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Accession Number |
TCMCG081C26848 |
gbkey |
CDS |
Protein Id |
XP_002274609.1 |
Location |
complement(join(7337163..7337231,7338066..7338146,7345604..7345711,7345870..7345929,7346308..7346382,7346508..7346693,7350801..7350920,7354592..7354774,7357693..7357821,7358569..7358770,7362733..7362854,7368019..7368192,7375606..7375737,7375834..7375923,7381929..7382198,7382334..7382627,7382709..7382909,7384338..7384809,7388355..7389349)) |
Gene |
LOC100248755 |
GeneID |
100248755 |
Organism |
Vitis vinifera |
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Length |
1320aa |
Molecule type |
protein |
Topology |
linear |
Data_file_division |
PLN |
dblink |
BioProject:PRJNA33471 |
db_source |
XM_002274573.3
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Definition |
PREDICTED: probable inactive ATP-dependent zinc metalloprotease FTSHI 5, chloroplastic [Vitis vinifera] |
CDS: ATGGATTTCACCTTAACCTCTTCTCCATCCATCAGTGCAAAGCTCTCTCCACCGTATCGAAACTCTTCACGTCCTTCATTCTTCACATTCAATTCATTTTCCCCTGCCAAAAAGCACCGCGCCAGAACTAGAAGATTCTTAGTGAAATCCCCAAACAGAACTCGAAATCTTTTGCCAATAGCAAGTGTTTTCCATGCAATTAACTTTCCAGATGATTCTAGAAGCTCAATGTCTGAAAAAGAAGAAGAAAAACCAGTGGTTTCCACGGTAAAATTTGAGAAATCGGTGGGAAATTTAGTACAGTGCATTGCAAGGCCAATTGTGTTTGCAGTGTTTTGCATTGCTGTTGGATTTTTTCCAACTGGGAGATTTCAGGTACCTGCAATTGCCGCTCCGGTGGCAAGTGATGTAATGTGGAAGAAGAAAGAGAGTGGGAAAGTTTTAGAAGAAACAAAGGAGTTGAAGTCCAAGGATCACAAGTACTCGGATTGCACGAGGAGTTTGCTAGAGGTGGTTTCGGGTTTACTTAGGAGTATAGAAGAAGTTAGGTCAGGTAAAGCTGATATGAAGAAGGTAGAGGCGGTCTTAAGGGAGGTTAAATTGAAGAAAGAAGAATTGCAAGAGGAAATAATGAATGAACTGTACGCTGAGTTGAGGGAATTGAAGAGAGAGAAGGATGGTTTGTCAGATAGATCGGAGGAGATTGTTGACATGGTGGTGAAAGCAAAGAGGGAGCATGACCGATTGTTGGGGAAGGCAAGTGGTGATGGGAAGAAGATAAAGGAGCAAATTGCAAGGTTGGAGGAGAGTATGAGCCGGTTAGATGAGGAGTATGCTAAAATATGGGAAAGGATTGGAGAGATTGAGGATCGGATTTTGAGAAGGGACACGATGGCTATGAGCATTGGTATAAGGGAGCTTTCTTTTATCACAAGGGAGAGTGAGCAATTGGTGGCGAGTTTTAGACGAGAAATGAAGCTGGGGAGGACCAACAGTGTACCACAAGGCTCTGCTACCAAACTTTCTAGGTCTGACATTCAGAAAGACTTGGAAACTGCACAAAGAGAATACTGGGAACAGATGATTCTGCCTAGTATTTTGGAAATTGAAGATCTTGGTCCTCTCTTTTATCGAGATTCGATGGATTTTGTTCTACATATAAAGCAGGCCCTTAAAGAATCAAGGGAGATGCAAAGGAATATGGAGGCTCGTGTAAGAAAAAATATGAGGAGGTTTGGGGATGAAAAGCGTTTTGTTGTAAACACACCAACAGATGAAGTTGTGAAAGGTTTTCCAGAAATTGAGTTGAAGTGGATGTTTGGAGATAAGGAGGTTGTAGTTCCTAAAGCTATTAGCTTTCATTTGTTCCATGGTTGGAAAAAGTGGCGGGAAGAAGCTAAGGCAGATCTTAAAAGAACTTTGTTAGAAAATGTTGACCTTGGTAAACAGTATGTGGCCCAAAGACAGGAACATATACTTTTGGACCGAGATAGAGTGGTGGCAAAAACTTGGTTCAGTGAAGAAAAAAGTAGGTGGGAAATGGACCCAATGGCTGTTCCATATGCTGTGTCCAAAAAGCTAGTAGAGCATGCCCGAATTAGGCATGACTGGGCAGCTATGTATATTGCACTGAAGGGGGATGACAAGGAATATTATGTTGATATTAAGGAATTCGAAGTTCTGTTTGAAGACTTAGGAGGGTTTGATGGGTTGTATTTGAAAATGCTGGCCGCTGGTATTCCCACTGCGGTTCACCTCATGCGGATTCCTTTCTCAGAGTTGAATTTCCGTGAACAGTTTTTCTTGATAATGAGACTTTCTTATCGATGCTTGAATGGATTTTGGAAGACAGGAATTGTATCATATGGAAGAGAATGGCTTCTTGAGAAAATCAGAAATTTGAATGATGACATAATGATGATGATTATTTTTCCTCTTGTGGAGTTTATCATCCCTTTTCCGTTAAGGATACGGTTGGGAATGGCATGGCCTGAGGAAATTGATCAAACTGTTGGCTCGACATGGTACTTGAAATGGCAGTCTGAGGCAGAAATGAGTTTTAGGTCCAGAAAGCAAGATGACATCCAATGGTTCTTTTGGTTTTTCATTAGATGCTTCATATATGGATATGTGTTATTTCATACATTCCGATTTATGAAAAGAAAAATTCCCAGAATTCTTGGGTACGGGCCTTTACGTAGAGATCCAAACTTGAGGAAGTTGCGCAGACTGAAGGCTTATTTTAAATATAGAGTAACGAGAACAAAGCGTAAGAAGAAGGCTGGCATTGATCCGATAAGGACTGCTTTTGATCAAATGAAGAGGGTGAAGAATCCACCAATACAATTGAGAGATTTTGCAAGTGTCGATTCTATGAGAGAGGAAATTAATGAAGTTGTGGCATTTCTACAAAACCCTAGTGCATTTCAAGAAATGGGAGCACGTGCACCTCGGGGGGTTCTTATTGTGGGCGAGAGGGGGACAGGAAAAACATCTCTTGCACTAGCTATAGCTGCTGAAGCAAAGGTGCCTGTTGTAGAAGTTAAAGCTCAACAGTTGGAGGCTGGACTATGGGTTGGCCAGAGTGCATCAAATGTTAGGGAACTATTTCAAGCAGCAAGGGATTTGGCACCTGTAATCATATTTGTAGAAGATTTTGACCTCTTTGCTGGTGTCCGTGGCAAGTTTATTCACACTAAAAAGCAGGATCATGAGGCTTTCATTAATCAGCTTCTTGTGGAACTTGATGGGTTTGAGAAGCAAGATGGGGTTGTCTTGATGGCTACTACTAGAAATCTTAAGCAAATTGACCAGGCATTACAGCGGCCTGGTCGAATGGATAGAATATTTTATCTTCAACAGCCAACTCAAACAGAAAGGGAGAAGATATTGCGTATTGCTGCAAAAGAAACTATGGATGATGAGCTCATTGACTACGTAGACTGGGGAAAGGTTGCTGAGAAGACAGCTCTTCTACGCCCTGTAGAGCTAAAACTTGTTCCTGTGGCCTTGGAAGGTAGTGCCTTTAGGAGCAAATTTCTTGATGTCGATGAACTTATGAGCTACTGTAGCTGGTTTGCGACTTTCAGTGGTTTTGTCCCTAAATGGATGAGGAAAACAAAATTGGTGAAGAAAGTAAGCAAAACTCTGGTGAATCATCTTGGACTGACATTGACAAAAGAGGATTTGCAGAATGTGGTTGATTTGATGGAACCGTATGGTCAGATAAGCAATGGAATAGAATTTCTGAATCCTCCACTTGATTGGACAAGAGAGACAAAATTACCACATGCTGTCTGGGCTGCTGGTCGTGGTCTTAGTGCCATTCTTCTGCCCAACTTTGATGTTGTTGATAATCTGTGGCTTGAGCCCTTGTCATGGCAGGGAATTGGATGTACAAAGATCACTAAGGCTAAAAATGAAGGTTCCATGCATGGAAATGTGGAAACAAGATCATACATTGAAAAAAGACTTGTATTTTGCTTTGGTTCATATGTTGCATCCCAACTGCTACTTCCCTTTGGGGAAGAAAACATACTTTCTTCTTCAGAACTGAAGCAGGCACAGGAGATAGCTACGCGGATGGTGATCCAGCATGGATGGGGCCCTGATGACAGTCCTGCAGTTTACTACTATAGCAATGCGGTTAGTGCTTTGAGTATGGGAAACAACCATGAGTACGAGGTGGCAGCCAAAATTGAAAAGATGTATTATTTAGCATATGATAGAGCAAAAGAAATGCTTCAGAAAAACCGCCGTGTGCTTGAGAAGGTTGTGGAAGAGCTGCTTGAGTTTGAAATCTTGACAGGGAAGGATTTAGAAAGAATTGTTGAAGAGAATGGTGGGATTCGGGAGACAGAGCCATTTTTCCTTTCAAAAGTCCATGAGAAAGAGCCTGAATCTAGCAGCTTTCTTGATAGCGGCAATGGATCGGGAACTGCTCTTTTAGGAGCAGCAACATAG |
Protein: MDFTLTSSPSISAKLSPPYRNSSRPSFFTFNSFSPAKKHRARTRRFLVKSPNRTRNLLPIASVFHAINFPDDSRSSMSEKEEEKPVVSTVKFEKSVGNLVQCIARPIVFAVFCIAVGFFPTGRFQVPAIAAPVASDVMWKKKESGKVLEETKELKSKDHKYSDCTRSLLEVVSGLLRSIEEVRSGKADMKKVEAVLREVKLKKEELQEEIMNELYAELRELKREKDGLSDRSEEIVDMVVKAKREHDRLLGKASGDGKKIKEQIARLEESMSRLDEEYAKIWERIGEIEDRILRRDTMAMSIGIRELSFITRESEQLVASFRREMKLGRTNSVPQGSATKLSRSDIQKDLETAQREYWEQMILPSILEIEDLGPLFYRDSMDFVLHIKQALKESREMQRNMEARVRKNMRRFGDEKRFVVNTPTDEVVKGFPEIELKWMFGDKEVVVPKAISFHLFHGWKKWREEAKADLKRTLLENVDLGKQYVAQRQEHILLDRDRVVAKTWFSEEKSRWEMDPMAVPYAVSKKLVEHARIRHDWAAMYIALKGDDKEYYVDIKEFEVLFEDLGGFDGLYLKMLAAGIPTAVHLMRIPFSELNFREQFFLIMRLSYRCLNGFWKTGIVSYGREWLLEKIRNLNDDIMMMIIFPLVEFIIPFPLRIRLGMAWPEEIDQTVGSTWYLKWQSEAEMSFRSRKQDDIQWFFWFFIRCFIYGYVLFHTFRFMKRKIPRILGYGPLRRDPNLRKLRRLKAYFKYRVTRTKRKKKAGIDPIRTAFDQMKRVKNPPIQLRDFASVDSMREEINEVVAFLQNPSAFQEMGARAPRGVLIVGERGTGKTSLALAIAAEAKVPVVEVKAQQLEAGLWVGQSASNVRELFQAARDLAPVIIFVEDFDLFAGVRGKFIHTKKQDHEAFINQLLVELDGFEKQDGVVLMATTRNLKQIDQALQRPGRMDRIFYLQQPTQTEREKILRIAAKETMDDELIDYVDWGKVAEKTALLRPVELKLVPVALEGSAFRSKFLDVDELMSYCSWFATFSGFVPKWMRKTKLVKKVSKTLVNHLGLTLTKEDLQNVVDLMEPYGQISNGIEFLNPPLDWTRETKLPHAVWAAGRGLSAILLPNFDVVDNLWLEPLSWQGIGCTKITKAKNEGSMHGNVETRSYIEKRLVFCFGSYVASQLLLPFGEENILSSSELKQAQEIATRMVIQHGWGPDDSPAVYYYSNAVSALSMGNNHEYEVAAKIEKMYYLAYDRAKEMLQKNRRVLEKVVEELLEFEILTGKDLERIVEENGGIRETEPFFLSKVHEKEPESSSFLDSGNGSGTALLGAAT |