AlfalfaGEDB Alfalfa Gene Editing Database

M. sativa cultivar XinJiangDaYe / MS.gene51788


Query id Subject id identity % alignment length mismatches gap openings q. start q. end s. start s. end e-value bit score
MS.gene51788.t1 MTR_1g014270 79.452 949 68 11 1 841 1 930 0.0 1330
MS.gene51788.t1 MTR_3g106100 41.017 846 326 17 1 781 1 738 1.45e-169 511
MS.gene51788.t1 MTR_1g014300 61.947 226 60 2 1 200 13 238 3.12e-78 253
MS.gene51788.t1 MTR_4g006875 40.088 227 110 2 36 236 1 227 1.15e-46 179
MS.gene51788.t1 MTR_4g006875 54.098 61 28 0 556 616 687 747 5.76e-17 86.3
MS.gene51788.t1 MTR_4g006875 40.455 220 105 2 43 236 46 265 5.59e-46 177
MS.gene51788.t1 MTR_4g006875 54.098 61 28 0 556 616 725 785 5.41e-17 86.3
MS.gene51788.t1 MTR_2g027090 38.605 215 106 2 16 204 13 227 3.51e-36 148
MS.gene51788.t1 MTR_2g027090 38.614 101 52 1 557 657 1367 1457 2.85e-14 77.8
MS.gene51788.t1 MTR_4g134080 36.744 215 110 2 23 211 29 243 2.61e-34 142
MS.gene51788.t1 MTR_4g134080 42.857 77 40 2 537 610 1353 1428 1.71e-14 78.6
MS.gene51788.t1 MTR_4g134080 36.744 215 110 2 23 211 29 243 2.79e-34 142
MS.gene51788.t1 MTR_4g134080 42.857 77 40 2 537 610 1353 1428 1.68e-14 78.6
MS.gene51788.t1 MTR_4g134080 36.744 215 110 2 23 211 29 243 2.95e-34 142
MS.gene51788.t1 MTR_4g134080 42.857 77 40 2 537 610 1361 1436 1.70e-14 78.6
MS.gene51788.t1 MTR_4g030130 47.059 102 54 0 24 125 33 134 2.12e-24 100
MS.gene51788.t1 MTR_1g037280 32.164 171 90 2 53 197 61 231 9.85e-19 92.4
MS.gene51788.t1 MTR_1g037280 32.164 171 90 2 53 197 61 231 1.13e-18 92.0
MS.gene51788.t1 MTR_1g037280 32.164 171 90 2 53 197 61 231 1.20e-18 92.0
MS.gene51788.t1 MTR_4g030120 39.326 89 43 1 148 236 1 78 2.67e-13 72.0
Query id Subject id identity % alignment length mismatches gap openings q. start q. end s. start s. end e-value bit score
MS.gene51788.t1 AT4G31880 39.147 774 346 23 1 685 1 738 1.34e-129 409
MS.gene51788.t1 AT4G31880 38.889 774 347 23 1 685 1 737 3.02e-128 405
MS.gene51788.t1 AT1G80810 42.915 247 115 2 7 227 9 255 1.01e-53 198
MS.gene51788.t1 AT1G80810 42.915 247 115 2 7 227 9 255 1.57e-53 200
MS.gene51788.t1 AT1G15940 42.023 257 122 3 9 238 13 269 6.37e-53 200
MS.gene51788.t1 AT1G80810 42.365 203 91 2 51 227 1 203 1.26e-42 167
MS.gene51788.t1 AT1G80810 42.365 203 91 2 51 227 1 203 1.26e-42 167
MS.gene51788.t1 AT1G80810 42.365 203 91 2 51 227 1 203 1.41e-42 167
MS.gene51788.t1 AT5G47690 39.823 226 110 2 9 208 6 231 1.31e-35 147
MS.gene51788.t1 AT5G47690 45.455 77 38 2 537 610 1346 1421 1.27e-14 79.0
MS.gene51788.t1 AT5G47690 39.823 226 110 2 9 208 6 231 1.33e-35 146
MS.gene51788.t1 AT5G47690 45.455 77 38 2 537 610 1346 1421 1.35e-14 79.0
MS.gene51788.t1 AT5G47690 39.823 226 110 2 9 208 6 231 1.34e-35 146
MS.gene51788.t1 AT5G47690 45.455 77 38 2 537 610 1345 1420 1.34e-14 79.0
MS.gene51788.t1 AT5G10950 56.164 73 32 0 540 612 20 92 4.08e-22 100
MS.gene51788.t1 AT1G77600 29.268 164 95 4 27 182 25 175 5.10e-15 80.5
MS.gene51788.t1 AT1G77600 29.268 164 95 4 27 182 25 175 5.81e-15 80.1
MS.gene51788.t1 AT1G77600 29.268 164 95 4 27 182 25 175 7.65e-15 79.7
MS.gene51788.t1 AT5G47690 45.455 77 38 2 537 610 1249 1324 1.46e-14 79.0
MS.gene51788.t1 AT4G32970 49.123 57 29 0 532 588 260 316 1.28e-11 68.9

Find 0 sgRNAs with CRISPR-Local

Find 0 sgRNAs with CRISPR-GE


CRISPR-Local

CRISPR-Local
sgRNA_sequence on_target_score Position Region

CRISPR-GE

badsite warning sgRNA_sequence Strand Position Region GC_content


Chromosome Type Strat End Strand Name
10599 gene 2895 12231 2895 ID=MS.gene51788
10599 mRNA 2895 12231 2895 ID=MS.gene51788.t1;Parent=MS.gene51788
10599 exon 2895 2996 2895 ID=MS.gene51788.t1.exon1;Parent=MS.gene51788.t1
10599 CDS 2895 2996 2895 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 5788 5991 5788 ID=MS.gene51788.t1.exon2;Parent=MS.gene51788.t1
10599 CDS 5788 5991 5788 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 6090 6192 6090 ID=MS.gene51788.t1.exon3;Parent=MS.gene51788.t1
10599 CDS 6090 6192 6090 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 6961 7088 6961 ID=MS.gene51788.t1.exon4;Parent=MS.gene51788.t1
10599 CDS 6961 7088 6961 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 7204 7401 7204 ID=MS.gene51788.t1.exon5;Parent=MS.gene51788.t1
10599 CDS 7204 7401 7204 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 7495 7544 7495 ID=MS.gene51788.t1.exon6;Parent=MS.gene51788.t1
10599 CDS 7495 7544 7495 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 7666 7793 7666 ID=MS.gene51788.t1.exon7;Parent=MS.gene51788.t1
10599 CDS 7666 7793 7666 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 7921 8099 7921 ID=MS.gene51788.t1.exon8;Parent=MS.gene51788.t1
10599 CDS 7921 8099 7921 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 8141 8604 8141 ID=MS.gene51788.t1.exon9;Parent=MS.gene51788.t1
10599 CDS 8141 8604 8141 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 8746 8827 8746 ID=MS.gene51788.t1.exon10;Parent=MS.gene51788.t1
10599 CDS 8746 8827 8746 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 9060 9133 9060 ID=MS.gene51788.t1.exon11;Parent=MS.gene51788.t1
10599 CDS 9060 9133 9060 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 10048 10099 10048 ID=MS.gene51788.t1.exon12;Parent=MS.gene51788.t1
10599 CDS 10048 10099 10048 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 10767 10853 10767 ID=MS.gene51788.t1.exon13;Parent=MS.gene51788.t1
10599 CDS 10767 10853 10767 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 10934 10977 10934 ID=MS.gene51788.t1.exon14;Parent=MS.gene51788.t1
10599 CDS 10934 10977 10934 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 11506 11553 11506 ID=MS.gene51788.t1.exon15;Parent=MS.gene51788.t1
10599 CDS 11506 11553 11506 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
10599 exon 11649 12231 11649 ID=MS.gene51788.t1.exon16;Parent=MS.gene51788.t1
10599 CDS 11649 12231 11649 ID=cds.MS.gene51788.t1;Parent=MS.gene51788.t1
Gene Sequence

>MS.gene51788

ATGGCTTCCATCGATAAGGAGCTTGAAGAGGAGCTTCTTGGTGCTGGTAACAAGCTTCTAGATCCTCCTTCTTCTGTGGATAATCTGCTTGATATCCTGATTGTAAGAACACTCTTAATCTTTCTCTCTTTCGATTTCTTCGTTAAATTCGTGGTTTCTATGATTTTCTTGAATTTTTTTGATTATTTTGTTTTGTTCCTTTGTTGCATGAAGTTTGTTAGGGTTTCTTTGAATCAATTTTGCATGTGATGTTGATTTTGTGTTTGCCTGAATTTCGTTGATATTTGAGATTTTAGATTTGTTTTTAACGATTTGTTGATATTTGTGAACACTGTTAAGGTATTTTTTAGGGTTGGAAATTTGAAAATAATTTTGGAAAAAAATCCTCAACTGTTTGATGTATATGATGATTTTTTAAAGTTTATTGGATTTTTAGGTTAAATTGAATCAAACTAGTTTGTTACAGAAACTGATTTGTGAATGAACGAATTTTTTCAGTTTTGAGATTTGGGAATTTGGATAGTGGATTTGTTAGGGTTACTTTCATGGTAGCTTCATTTCTTGAATATGCTGACTACCCAGGGTTGGATGTCGGCGTTGACTGAATAGGTTGTTTTCCAACAAGTGGGGAAAAAACTGATTTGTATGCTGATATGGAGTTCATTAAGTTTTTGAAAGTAAAATAAACTAAGAATTAACGATTGGAAACTAACGGTATATCTTGGTATAGGATGTACTACTAGGTGTTTTGGGAATAAAGAACGATAAAGAATGTAGGACGACAAACGACTAGTTTATGTAAGGTAAATTAGCATGTGTTTGTTCCCGCGTCCACGACAGCCCTAGACCGCGCGTTTTTTTGAGGCTACAGATGTTAGCTTCTCAAATTACTTATGTGTTTTTTGAGTCATGTGTTTTTGAGACACGTGCAAAAAGGGCTGTAAACACGTGGCTGCTGCAACCTACCCCACAACCAAACACGTGCTTAAACTAATAAGTTTTTTGAGACACGTGTAAAAAGAGCCGTAGGCACGTGGCTGCGGCAACCTACTACACAACCAAACATGTGCTTAAACTAAGAAATATAAAATATTAAATATTGGGTTGGGATATAAAGAGCCTTTCATAGCCTGTTTAAATGAGTTATTTTTGTTATTGATTTCAAGTACTGTAAAATTTTAGGAATATAATTATTTTTACTCATTTCTACCGAAACCGAATTATCTATTTATATGGAAAAACGTGGTACCAAGTATATTCGTTAATCAATAGGATGTTGAATACATTTCTCGGAGCTGACAATTTGATATCTTTGAAGTAATGACGTAAAATTTCGCCTGTTGTAGTGGCGTGATATGTGAATTAGTTGCTTCACATAAAGGAAAAACATTATGTTGCAATAACACGATCTCCGCACCTTTAAGGAGTTCGATCGCAGTATCGCACACATGTTCACAGTTGCTGAGATCCCATGTTAGATCGCGATATTTGATTTATTCAATCCCAAGTAAATGATTTCCTGCCCCCACCCCCCACCCCCAAACTGTAATGGAGAGTCCGTCGACCTTTGCCTTTTCATATCCAACAATTTCCCGGCCAGTAAATTGCTGGTTCTCGACAGATCCAATCCCTTTATTGCTTTCTGTAGCTCTGTTTTCTGGAAAACCTACTTTGCAAAGTAGCGCAATGAAATGGAAGAGAATGGTAGGACGCAAGTGCATTTGTGGCTACGTTGCTCTCTTTCCAAACACAAGTGCTGTGGCGGCACATTGTTTCCATGGTGAGCATTGTGAGCTGCAGCGGCAAGAAGACACTGTTTTGTTCCTTATTCCTGGATTGGTGAGTCTGGGAAGTTAGGGTAGGCTTTATTTGCAATTGGGATTCATTTTGATTTTGGACCATGTGCTCAGTCAATTAAAGCGTGGGCTCTTTTATGGTAAAGAGGCAAAAGCTCTAAAAATGAAGGCTAAAACCAAGTTCATTAAAATAGGCCCATATGACCCATCTATTAGGCATATAATTTCCTGTAATTTCATTTCATTTTAATAAAAAAGATAGGATAATAACTGAAAAATATATTAAATAACAATAATAATAATATTAGTGTCAGAAAAATGTATAATCACCACATATTAATATTACATAGATGATTGTTTTGCGCACACACGCACACACATATTTCATTTTGGTAGAATCTACGACCCTTGCAACCCCCCCTCTCGAAGTTAGGTAGGGTTTGAATTTCGACTACATTTCATGTATCAAATAGTCCTCTTTGTACTAGTTTTTGTTGAAATTCTCCTTGATCCGTGTTATGTTGGAGGAAATCAGTAGTATGTTGGAGGAAATCAATAACTTTTTAATATTTACATAACAGTCTGCGTACCATTCATTAAATTGTTTGTGAATTCTGTTTCTTATTAATTTCTATTACCATAGTTACTTTAGTCTTGGATGTAAGGTTTGAATATTTTGTTACTTGTTCTTTTTGAGCTTTATTTTCCCTGAGTTGTTAATTGTAAATTTGTTTTGGGGGTTAATTTTAACAAAAAAAAATCGAAGAATCGAAAAACCTCGTTTAATTTTCGTCGGTGTTGTCCATCTCGGATTGCAGTAAATAGTGGTTTGTTCAAATACCGCCGTGCTATACCACCACTATTTGAAAGGTTTTTTACTAAATCACGAATCGTGGAACAATAGGGGTTTGTTCAAATTCCACTACGCGATAGCCGCTACTGAGTTTCCCTGTGAACCAGTCAATCTGTTGTAGTATAGCGTAGTATTAATTAATTTCAAATCATGGAGAAGTTATGTAGGTCTTATGACAATGGGCAGTCCGAAACATTAATTACATGTGCTTGATATATCATTTTTTTTCTTCTTGGAACTGCAGCAAATTGAAAGCTGCCTATCAAGGATTGAACAATCACCTTCTGAATCTATGCTAAATGCACTGTCTCCATCATTGAAAGCATTAATTGCTGATAAACTTTTAAAGCATTCAGACGTCGACGTCAAAGTTGCTCTTGCCTCCTGCTTCAGTGAGATAACAAGAATCACTGCACCTGATGCTCCTTACGATGATGGTCAAATGAAGGTGCGCAAAATGATTTTGTGCTGTAAATTAATTGAATTCTATTATCGTGCTCTAAACATATTACATCTGTTGAGTTTTATGTTGTCATTTTCTTTCAGGAGGTCTTTAGGTTAATTGTATCTTCATTTGAAAATCTACATGATAAGTCAAGCCGATGGTACTCAAAGAGGACTTTAATCCTTGAAACAGTTGCAAAGTCAGGTCATGTGTGGTAATGCTGGATCTTGAATGCGATGCCCTCATTTTGGAGATGTTTCAAGCATTTCTTGAAGACAATAAGGTAGGGGCTGTACGCCGTTGTATACAATTCTGACTTTATAGTTTCTGAATGTTATTTTATTGCATTTCTTAGATTTTTTCTCCGAACTTGATCCCACAAATCGACTTGTACGGTGAGCATTGGCCAAGCTTTATAAACTCTGTTTAGGCTTATATCTCTAGGAGATGTGGAACTCGGGCATTTACTCAAATAGTAGTTTTTTAACCTCACATGATACAATCTTAAGATGCTGTATTGAGAAATTTGCTTTTGACTAAATGGAAGGGTTGATATTCCATTTAGTTCTGAATTTTAATGGCTGATATCATTATTGGTTCCAAGTATTAAAATTAAGATATCAATGTTTCTCCTGTTGTACGCTATCCTTTCTTTTGATGTATAACTGGATATGGGCTTTTATTGCACTTAGTCATTGTATTCTTTGCATGGGTGGAAAATATAAGATGAAACAGGCAGCTAACTTATTTCAACATTAATTAGATCTTTGATTCTGTGACACACTTCTTCACACTAATAGGCCAGATTAGGTGAAATGATTTTGTTTATGATTTGAATTTATCATGAGATTATTACTATTACTAGAAGCTGTAGTTCTAGTTGCAGTGTGTTTCTGGTTTCTTTACCTGGTTGGACTAGTTGGATGCAAATGTGTGAACATGGTTCTAAGCATCTCTGTTTGAAACTTTCAGGGAACATCATGCAGAAAATGTTTTCCTCGTCCATGGAAACTATAATGATCCTCTGTCTTGAAGAAAGTGAAGAAATATCTCATGAGTTACTCTCACCAATCTTAGATAGTGTAAAAAAAGACAATGAGGTTGGTGTTTGGAATTTTCGTTTCATTCTTGTTAATAGGTCGTGATTGTTAAACTGAAACATATTTCATTATGAATTTCTTATAATTGTCATGGGCTGCTGTCATCATGATTCAGGAGGTTTTGCCAATTGCTCGAAAGTTGGGGGAAAGAGTCCTTGAAAGTTGTGCAACAAGGCTTAAACCCAATTTATTGCAAGCTGTGAATACCTTGGGTATTTCTTTGGATGATTATAGTGATGTTCTTGCCTCAATATGCAAAGAGACATCAGATAACTTGGCGCAAAATGATGTATGTGCTACTAGTGGTCATATGGTAACCTTCCGTGCTTTAATGTTCATGTATATTTGATTGGCTTGAAATTTTTTCTTTATGAGATAACTTATTATTTATTTGTTTTTGGTCCAGGTACATGATCGCAAATCAGCAGAAGAGCCCGTGGAGGAGTCGGCACAGGTGTGTCTGTTCTTCCTATATGTTTTATTTTTCGTTTGCTTGTTCTGTTGTTTACCCTTCAGCTTTTGGGATAATGAAACATGTCAATTTTTCTTGATTAGGTGGATAGTGAGATTACAAAAGAAGCCACACCACCACAACAGATAATGCTGCTGGAGAAAGATCTCCCAAGTCTGTCATGAGCAATGGCATTGCACAGGCTGGTGAAGATGATACTTTAGATGTTTCAAAGTCCCTTAAGAATCAAGATGGTACCCGACTCTCCTGTTCTGTCCAAAGGTAATAATTTATCTGGTAATGATGAGCGCGATGATATGGACACTGAAAAAATCGACAGTGAAGATCCAAAGCTGGAAAGAAGTACCATCAAGAAGCAAGATGGTACTGACTCTCCTGTTCTGTCCAAAGGTAATAATTTATCTGGTAATGATGAGCGCGATGATATGGACACTGAAAAAATCGACAGTAAAGAACCAAAGCTGGAAAGAAGTACCCGGAGGAAAGGAAAGAAAGCTAGCTCTTCAAAGTCGACCAAACCTTCTAAGAAATCAAATGTTGTCAGTGAGAAGGAAGCTGAGAAAACAATTGACTCTAAAAGTTCCAAAAAGAAGTTCCTATTTCTCTTAATGAGGATAGTGTTGTTGAAGCTACCGGAACTTCAGAGAATGACAAAGAGATTAAAGCTAAGATTTCATCATCTAAAGCAGGTGGCCTTGAATCTGACGCTGTTGGTTCTCCTTCCCCAAGTGAGAGCAATCACGATGAGAATCGTTCTAAGAAACGTGCACGAACCAAAAAGAACGATAGCTCTGCGAAAGAAGTGGCTGCAGAAGATATTTCGAAAAAGGTGTCTGAAGGAACATCGGATTCTAAAGTAAAACCAGCAAGGCCATCGGCAAAAAAGGGACCCATTCGTAGCTCTGATGTGAAAACTGTTGTACACGCAGTTATGGCTGATGTTGGGCCATCTTCCGCTGAAGCCGGAGGACAAGAAAAAGAAGACACATGTGAAGGTAGCTCAGAAAAGGGTCTAGCAAAATCTTCTGCTGAAGAGAGGATAAGGTACTTTTGATCTCACTATTCCTAACATTTCTTTACTAATGTTCATTCATATCACCAACATGGTATATTTTTTTTGTCCAAAATTAAGTCATTGACTAATTTTGCAAATGCTTTAGGTAATGGTATCTTCACTTAAGTCAGCTACGAAAACAACCAAGATGAACATCAGAGGAGGACTCCTAAGACAACTCTGAAGAGGAAGCGCACTCCAGGAAAAGAAAAAGTGTGAACCCTGTTCTGTTAATTTAAAATTGGATGATAAAACTTCATGATGCTTTGTCCTTTTGGAACTGTTCTTTTTGCAGCTATATGGTTTACGTGCTGAACTTTTGCAATGTGATCAAATATATTTTGCGAGAATTTTTTAATGCAAATACTGATTTATTGAAATAATACTGATCAATTGTTTAATTATTTTCTTAGTTTGATTGTTGATCTTCTGACTGTTGTCCCAGGGGTCTGATATCAAGAAAAATGAGCAAAGTCTTGTTGGAAAACGAGTGAAAGTTTGGTGGCCAGATGATAATATGTAAGTAAATGGTCCGAGATCTCTTCTTTTCTTAATATTTCTCATCCTCTTCTCTCTCTAAATGATTTTCTGTCTCCTAGACCCATGGCATTCAGTGTTCCTTTCATTTTAACTGGCACCACTCCATTCTTCATGTGCATACTGACCTCACTGAAGTTCACTCAATGTAGTTAGAATGTGCACACCCATTACACTTGTTTGCTGTTGCATAGGGTTATATGGCCCACCTGATTTGGCTGATTCCAAGTAGTTCTCCCCTGTTTTGGGAGATAGTAAGCAATGTACACCTATTTTGCAGTGTTTTTAGGAAGCTCCTAGTGGCTCACATTTCTTTGGCATAGCTGCCTGTTCTGTTTTTGCCTCTGCACTTCAGTTTCAGTCTCTATTTCCGGCATTTTGGGCCAAGCTAAGGCTGGATGAATGATGATTTTGTCCCTAGCTTAGCTTTGGCTTTTAGGTGTTAATGATAAATATAGTTGTGTGGGACTCATATTGTTCTGAGCATCTAATTGTAAACTTGTCTACTATCTTTGTTGTCGCAACTAGCAATTGCTTCATGTGTGCTATACAGTTAGGTTCAATGCTTTGAGCTCACAATTTTTTTCTTGGCTTAATATGTTCGTCTCTTGTTTTAACTACTACTTATATAAGCTGCTAAATCCTTATTGTAGTGAGACCATGTTATATTAAATAACTGTGACTATATTGCTCTCATTAAAATTGCTGTATAAAAGCTCTAATGAAATGCTAGGGCTAGGGAGAGATATACTTACATTTAATTAATAAACTAGAGTTTAAGTAATAAATTAGAGATATACTTACATTAAAATATGCATATTCCATCTTGATGTTGTTAACTTATTCACCATGGTAAAATTGCGGTATAATATATCTGGCAACACAATCTTCTGCAGGTTTTATAAAGGTGTTGTTGATTCTTTTGATTCCTCCACTAAGAAGCACAAGGTGATTTGGGAGCTATATTACCTTCACTTTACCCTGTTGTCTCCTTCCAATTTATTTCAGTAAAACTTTCCTACTTCTGTTTTGTTATATAGATTTACCCATTTGAAAAGTAAGCTGTTCAAATTTGTCTACTGTTAGCAGTCTTCAGTTAGCTCTGTTTATTTTGCAAAAATATTTTCTATTTCACATGTGTTATTCACTTTTAATTGCAAAATAATAATTTCAGAGTCTGATCGGTTTTGTTGGAAAACAGTTAGTTTTAATTACAATAATGTCATCTCATTGGTTGTTTTCACTTCAATTTTTTTTCAATTTTTCCTTGGAAAAAACTATGAAAACAGGAAGACCAATAATGACCCTGTTTTCACTGTCTTGTTTTCAAAATTGTTTAGAAAACAGAAAACGGGCTTATAATTTATATTTACAAGGGATAGAAATAAAGAGTTCTCTTAAAACAAAACAGGCCTTTATTCTTATTGATAATACAAAGGCAACTCTTTTTTTGGGCAATTAAAGATGAGATGAGATTAAGAAATGGAAACAAAAAACATTTTTCAAATTAAATAGGTCATTCATTTCTAAATTAAAGTATTATTTTTAAATGGTCAAATAATATAATCCGCCTTTGCTTGCATCTGACAGTTGTCTACTTGTCCCTCTGTTTTAGGTCTTATATGATGACGGTGACGAGGAAATATTGAATTTCAAAGAGGAGAAATATGAAATTGTTGAAGTTGATGCTGATCCAGATGTGGTGGGTTTCTCTCCCTTCAATTTCACATGTTAAAACTTTTTCCATGTCTATAATAATAATTGCAATTTTTCTCTTAACAGGAAGAAGGAAGTCATCGAGCAAGCCCTGAACCTTCTGCTGATATGTATGTTCCGTTGTTTTTGTTTACTTAAGATGTCTTTTCTGTTGTATTGTTAGAAAAACCATCTTTAAATTATTTTGCATCAATGTTCGTAGTTGGTGGCATTTCCCTCTTGTGGTCATAGTTGCAGCCCTTGTCTGATATCTGCGTAGCTTGTTTATTTTATTGTTTATGTCTGTTAGCACATTGTTTTGATGTATTCCTAATTTGGTGGAATTCTGCCTTGATTTGTGCCACTAAAAGCTCAAACTACAATGTTTACAGAAATCTTGGTCTGAATGATGATTTGCCCATGCCTTGTGTTGAATTGAAAAAAATAAGAGTCTTCATGTGATTTATTCTGTGGCATTTTTCTGAACTAGTCTTTTAAAATGATCTCATTTTGCCTGACCAATTGGTGGCTGCATTTGGTGATTGTGTTTTCTAGCTGAGCTTTTGCCTTTAGTTTTTGGGTTTGCCCATTTTCTAGCTGAGCTTTTTGCCTTTAGTTTTTGGGTTTGCCCATTCACTTGTTTTTATGATTATATTTAGGCCGCTAAAAAAGAAAGGGAAAACAAATGCTGGTGAATCAAAAAGGAAGTAAAGAAGGAATCTTCTAAAAGGTTAGTGAATGTTGTTGATTAAGGTTTTTTTTTATTCTTCTTTTGAGTTATTAACCTTTTACTTTGGTTTAGCAGTGGAGGAGCAACATCGAGTAAATCAAAGACACCATCTGCAAAGTCTACCCAAAAGTCCAAGATTGTTGGCAAATCTGATGGTGAAGTTAGTAAAAAATCTAAGGATTCTGCACAAAAAACTGGTGGTAAATCTGAGGATCGTTCTGTGAAAAGCGGTGGTAAATCTGAGGATCGTTCTGTGAAAAGTGGTGGTAAGTCTGAGGATCGATCTGTGAAAAGTGGCAGCAAATCTGTTGATTCTGCACAAAAAAACAATTCCAAGAAGACTGATGGTTCCAAAACAAAGAAATCCAAAGATGATGATGTTGAAACACCAAAGCCTGCTGCTGCCAAGTCTAAGCAAGAAACTCTGAAAAGTGGAAAATCCAAGCAAGGAACACCTAAGATTGCATCTTCCTCCAAGACAAAATCCACCAAGAGTACTGCCAAGGTGAAATTTAATTTGCTGCAGGAAGAAGATTCTGAAAATGAGAACTCTGATGATTCATCAAAAGAGGTTGAAGTCGCAAAGGTTAAGACACCAAGTTCTTCAAAGGCCGGAAGCGAGGTCAAGAGTGGAAAGAAGCGATCAAGAAACTAG

Protein sequence

>MS.gene51788.t1

MASIDKELEEELLGAGNKLLDPPSSVDNLLDILIQIESCLSRIEQSPSESMLNALSPSLKALIADKLLKHSDVDVKVALASCFSEITRITAPDAPYDDGQMKEVFRLIVSSFENLHDKSSRWYSKRTLILETVAKSGNIMQKMFSSSMETIMILCLEESEEISHELLSPILDSVKKDNEEVLPIARKLGERVLESCATRLKPNLLQAVNTLGISLDDYSDVLASICKETSDNLAQNDVCATSGHMVHDRKSAEEPVEESAQVSHTTTTDNAAGERSPKSVMSNGIAQAGEDDTLDVSKSLKNQDDGTDSPVLSKGNNLSGNDERDDMDTEKIDSKEPKLERSTRRKGKKASSSKSTKPSKKSNVFQKEVPISLNEDSVVEATGTSENDKEIKAKISSSKAGGLESDAVGSPSPSESNHDENRSKKRARTKKNDSSAKEVAAEDISKKVSEGTSDSKVKPARPSAKKGPIRSSDVKTVVHAVMADVGPSSAEAGGQEKEDTCEGSSEKGLAKSSAEERISYENNQDEHQRRTPKTTLKRKRTPGKEKGSDIKKNEQSLVGKRVKVWWPDDNMFYKGVVDSFDSSTKKHKVLYDDGDEEILNFKEEKYEIVEVDADPDVEEGSHRASPEPSADMPLKKKGKTNAGESKRNSGGATSSKSKTPSAKSTQKSKIVGKSDGEVSKKSKDSAQKTGGKSEDRSVKSGGKSEDRSVKSGGKSEDRSVKSGSKSVDSAQKNNSKKTDGSKTKKSKDDDVETPKPAAAKSKQETLKSGKSKQGTPKIASSSKTKSTKSTAKVKFNLLQEEDSENENSDDSSKEVEVAKVKTPSSSKAGSEVKSGKKRSRN