CDS

Accession Number TCMCG061C15541
gbkey CDS
Protein Id XP_042053639.1
Location join(12381839..12381841,12382332..12382460,12382835..12382963,12383155..12383231,12383318..12383474,12384113..12384171,12384273..12384432,12384509..12384658,12384735..12384871,12384943..12385089,12385181..12385282,12385350..12385407,12385490..12385591,12385779..12385816,12385912..12386038,12386126..12386308,12386415..12386546,12386626..12386732,12386810..12386870,12388050..12388227,12388416..12388621,12388701..12388820,12389260..12389358,12389577..12389825,12389908..12390047,12390453..12390703,12390979..12391031)
Gene LOC121798622
GeneID 121798622
Organism Salvia splendens

Protein

Length 1117aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA737421
db_source XM_042197705.1
Definition myosin-9-like isoform X2 [Salvia splendens]

EGGNOG-MAPPER Annotation

COG_category Z
Description Belongs to the TRAFAC class myosin-kinesin ATPase superfamily. Myosin family
KEGG_TC -
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko03019        [VIEW IN KEGG]
ko03029        [VIEW IN KEGG]
ko04131        [VIEW IN KEGG]
ko04812        [VIEW IN KEGG]
KEGG_ko ko:K10357        [VIEW IN KEGG]
EC -
KEGG_Pathway -
GOs -

Sequence

CDS:  
ATGGGCAAGCCACCCAAGGTATATGAAGGTTCTCACATTTGGGTTGAGGATCCGGGGGTTGTTTGGATTGATGGGAAAGTGGTAAAGATTAATGGGGACGAAGTTGAAGTTGAAACATCTGATGAAAGGAGGCTTACTGCTAGCATATCCAAAACATACCCGAAAGATGAAGAGGATCCTGCTGAGGGATTCGACGACATGACCAAACTTTCGTATATGAATGAACCTGCAGTTCTGCATAACTTGGATATGAGATACAAGATGATGGAACGATACCACAGAGCATCATTTGGTGAATTGAGTCCACATGTATATGCGATTGGAGAGGCTGCCTTCAGGGAAATGATGATTGAGGGAAAAAGTAACTCAATACTGGTAAGCGGAGAAAGTGGTGCCGGTAAAACTGAAACTACTAAGATGCTTATGCAATATCTTGCTTATTTGGGTGGCCATAAAGGAGGCGAAGGGAGATCAGTAGAACAGCAAGTTCTTGAGTCAAATCCAGTCCTTGAAGCATTTGGAAATGCCAAGACTGTCAGAAATGACAATTCTAGCCGATTCGGTAAATTTGTTGAACTCCAGTTCGACCATCATGCAAAAATATCAGGGGCAGCCATCAGAACATATCTTCTTGAGAGATCTCGTGTCTGCCAAATTTCAGAACCTGAGCGCAATTACCACTGTTTTTACTTTTTGTGTGCAGCACAAGAGGGGGAAATTAAGAAGTATAAGCTGGGACATCCACAGACATTTCACTACTTAAACCAATCTACTTGCTTTGCACTGGATGATGTGGATGATGCTCATGATTATTTGGCAACAAGGAAGGCCATGGATGTTGTTGGAATCAGTCAAGAAGAGCAGGATTCAATCTTCAGAATTGTTGCATCTATTCTCCATCTTGGTAATGTTAGATTCGCCAAGGGGGAAGAGATTGATTCATCTGTCCTCGAGGATGAGAAATCAAAGTTCCATCTCCAGACTGCAGCAGAGCTATTACTGTGCGATTCTGAAGCTCTGGAAGATGCATTACTGAGGCGTGTGATGGTCACTCCAGAAGAAGTTATCAAAAGATGTCTTGATCCTGATGGTGCAATAGTTAGTAGGGATGGATTAGCTAAGACAATTTATTCTCGCTTGTTTAACTGGTTGGTGGAAAAAATAAATTTATCCATCGGGCAAGATCCGTCTTCGAAAAGTCTTATTGGAATCCTTGACATTTATGGTTTTGAAAGTTTTAAAACTAATAGTTTCGAACAATTTTGCATTAATTTTACCAATGAAAAGCTACAACAACATTTTAATCAGCATGTTTTTAAGATGGAGCAGGAGGAATACACCAAAGAAGAGATTTCCTGGAGCTACATAGACTTTGTGGATAACCAAGATGTTCTAGATCTTATAGAGAAGAAACCTGGAGGAATCATTGCTCTTCTTGATGAGGCCTGTATGTTCCCAAAGTCCACACCTGAAACATTTGCAGAAAAGCTTTATCAGATATTTAAAACCAACAAACGTTTCATCAAACCGAAATTGTCACGTACTGATTTCGCAATTTCTCATTATGCTGGAGAGGTTCAATACCAATGTGATCAGTTTTTGGACAAAAACAAAGACTATGTCGTCCCTGAACATCAGGACCTGCTAACTGCTTCGAAATGCCCATTTGTAGTAGAACTGTTTCCTCCAATTTCTGAAGAGACAACTAAATCATCAAACAAGTCTTCTAAATTTTCATCAATAGGTTCTCGCTTTAAGTCTCAACTCCAACAATTGATGGAGACCCTGAATTCCACAGAACCTCACTACATTAGATGCGTGAAACCTAATACCCTTTTCAAACCTAGTATTTTTCAAAAGGAAGATGTTATGCAGCAACTTCGTTGTGGTGGTGTTTTAGAGGCAATTAAAATTAATTTAGCCGGTTATCCTACTCATAAGACATTTGATGAATTTTTTCAACGGTTTTCTGCTCTGGTGCCAGAGTTGGAAGGAGAAATTGATACAAAAGATGCATCCAAAATAATTTTAGAGAAGATGAGCATTGATGGAGCTCAGATAGGAAAAACTAAGATCTTCCTCAGAGCTGGTCAATTGGCTACTTTAGATGCTCACAGCGCATTAAAATTAGGTGATGCAGCAAAGGTGATACAAAGAAAAACTAAAACTCATAGGGCCCGACAAAACTATTCTTCCACAGTCAAGGCAGCGGTTGTACTTCAATCTATATGCAGAGGAATGCTTGCTTTCAATTTTTACCAAGTTGTAAGAAAGGATGCAGCAGCCCTTAAAATCCAAACTGATTGGAGATGGCATAAATTCAATCAGAACTATAACAAACTCAAGAGAGCAACTACTTCACTGCAAGCAATAATAAGAGCAATGGCTGCACGGAAGCAGTATGATTTCACAAAACAAACCAAAACAGCGACTGTTATACAGTCCCGGTGGCGTGGCCATAAAGCTTTTTCACAAGCTAGGCGAGCCATAAGGGCAACGGTTTTTATCCAAAGTGGATGGAGGAGAGTGTCAGCTACAAGAGAGCTTCGACAACTGAAAGTGGCTTCAAGAGAAACAAGTGCACTTCAGGAAGCAAAGAGTAAGCTTGAAAAGCTAGTGGATGAACTGAGATCACAGTTAGAGATGGAAAGACATATGCGAGCTGCCTTGGAGAAAAAGCTGGAACAGTCATTGGATGCTATGCAAACCCAAGGCGATAAAACAAATAGTCTTCTTGAAGATGAAGCTGCAAGAGCTAGCAAGCTTGAGGGCGAAGCTGCTCATATCGCAAGTGACGCTGCTCGCATCGCAATCGATGAAGCCTTCTCAATCATGAAGGAGAGAGGGGTTCCAATTGAAGAAGGATTAGGAAGGACTGAGTATTCAAATTCTGATGTGGAAAGATTGAAGGGATTGTTAAAATCTGAAAAGAAACGGGCTGATGATATGGAGAGACGGTATACTGAAGCTATGGAATCAGTTGACGGAAAGCGGCTGAAGTTAGAAGAAACCGAAAGAAGAGTTCACCAACTTCAGGAATCACTGAATAGGATGATGTACAGCATCTCTGGTCAATTCTCAGAGCTACAAATGGTATTATGTGCATCTACATCAAGTTCAGCTTTGGGGATCGTGACTAAGGATGAAAAAGGTGATAGTTCTTCCACCTCTTCAGAAACGACATCTTCCGACTCTGATTTCACATTCCCAGCCCCTGCTTCAACTCCAGCAGACATTTCTTCTGCCAATTCTAGTGCACTTCAGCTCATTGTTCAGGATCTTTCAGCAGCTGAGGTTTCAGGATCTGGAAAGTGGAAAAATGATCGGGAGGGGGCATTCGATGACTTTTTCTGA
Protein:  
MGKPPKVYEGSHIWVEDPGVVWIDGKVVKINGDEVEVETSDERRLTASISKTYPKDEEDPAEGFDDMTKLSYMNEPAVLHNLDMRYKMMERYHRASFGELSPHVYAIGEAAFREMMIEGKSNSILVSGESGAGKTETTKMLMQYLAYLGGHKGGEGRSVEQQVLESNPVLEAFGNAKTVRNDNSSRFGKFVELQFDHHAKISGAAIRTYLLERSRVCQISEPERNYHCFYFLCAAQEGEIKKYKLGHPQTFHYLNQSTCFALDDVDDAHDYLATRKAMDVVGISQEEQDSIFRIVASILHLGNVRFAKGEEIDSSVLEDEKSKFHLQTAAELLLCDSEALEDALLRRVMVTPEEVIKRCLDPDGAIVSRDGLAKTIYSRLFNWLVEKINLSIGQDPSSKSLIGILDIYGFESFKTNSFEQFCINFTNEKLQQHFNQHVFKMEQEEYTKEEISWSYIDFVDNQDVLDLIEKKPGGIIALLDEACMFPKSTPETFAEKLYQIFKTNKRFIKPKLSRTDFAISHYAGEVQYQCDQFLDKNKDYVVPEHQDLLTASKCPFVVELFPPISEETTKSSNKSSKFSSIGSRFKSQLQQLMETLNSTEPHYIRCVKPNTLFKPSIFQKEDVMQQLRCGGVLEAIKINLAGYPTHKTFDEFFQRFSALVPELEGEIDTKDASKIILEKMSIDGAQIGKTKIFLRAGQLATLDAHSALKLGDAAKVIQRKTKTHRARQNYSSTVKAAVVLQSICRGMLAFNFYQVVRKDAAALKIQTDWRWHKFNQNYNKLKRATTSLQAIIRAMAARKQYDFTKQTKTATVIQSRWRGHKAFSQARRAIRATVFIQSGWRRVSATRELRQLKVASRETSALQEAKSKLEKLVDELRSQLEMERHMRAALEKKLEQSLDAMQTQGDKTNSLLEDEAARASKLEGEAAHIASDAARIAIDEAFSIMKERGVPIEEGLGRTEYSNSDVERLKGLLKSEKKRADDMERRYTEAMESVDGKRLKLEETERRVHQLQESLNRMMYSISGQFSELQMVLCASTSSSALGIVTKDEKGDSSSTSSETTSSDSDFTFPAPASTPADISSANSSALQLIVQDLSAAEVSGSGKWKNDREGAFDDFF