CDS

Accession Number TCMCG067C28261
gbkey CDS
Protein Id KAF8090914.1
Location join(192133..192341,192578..192737,193169..193261,193395..193497,193596..193758,195441..195615,196151..196279,196373..196930,197035..197673,197795..197863,198120..198230,198297..198539,199151..199198,199288..199416,199645..199800,199877..199939,200090..200200,200289..200372,200472..200519,200784..200858,201080..201175,201301..201381,201460..201603)
Organism Sinapis alba
locus_tag N665_0462s0048

Protein

Length 1228aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA214277, BioSample:SAMN02744833
db_source MU106012.1
Definition hypothetical protein N665_0462s0048 [Sinapis alba]
Locus_tag N665_0462s0048

EGGNOG-MAPPER Annotation

COG_category A
Description BEST Arabidopsis thaliana protein match is
KEGG_TC -
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko03019        [VIEW IN KEGG]
ko03021        [VIEW IN KEGG]
KEGG_ko ko:K06100        [VIEW IN KEGG]
EC -
KEGG_Pathway ko03015        [VIEW IN KEGG]
ko04530        [VIEW IN KEGG]
map03015        [VIEW IN KEGG]
map04530        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGGCTGCCGCCGCGACAGCCAAGGCGCAGGCGCTCTCTCTCCTCGCCGCTGCCAACAACCACGGCGATTTGGCTGTGAAACTCTCGTCTCTTAGACAGTTGAAGGAGATATTGCTCTCGTTGGAGCCGTCTCTCTCCGCTGAGATTTTTCCCTACCTCGCAGAACTCCACTTGTCGCCTGAAATTATAGTTCGCAAATCCCTTATCGAGATCATTGAAGAGGTTGGTTTGAGGATGCTGGATCATTCTGATGTTCTACTGACTGTCTTACTAGTCTTAGCGAGGGACGAGGATCCTGTTGTTGCAAAGAAAGCTATTTCTGTTGGAACAGCTTTTTATTGCAGCATCTTGGAGGAGATGGCAATGCAGTTTCATCATCGTGGTAAAGTTGATCGTTGGGTTGGGGAACTATGGACATGGATGGTTAAGTTCAAAGATGCTGTCTTTTCTACCGCTTTGGAGCCTGGTTGTATAGGGGTGAAAGTTTTGGCGTTAAAGTTCATGGAGATATTTATTTTACTTTTTACTCCTGATGCATCTGATCCTGAGAAAATTTTCAACCAAGGAAGTAGACAGATGTTTAACATTTCGTGGCTTGCTGGCGGTCACCCCATTCTAAATTCAGCAATGCTCATGTCTGAAGCAAATAGGACATTTGGCATCTTACTAGATCTCATACAGTCGGCTGGTCGTTTACCGGGTGCAGTGACGATAAGTGTTGTTAGTCGTCTTGCGGTGGTAGCAAGGAAGAGGCCTGTCCACTACAACAGTGTCCTTTCCGTTCTACTGGATTTTCACCCAAATCTTGAGTCGGTAAAGGGGTGCCATGCTGCAAGCGTTCAGTATTCCATAAGAACTGCCTTACTGGGATTCCTTAGATGTACTTCCTCACCTATGATAGAGTCAAGAGACAAGCTTCTTAGAGCATTACGAGCAATGAATGCTGCAGACGTTGCTGATCAAGTTCTCCGCCAAGTTGATAAATTGATCAGAAATAATGAGCGCGCTGCACGTGAAAATTGGTCAGGCAAGAACAACCAGGCGGTAAATCATCAGAATTCTTGGGATTTGTCAAAGAAACGAATAATGCCCCAGGGTGAAGATGATTCAGTCAATGGAGAGGTTGCTCCGAAGCGCTTACGCCATAATAATAACATTCATTTGACTCCGCAAGTTCAAATAAGTGATTCTCCACATGGAACTGTCTCTATCAATGGCATATCCTCTGGTAACCATCCTTCGGACAGTGAGCCGACTCCAGCGGAACAAATGATTTCAATGATTGGTGCTTTGCTTGCTGAAGGAGACAGAGGAGCTGCATCACTTGAAATTCTCATTTCTCAGCTTCATCCAGATATGCTTGCTGATATTGTTATTACAAGCATGAAACATTTGCCTAGTAGCCCTCCTACATTGACAACTTCACTGGCTACTCCAGCAGATATTGTCGTTTCTTCTTCCATAAATCCCATGCGTTCTCCGACTCGTCAGCCACAACTTCCTTTCGATTCAACCCTTCCTGTTGGGTCATCATTATCCGATGTGCCTAGCTTGAACGCGGGTGTCGACCCTAGACGCGACCCAAGAAGGGACCCTCGTCGCATGGATCCAAGACGTTCAAATCCATCTGTGGGACCAACATCACTGCCTGTAGGTGAGGATAAAGAAACAGACCCAGTTCAGATGGACATCTCGACCTTAGCGAGCAAGCCACCTTCGGTTCCTGCTGTCACAGCAGGGGCTCGTGGTTCAGTACATCCAACAACAGTAGAGCATAACCAAAACAAGGTGATGGGAAGTTCGGTAATCAGAAGAATCGATCAGCCTGATTGCAGAGAGGACTTGTTGCCTATTCCCAAGGAGTGTGGTTACCTCTCAAAGGGCAAATCATCTTTAGATGTTCCACTATCTCCTTGCAGGGATGATGAAGGCATCAGAAAAACAAAGTTTGATTTTGATCTAGTGTCTGTTCCAGATTGTAATCAACACTTGCTTTCAGAAGCAGAGCCAGATTTTGATCTACAACCCCCTGTAGACTCAAATATTACTGCAGCCGAGGAAAGTTCCCGAGAGTTGGCACCAGTTCCATCATATGTTGAACTTACCACAGAGCAAAGCAACACTGTAGGAAAGTTGGCTTTAGAAAGGATAATTGAATCAAATAGACATGTCTGTGGGTTTGATTGTAACAAGATTCGCATGGCATTGATTGCCCGATTGATTGCTCAGATTGATGCTGGCAATGATGTTGCAGCCATACTAAGAGAGCATATTTGTGTGGATCATCGAGAATTCAAGGGGCATGAACTTGTTTTACATGTTCTGTACCATCTGCATTCGATGGCGAATCTGGACACTGTTGAATACTCTTCCTATGCTACTGTTTATGAAAATTTCCTCATAGCAGTGGCAAGATCATTTCTGGATACTCTTCCTCCTTTCGACAAGTCTTTTAGCAGACTTTTTGGAGAAGCTCCACATCTACCTGATTCTGCCATAAAGCTACTTGATGAACTCTGCTCCACTCGTCCTAACCCAATTGGAGGCGAAGCTTGTGATAGTGAACGTGTTACCCAAGGGCTTGGTGTAGTTTGGAGCTTAATTCTAGTGCGTCCAAATGAGCGAAAATCATGCTTAGCTATAGCATTGAATTGTTCAGTTCATTATGAAGAAGACATCCGTGCAAAAGCCATCCGACTTGTCACAAACAAACTATATCACCTTACATTCATATCAGAGCATGTTGAGCAATTTGCAACAGATAGGTTGCTGACTGCTGTGAACTCTGAGACAGATTTATCACAGACTGCAGAAGGAACAAAAATAGAGTCTAAAAGTCAGATAAATTCGACAAGTGACTCTCCAAGGTCTGGAAACTCCGACATTCACTCTCAGCAGGATCTACAAACTTCTCGCGATGTTTCTGTTTTATCATTTTCTGAAGCTCAGAGACTAATTTCTCTGTTCTTCGCTTTATGTAAAAAGAAACCTAGTCTCCTTCAGCTTGTCTTTGAAGTTTACGGGAAAGCCCCAAAAACAGTTATCCAGGCTTTTCATCGACATATGCCTATCCTGATACGAGAATTAGGTTCATCTTATATTGAACTACTCCCTATAATATCTGATCCTCCTAAGGGAAGTGAAAATTTATTGACATTGGTGTTGCAAATATTGACACAAGAATTGGCACCTTCGTTGGATTTGATTGCTACTGTAAAGCATCTATATGAAACGAAGCTAAAGGATGTTTCAATTCTTATTCCATTGCTTTCTTCACTCTCTAAAGACGAGGTTTTGCCTATCTTTCCACCGCTTCTTAATCTTCCACCTGATAAGTTCCAACTTGCACTTGCTCATATATTACAGGGTTCTGCTCACACTGGTCCTGCCTTAACACCTGCCGAGGTACTGATTGCTATTCACGAGGTTGTTCCTGATAAAGATGGGCCAACACTGAAAAAGATAACAGATGCATGTTCAGCTTGCTTTGAACAACGCACAGTTTTCACGCAGCAAGTCTTAGCAAAGGCCCTCGGTCAGATGGTTGATCGAACACCTCTGCCTTTACTCTTCATGAGAACAGTAATTCAGGCAATTGATGCTTTTCCAACACTGGTAAGTGTCGTAATGGGTAGAGTTAAAGAACAAAGTGACGTAAGAACCCAAAAGCTATTTTATAAAACCTGA
Protein:  
MAAAATAKAQALSLLAAANNHGDLAVKLSSLRQLKEILLSLEPSLSAEIFPYLAELHLSPEIIVRKSLIEIIEEVGLRMLDHSDVLLTVLLVLARDEDPVVAKKAISVGTAFYCSILEEMAMQFHHRGKVDRWVGELWTWMVKFKDAVFSTALEPGCIGVKVLALKFMEIFILLFTPDASDPEKIFNQGSRQMFNISWLAGGHPILNSAMLMSEANRTFGILLDLIQSAGRLPGAVTISVVSRLAVVARKRPVHYNSVLSVLLDFHPNLESVKGCHAASVQYSIRTALLGFLRCTSSPMIESRDKLLRALRAMNAADVADQVLRQVDKLIRNNERAARENWSGKNNQAVNHQNSWDLSKKRIMPQGEDDSVNGEVAPKRLRHNNNIHLTPQVQISDSPHGTVSINGISSGNHPSDSEPTPAEQMISMIGALLAEGDRGAASLEILISQLHPDMLADIVITSMKHLPSSPPTLTTSLATPADIVVSSSINPMRSPTRQPQLPFDSTLPVGSSLSDVPSLNAGVDPRRDPRRDPRRMDPRRSNPSVGPTSLPVGEDKETDPVQMDISTLASKPPSVPAVTAGARGSVHPTTVEHNQNKVMGSSVIRRIDQPDCREDLLPIPKECGYLSKGKSSLDVPLSPCRDDEGIRKTKFDFDLVSVPDCNQHLLSEAEPDFDLQPPVDSNITAAEESSRELAPVPSYVELTTEQSNTVGKLALERIIESNRHVCGFDCNKIRMALIARLIAQIDAGNDVAAILREHICVDHREFKGHELVLHVLYHLHSMANLDTVEYSSYATVYENFLIAVARSFLDTLPPFDKSFSRLFGEAPHLPDSAIKLLDELCSTRPNPIGGEACDSERVTQGLGVVWSLILVRPNERKSCLAIALNCSVHYEEDIRAKAIRLVTNKLYHLTFISEHVEQFATDRLLTAVNSETDLSQTAEGTKIESKSQINSTSDSPRSGNSDIHSQQDLQTSRDVSVLSFSEAQRLISLFFALCKKKPSLLQLVFEVYGKAPKTVIQAFHRHMPILIRELGSSYIELLPIISDPPKGSENLLTLVLQILTQELAPSLDLIATVKHLYETKLKDVSILIPLLSSLSKDEVLPIFPPLLNLPPDKFQLALAHILQGSAHTGPALTPAEVLIAIHEVVPDKDGPTLKKITDACSACFEQRTVFTQQVLAKALGQMVDRTPLPLLFMRTVIQAIDAFPTLVSVVMGRVKEQSDVRTQKLFYKT