CDS

Accession Number TCMCG049C39713
gbkey CDS
Protein Id XP_034926447.1
Location join(3011664..3011666,3012446..3012574,3014099..3014242,3014512..3014657,3014750..3014906,3015067..3015125,3015247..3015406,3015900..3016049,3016123..3016259,3016357..3016503,3016615..3016716,3017150..3017207,3017305..3017406,3018487..3018524,3018663..3018789,3018907..3019077,3019165..3019296,3019387..3019496,3019624..3019684,3020549..3020726,3020864..3021069,3021601..3021720,3022298..3022396,3022744..3022956,3023156..3023295,3023445..3023556,3023652..3023672,3023780..3023857,3023961..3024131,3024284..3024424,3024627..3024809,3025384..3025503,3025586..3025656,3025764..3025863,3026395..3026451,3027219..3027275,3027877..3027957,3028071..3028150,3028231..3028345)
Gene LOC118057826
GeneID 118057826
Organism Populus alba

Protein

Length 1491aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA638679
db_source XM_035070556.1
Definition myosin-6-like isoform X2 [Populus alba]

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:  
ATGGCTGCTCAAGTCAATTCAATGGTTGGATCTTTTGTTTGGGTGGAGGATCCTGAGGAAGCTTGGATGGATGGGGAAGTTGTGGAAGTTAATGGTGAAGAAATTACAGTAAACTGTGCATCAAGGAAGGCAGTTGTTGCTAAAGCATCTAATGTTTTTCCAAAGGATCCTGAATTTCCTCCATGTGGCGTGGATGATATGACCAAGCTGGCATATTTGCATGAACCAGGGGTTTTGCAGAATCTTAGATGTAGATATGATATAAATGAAATATACACTTACACAGGAAATATATTGATTGCTGTGAACCCTTTCCGAAGACTTCCTCATTTATATGATAATCATATGATGGAACAGTATAAAGGGGCAACCATTGGTGAGTTGAGCCCACATCCTTTTGCCGTGGCAGATTCAGCATACAGACAGATGATTAATGAAGGAATAAGCCAGTCAATTTTGGTTAGTGGGGAAAGTGGAGCTGGTAAAACAGAGAGTACAAAAATGCTCATGCGTTATTTGGCCTACATGGGAGGGAGGGCTGCAGCTGAGGGACGGTCTGTGGAGCAGCAAGTTTTAGAGTCCAATCCTGTTCTGGAAGCATTTGGTAATGCAAAGACACTGAGAAATAATAATTCAAGCCGTTTTGGTAAGTTTGTGGAGATTCAGTTTGATCAAAGGGGGAGGATTTCAGGAGCTGCTATTAGAACTTATTTACTGGAACGCTCCCGGGTTTGTCAAGTGTCTGATGCTGAGAGAAACTATCATTGTTTTTACATGCTCTGTGCTGCGCCAGCAGAGGTTATAGAGAAGTACAAATTGGGAAATCCTAGAACATTTCATTATCTTAATCAATCAAATTTCTATGATCTGGATGGAGTGAATGAGTCTGAGGAGTATCTGGCGACCAGAAGAGCTATGGATATTGTTGGGATAAATGCTAATGAACAGGATGCAATATTCCGAGTTGTGGCTGCAATACTACATCTAGGCAATGTGGAGTTTGCTAAGGGAAATGAAATAGATTCTTCTAAACCTAAGGATGATAAGTCTCAGTTTCATCTCAAGACAGCAGCTGAACTTTTGATGTGCAATGAGAAGTCTCTTGAAAACTCATTATGCAAACGTGTGATAGTAACTCGTGATGAGAGCATAACAAAATGGCTCGATCCAGATGCCGCAACTGTCAATAGAGATACTTTGGCCAAAATTGTTTATTCGAGATTATTTGACTGGATCGTAAACACAATAAACAACTCTATTGGTCAAGATCCTAATTCCAAATCTTTAATTGGAGTTCTGGATATATATGGATTTGAGAGTTTCAAGACAAACAGTTTTGAGCAATTTTGTATAAACTTGACCAATGAAAAGCTGCAGCAACACTTCAACCAGCATGTCTTCAAGGCGGAGCAAGAAGAATATACAAAGGAAGAAATTGATTGGAGTTACATAGAATTCATTGATAACCAGGATATTCTTGATCTGATTGAAAAGAAACCTGGCGGCATCATTGCTCTGCTTGACGAAGCTTGTATGTTTCCTAGATCAACACATGAAACATTTGCAGAAAAGCTTTATCAGACTTTCAAAGACCACAAACGTTTTAACAAACCTAAGTTAGCTCGCAGTGACTTCACCATTTGTCATTATGCTGGAGATGTGACATATCAAACTGAACATTTTCTGGATAAGAACAAGGATTATGTTGTTGCAGAGCATCAAGCTCTTCTCAGTGAGTCCAAGTGCTCCTTTGTTTCAGGCCTGTTCCCACCATTGCCTGAGGAATCTGCCAAATCATCAAAGTTCTCATCAATAGGTTCTAGGTGTAAGCAACAACTACAAGCATTACTTGAAACACTGAGTGCTACTGAGCCACATTACATTCGTTGTGTAAAACCGAATAATGCTCTAAAGCCATCCATCTTTGAGAATAATAATGTTTTACAACAGCTGTGTTGTGGGGGTGTGATGGAAGCAATTAGGATTAGCTGTGCTGGATATCCCACCAGGAAGACTTTTGATGAATTTGTTCGTCGTTTTGCCATTCTGGCACCAGATGTGCTGCATGGCGGCTGCAATGAGGTTAGTGCTTGCAAGATGCTTCTAGAGAAGGTGAACCTCGAAGGTTATCAGATTGGCAAAACAAAAGTTTTTCTTAGAGCTGGTCAGATGGCTGAGCTAGATGCTCATCGAAGTGAGCTGTTAGGAAGATCAGCAAGCATCATCCAGAGGAAAGTTCGTTCGCATTTTTGTCGCAAAAGCTTTATCTTATTGCGGCAGTCTGCCATTCATATCCAAACTTCATGTAGAGCTGAAGTAGCACGCAATAGGTTTGAATGCCTGAGAAGAGAAACTGCTTGTTTGAAAATCCAGAAATATTATCGCAGGTACCTTGCAAGTAAAGCATACAACAATTTGTGCTTCTCAGCTGTCTCCATTCAGTCATGCATGCGTGGAATGGCTGCTCGTAATGAGCTTTGTTTCAGGAAGCAGATGAGAGCTGTTATTGTCATCCAGAGTCAATGCCGAAAACATTTGGCCCAACTTCATTATTTGAGGTTAAAACGAGCAGCAATTGCCACTCAATGTGCCTGGAGAGGTCGGGTTGCTCGTAAAGAATTACGGAAGCTTAAAATGGCTGCTAAGGAGACTGGTGCTCTCCAAGCTGCAAAAAGTAAACTGGAAAAGGAAGTTGAAGAACTCACCTGGCGTCTGCAGCTGGAGAAACGAATGAGGGCTGACCTAGAGGAATCCAAAACACAGGAAAATGCAAAATTACGCACAGCATTGCAAGAAATGCAGCTTGAATTCCAAGAATCTAAAGCTCTGTTAATCAAGGAACGAGAGTCTATAAAGAAAGAAGCTGAACAAGTCCCAACCATACTGGAAGTCCCAGTTATTGATAATGAACTGGTGAATAAACTTACTGCTGAAAATGAAATGCTCAAGGCTATGGTAAGCTCACTGGAAAAGAGAATTGATGAAACAGAGAAGAACTATGAAGAGACAAGTAAGCTTAGTGAAGAGCGTCTGAAGCAGGCTTTGGATGCAGAGTCAAAGATAATTGAGCTGAAAACAGCCATGCAGAGGCTTGAAGAAAAACTTTCTGACATGGAAGTTGAGGACCAAGTTCTGCGGCACCAAGCACTGTTCAGTTCATCTTCAAGAAAAATGTCAGAACATTTGGAAATTACCTCTCAGCATCTAGAAAATGGTCATCATGAACCACCAACTCCATCTAAAAGGCTTGGCACAGATGCTGACAAAAAAATGAGGAAATCTCAGATTGAACGGCTACATGAGAGTGTAGATGCTCTAATAAAATGCGTGGAGCAAAATCCTGGGTTTAGTCAAGGAAAACCAGTTGGAGCATTTACCATTTACAGATGCCTTGTCCAGTGGAGATCGTTTGAAGCAGAAAAAACCAGTGTATTTGATCGTCTTATTCAGATGATTGGTTCTGCAATAGAGAACCAGGATGACAATAATCATATGGCATACTGGTTATCTAATACCTCAATGCTGCTGTTCTTACTTCAACGGACTTTAAAAGGCAGTGGTGCCAATTCAAATCCACCTCCTCCAACATCATTTTTTGGAAGGATGGCCCAAGGTTTCCGTACTTCACCTTCTTCTGCCAATCTTAGAGTTGGTAAAGATATACAGATGGTTGAGGCCAAGTATCCAGCCTTGCTTTTTAAACAGCAGTTGACAGCATATGTGGAGACAATATATAGCATTGTTCGGGATAATTTTAAAAAGGATTTATCACCTCTTCTTTCATCATGTATCCAGGCACCAAGGGGAACTGCTTTAAAATCATCTCTGTCATTTGGCCATAGTACGCCAGCTGATTCCTGGCGCAGCATTGTCAATAGTCTTGATGGGCTGCTATGCACATTGAAAGAAAACTTTGTGCCTCCAATTTTTGTGCAGAAGATATTTACTCAAATTTTCTCATACATCAATGTGCAGCTGTTTAATAGCCTTCTGCTTCGTCGAGAGTGCTGCACATTCAGCAATGGGGAATATGTGAAGGCTGGGTTAGCTGAATTAGAATTATGGTGTGGCCAAGCAAAAGAAGAGTATGTAGGAGCATCCTGGGATGAACTTAAACACACTAGGCAAGCTGTTGGATTCTTGGTTATACACCAGAAATCGAGAATTTCCTATGATGAAATCACCAATGACCTTTGTCCGGTCCTTAGTGTCCAACAGCTATACAGAGTATGCACTTTATACTGGGATGACGACTACAATACTCGAAGTGTATCTACTGATGTGATTTCCAGCATGAAAATACTTGCAAACGACTCAAATGATGATGATGGCAACTCATTCTTGATAGATGACAATTCAAGCATTCCTTTCTCAGATGATGACTTATCTGGCTCCTTTCACGAGAAGGATTTCTCAGATGTAAAACCTGCTGCAGATCTTCTGGAGAATCCAGCCTTCCAATTTTTACAGGATTAA
Protein:  
MAAQVNSMVGSFVWVEDPEEAWMDGEVVEVNGEEITVNCASRKAVVAKASNVFPKDPEFPPCGVDDMTKLAYLHEPGVLQNLRCRYDINEIYTYTGNILIAVNPFRRLPHLYDNHMMEQYKGATIGELSPHPFAVADSAYRQMINEGISQSILVSGESGAGKTESTKMLMRYLAYMGGRAAAEGRSVEQQVLESNPVLEAFGNAKTLRNNNSSRFGKFVEIQFDQRGRISGAAIRTYLLERSRVCQVSDAERNYHCFYMLCAAPAEVIEKYKLGNPRTFHYLNQSNFYDLDGVNESEEYLATRRAMDIVGINANEQDAIFRVVAAILHLGNVEFAKGNEIDSSKPKDDKSQFHLKTAAELLMCNEKSLENSLCKRVIVTRDESITKWLDPDAATVNRDTLAKIVYSRLFDWIVNTINNSIGQDPNSKSLIGVLDIYGFESFKTNSFEQFCINLTNEKLQQHFNQHVFKAEQEEYTKEEIDWSYIEFIDNQDILDLIEKKPGGIIALLDEACMFPRSTHETFAEKLYQTFKDHKRFNKPKLARSDFTICHYAGDVTYQTEHFLDKNKDYVVAEHQALLSESKCSFVSGLFPPLPEESAKSSKFSSIGSRCKQQLQALLETLSATEPHYIRCVKPNNALKPSIFENNNVLQQLCCGGVMEAIRISCAGYPTRKTFDEFVRRFAILAPDVLHGGCNEVSACKMLLEKVNLEGYQIGKTKVFLRAGQMAELDAHRSELLGRSASIIQRKVRSHFCRKSFILLRQSAIHIQTSCRAEVARNRFECLRRETACLKIQKYYRRYLASKAYNNLCFSAVSIQSCMRGMAARNELCFRKQMRAVIVIQSQCRKHLAQLHYLRLKRAAIATQCAWRGRVARKELRKLKMAAKETGALQAAKSKLEKEVEELTWRLQLEKRMRADLEESKTQENAKLRTALQEMQLEFQESKALLIKERESIKKEAEQVPTILEVPVIDNELVNKLTAENEMLKAMVSSLEKRIDETEKNYEETSKLSEERLKQALDAESKIIELKTAMQRLEEKLSDMEVEDQVLRHQALFSSSSRKMSEHLEITSQHLENGHHEPPTPSKRLGTDADKKMRKSQIERLHESVDALIKCVEQNPGFSQGKPVGAFTIYRCLVQWRSFEAEKTSVFDRLIQMIGSAIENQDDNNHMAYWLSNTSMLLFLLQRTLKGSGANSNPPPPTSFFGRMAQGFRTSPSSANLRVGKDIQMVEAKYPALLFKQQLTAYVETIYSIVRDNFKKDLSPLLSSCIQAPRGTALKSSLSFGHSTPADSWRSIVNSLDGLLCTLKENFVPPIFVQKIFTQIFSYINVQLFNSLLLRRECCTFSNGEYVKAGLAELELWCGQAKEEYVGASWDELKHTRQAVGFLVIHQKSRISYDEITNDLCPVLSVQQLYRVCTLYWDDDYNTRSVSTDVISSMKILANDSNDDDGNSFLIDDNSSIPFSDDDLSGSFHEKDFSDVKPAADLLENPAFQFLQD