGACAAGCTCCGCAGCATTGGAGTAAGAACAGTTTTCTGCTTGCAGCAAGATCCAGATTTAGAATATTTTGGGGTTGACATTGGTGCTATAATAGCATATACAAAGACTTTTGATGATATTGAACATTTGCGAGCTCAGATAAGGGATTTTGATGCATTTGACCTACGACTAAGATTACCGGCTGTTGTAAGCAAATTACATAAAGCCATAAACCGAAATGGTGGAGTGACTTACATACATTGCACTGCTGGACTTGGAAGAGCTCCAGCTGTTGCGATGGCGTATATGTTTTGGGTTCAAGGCTACCAACTCAACGAGGCGCTAGAATTACTGCTGAGCAAACGATCATGCTTCCCAAAAATAGATGCTATTAAAAGTGCAACTGCCGACATTCTTTCAGGATTTAAAAAGAAGCCTGTCGCTTTATCTTGGGAAGATAATCAATGCTCAACTGTAGAAGTAGCTGGACTTGATATTGGATGGGGTCAGAGGATTCCATTAAAATTCGACAAGGCACGAGGTGCATGGATTCTCAATAGGGAACTCGCGGAAGGACGATATGAATACAAGTATATTATCGATGGTATATGGACGTGCAATGAAAAGGAGCCCATCACTCCACCCAACCAAGATGGCCACGTCAACAATTTCATTGAAGTTATTGAAGATGAGGATCCAGGTAGTGATAGAGCAATTCTTCGGAGAAGGTTAATTGGAGATGAACCAGAACTCACGGCTGAAGAAAGAAGCAAAATAAGACAATTTCTTGAAGCTTGTCCTGATGAAATTTGA ATGGGTCCTCGGCATGGGCTTTTTCTTCTCTCTTGTTGGTCCAATAGGCCCAAAGGGCTTCTCGAATTATGCATAAGATCATCTTCTCTTCCCTTCCGGAGCTTCAAATGCCGACAGAGAAAGCCTGAATTCCAGCTCTCTAAACTGGTGATGAGGAACTTTACCGATCTACATCGACGTTCTTCCGTGAAGGCAGTGTCTGGCTCTACATCAAGTGCCGAAACGACTGGTGCAGAAGTGGACGATGCTGAGGAAAAGGAGGAAAAATCTGAAATATATAGCCATAACATGACAGAAGCTATGGGTGCTGTACTGACATATAGGCATGAGCTGGGAATGAACTACAACTTCATTCGTCCAGATTTAATTGTAGGATCATGCCTACAGACTCCAGAAGATGTTGACAAGCTCCGCAGCATTGGAGTAAGAACAGTTTTCTGCTTGCAGCAAGATCCAGATTTAGAATATTTTGGGGTTGACATTGGTGCTATAATAGCATATACAAAGACTTTTGATGATATTGAACATTTGCGAGCTCAGATAAGGGATTTTGATGCATTTGACCTACGACTAAGATTACCGGCTGTTGTAAGCAAATTACATAAAGCCATAAACCGAAATGGTGGAGTGACTTACATACATTGCACTGCTGGACTTGGAAGAGCTCCAGCTGTTGCGATGGCGTATATGTTTTGGGTTCAAGGCTACCAACTCAACGAGGCGCTAGAATTACTGCTGAGCAAACGATCATGCTTCCCAAAAATAGATGCTATTAAAAGTGCAACTGCCGACATTCTTTCAGGATTTAAAAAGAAGCCTGTCGCTTTATCTTGGGAAGATAATCAATGCTCAACTGTAGAAGTAGCTGGACTTGATATTGGATGGGGTCAGAGGATTCCATTAAAATTCGACAAGGCACGAGGTGCATGGATTCTCAATAGGGAACTCGCGGAAGGACGATATGAATACAAGTATATTATCGATGGTATATGGACGTGCAATGAAAAGGAGCCCATCACTCCACCCAACCAAGATGGCCACGTCAACAATTTCATTGAAGTTATTGAAGATGAGGATCCAGGTAGTGATAGAGCAATTCTTCGGAGAAGGTTAATTGGAGATGAACCAGAACTCACGGCTGAAGAAAGAAGCAAAATAAGACAATTTCTTGAAGCTTGTCCTGATGAAATTTGA MGPRHGLFLLSCWSNRPKGLLELCIRSSSLPFRSFKCRQRKPEFQLSKLVMRNFTDLHRRSSVKAVSGSTSSAETTGAEVDDAEEKEEKSEIYSHNMTEAMGAVLTYRHELGMNYNFIRPDLIVGSCLQTPEDVDKLRSIGVRTVFCLQQDPDLEYFGVDIGAIIAYTKTFDDIEHLRAQIRDFDAFDLRLRLPAVVSKLHKAINRNGGVTYIHCTAGLGRAPAVAMAYMFWVQGYQLNEALELLLSKRSCFPKIDAIKSATADILSGFKKKPVALSWEDNQCSTVEVAGLDIGWGQRIPLKFDKARGAWILNRELAEGRYEYKYIIDGIWTCNEKEPITPPNQDGHVNNFIEVIEDEDPGSDRAILRRRLIGDEPELTAEERSKIRQFLEACPDEI* Homology
BLAST of Chy10G184650 vs. ExPASy Swiss-Prot
Match: G4LTX4 (Phosphoglucan phosphatase DSP4, amyloplastic OS=Castanea sativa OX=21020 GN=DSP4 PE=1 SV=1) HSP 1 Score: 535.8 bits (1379), Expect = 4.1e-151 Identity = 261/371 (70.35%), Postives = 311/371 (83.83%), Query Frame = 0
BLAST of Chy10G184650 vs. ExPASy Swiss-Prot
Match: Q9FEB5 (Phosphoglucan phosphatase DSP4, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=DSP4 PE=1 SV=1) HSP 1 Score: 469.5 bits (1207), Expect = 3.7e-131 Identity = 239/391 (61.13%), Postives = 283/391 (72.38%), Query Frame = 0
BLAST of Chy10G184650 vs. ExPASy Swiss-Prot
Match: Q9SRK5 (Phosphoglucan phosphatase LSF2, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=LSF2 PE=1 SV=1) HSP 1 Score: 154.8 bits (390), Expect = 2.0e-36 Identity = 90/220 (40.91%), Postives = 126/220 (57.27%), Query Frame = 0
BLAST of Chy10G184650 vs. ExPASy Swiss-Prot
Match: F4J117 (Phosphoglucan phosphatase LSF1, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=LSF1 PE=1 SV=1) HSP 1 Score: 126.7 bits (317), Expect = 5.8e-28 Identity = 79/259 (30.50%), Postives = 125/259 (48.26%), Query Frame = 0
BLAST of Chy10G184650 vs. ExPASy Swiss-Prot
Match: O95278 (Laforin OS=Homo sapiens OX=9606 GN=EPM2A PE=1 SV=2) HSP 1 Score: 52.4 bits (124), Expect = 1.4e-05 Identity = 43/170 (25.29%), Postives = 75/170 (44.12%), Query Frame = 0
BLAST of Chy10G184650 vs. ExPASy TrEMBL
Match: A0A0A0KRF8 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G616890 PE=4 SV=1) HSP 1 Score: 740.0 bits (1909), Expect = 5.3e-210 Identity = 363/371 (97.84%), Postives = 368/371 (99.19%), Query Frame = 0
BLAST of Chy10G184650 vs. ExPASy TrEMBL
Match: A0A1S3BGR5 (phosphoglucan phosphatase DSP4, amyloplastic OS=Cucumis melo OX=3656 GN=LOC103489419 PE=4 SV=1) HSP 1 Score: 727.2 bits (1876), Expect = 3.6e-206 Identity = 353/371 (95.15%), Postives = 365/371 (98.38%), Query Frame = 0
BLAST of Chy10G184650 vs. ExPASy TrEMBL
Match: A0A6J1JY88 (phosphoglucan phosphatase DSP4, amyloplastic-like OS=Cucurbita maxima OX=3661 GN=LOC111489369 PE=4 SV=1) HSP 1 Score: 696.0 bits (1795), Expect = 8.9e-197 Identity = 336/370 (90.81%), Postives = 351/370 (94.86%), Query Frame = 0
BLAST of Chy10G184650 vs. ExPASy TrEMBL
Match: A0A6J1H0L3 (phosphoglucan phosphatase DSP4, amyloplastic-like OS=Cucurbita moschata OX=3662 GN=LOC111458925 PE=4 SV=1) HSP 1 Score: 691.0 bits (1782), Expect = 2.8e-195 Identity = 334/370 (90.27%), Postives = 349/370 (94.32%), Query Frame = 0
BLAST of Chy10G184650 vs. ExPASy TrEMBL
Match: A0A6J1CDF1 (phosphoglucan phosphatase DSP4, amyloplastic OS=Momordica charantia OX=3673 GN=LOC111010202 PE=4 SV=1) HSP 1 Score: 669.1 bits (1725), Expect = 1.2e-188 Identity = 328/370 (88.65%), Postives = 351/370 (94.86%), Query Frame = 0
BLAST of Chy10G184650 vs. NCBI nr
Match: XP_004142448.1 (phosphoglucan phosphatase DSP4, amyloplastic [Cucumis sativus] >KGN52220.1 hypothetical protein Csa_008351 [Cucumis sativus]) HSP 1 Score: 735 bits (1898), Expect = 7.11e-267 Identity = 363/371 (97.84%), Postives = 368/371 (99.19%), Query Frame = 0
BLAST of Chy10G184650 vs. NCBI nr
Match: XP_008446798.1 (PREDICTED: phosphoglucan phosphatase DSP4, amyloplastic [Cucumis melo] >XP_008446799.1 PREDICTED: phosphoglucan phosphatase DSP4, amyloplastic [Cucumis melo]) HSP 1 Score: 723 bits (1865), Expect = 7.60e-262 Identity = 353/371 (95.15%), Postives = 365/371 (98.38%), Query Frame = 0
BLAST of Chy10G184650 vs. NCBI nr
Match: XP_038893198.1 (phosphoglucan phosphatase DSP4, amyloplastic [Benincasa hispida]) HSP 1 Score: 710 bits (1833), Expect = 5.72e-257 Identity = 348/370 (94.05%), Postives = 360/370 (97.30%), Query Frame = 0
BLAST of Chy10G184650 vs. NCBI nr
Match: KAG6601200.1 (Phosphoglucan phosphatase DSP4, amyloplastic, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 691 bits (1784), Expect = 1.67e-249 Identity = 337/370 (91.08%), Postives = 351/370 (94.86%), Query Frame = 0
BLAST of Chy10G184650 vs. NCBI nr
Match: XP_022993330.1 (phosphoglucan phosphatase DSP4, amyloplastic-like [Cucurbita maxima]) HSP 1 Score: 691 bits (1783), Expect = 2.37e-249 Identity = 336/370 (90.81%), Postives = 351/370 (94.86%), Query Frame = 0
BLAST of Chy10G184650 vs. TAIR 10
Match: AT3G52180.1 (dual specificity protein phosphatase (DsPTP1) family protein ) HSP 1 Score: 469.5 bits (1207), Expect = 2.6e-132 Identity = 239/391 (61.13%), Postives = 283/391 (72.38%), Query Frame = 0
BLAST of Chy10G184650 vs. TAIR 10
Match: AT3G52180.2 (dual specificity protein phosphatase (DsPTP1) family protein ) HSP 1 Score: 355.1 bits (910), Expect = 7.1e-98 Identity = 183/293 (62.46%), Postives = 216/293 (73.72%), Query Frame = 0
BLAST of Chy10G184650 vs. TAIR 10
Match: AT3G10940.1 (dual specificity protein phosphatase (DsPTP1) family protein ) HSP 1 Score: 154.8 bits (390), Expect = 1.4e-37 Identity = 90/220 (40.91%), Postives = 126/220 (57.27%), Query Frame = 0
BLAST of Chy10G184650 vs. TAIR 10
Match: AT3G01510.1 (like SEX4 1 ) HSP 1 Score: 126.7 bits (317), Expect = 4.1e-29 Identity = 79/259 (30.50%), Postives = 125/259 (48.26%), Query Frame = 0
BLAST of Chy10G184650 vs. TAIR 10
Match: AT1G27070.1 (5'-AMP-activated protein kinase-related ) HSP 1 Score: 43.9 bits (102), Expect = 3.5e-04 Identity = 23/72 (31.94%), Postives = 35/72 (48.61%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (hystrix) v1
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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