MDP0000298577, MDP0000298577 (mRNA) Malus spp. (apple)

Transcript Overview
NameMDP0000298577
Unique NameMDP0000298577
TypemRNA
OrganismMalus x domestica (Apple)
Sequence length6087
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Malus x domestica Whole Genome v1.0 Assembly & Annotation2012-07-26
InterProScan of Malus x domestica Whole Genome v1.0 mRNA2012-07-23
Relationships

The following CDS feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesType
MDP0000298577_exon_1MDP0000298577_exon_1Malus x domesticaCDS
MDP0000298577_exon_2MDP0000298577_exon_2Malus x domesticaCDS
MDP0000298577_exon_3MDP0000298577_exon_3Malus x domesticaCDS
MDP0000298577_exon_4MDP0000298577_exon_4Malus x domesticaCDS
MDP0000298577_exon_5MDP0000298577_exon_5Malus x domesticaCDS
MDP0000298577_exon_6MDP0000298577_exon_6Malus x domesticaCDS
MDP0000298577_exon_7MDP0000298577_exon_7Malus x domesticaCDS
MDP0000298577_exon_8MDP0000298577_exon_8Malus x domesticaCDS
MDP0000298577_exon_9MDP0000298577_exon_9Malus x domesticaCDS
MDP0000298577_exon_10MDP0000298577_exon_10Malus x domesticaCDS
MDP0000298577_exon_11MDP0000298577_exon_11Malus x domesticaCDS


The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameSpeciesType
MDP0000298577MDP0000298577Malus x domesticapolypeptide


InterPro
Analysis Name: InterProScan of Malus x domestica Whole Genome v1.0 mRNA
Date Performed: 2012-07-23
IPR TermIPR DescriptionSourceSource TermSource DescriptionAlignment
IPR002293Amino acid/polyamine transporter IPANTHERPTHR11785FAMILY NOT NAMEDcoord: 204..709
score: 2.2e
IPR002293Amino acid/polyamine transporter IPANTHERPTHR11785FAMILY NOT NAMEDcoord: 15..98
score: 1.1
IPR004756Amino acid permease subfamilyTIGRFAMsTIGR009072A0304: amino acid permeasecoord: 212..703
score: 2.4e
IPR004840Amino acid permease, conserved sitePROSITEPS00218AMINO_ACID_PERMEASE_1coord: 255..286
score
IPR004840Amino acid permease, conserved sitePROSITEPS00218AMINO_ACID_PERMEASE_1coord: 40..71
score
NoneNo IPR availablePANTHERPTHR11785:SF13AMINO ACID PERMEASE-RELATEDcoord: 204..709
score: 2.2e
NoneNo IPR availablePFAMPF13520AA_permease_2coord: 225..683
score: 3.5
NoneNo IPR availableSEGsegsegcoord: 144..157
score: NAcoord: 225..239
score: NAcoord: 469..479
score
NoneNo IPR availablePANTHERPTHR11785:SF13AMINO ACID PERMEASE-RELATEDcoord: 15..98
score: 1.1
NoneNo IPR availableSEGsegsegcoord: 1..13
score
NoneNo IPR availableSEGsegsegcoord: 24..41
score
NoneNo IPR availableSEGsegsegcoord: 31..47
score
NoneNo IPR availableSEGsegsegcoord: 34..46
score
NoneNo IPR availableSEGsegsegcoord: 24..40
score
NoneNo IPR availableSEGsegsegcoord: 90..99
score
IPR004841Amino acid permease domainPFAMPF00324AA_permeasecoord: 27..95
score: 5.9

Sequences
The following sequences are available for this feature:

mRNA sequence

>MDP0000298577 ID=MDP0000298577; Name=MDP0000298577; organism=Malus x domestica; type=mRNA; length=6087bp
ATGGAGGAGGAGGAAGGTCCTTATCAGCCTCTTCAAGGCGGGGACGCCAT
TTCTTCCGACGACACTCGCCTGAACCAGCTCGGTTACAAGCAAGAGCTCA
GTCGTCACCTCTCGTATGAACCCTATCCCCTTGAATTTCATTTTACCCTT
AACTTCTTCTGTACTTGAATCTGATTCTGCTGTATATCTGAAAGCACTTT
TGAGTTTTGACCTTTCTGTATTGGGGCTGCTGGGTTTATGCAGTTAAAGC
ACTTTTCATTGTGTGTGCATTTTGTTTCCCACATCACAATCACATATTTT
TCAGTTCTGTTTACTTCTGGATAATTATCATTTATTCATCACAGCTGTTT
TGGACTTTTAGTCGTTGAATATCAGTTCTAACATGAGCACATATAATATG
ATTGCTAATTTCCACTAAAATATCGAAAATGCATCAGATATTTTGGTATA
TTTCTTGTCACTCTCAACTACTGTTTAAAATATTAATATAGGAATAACGA
GAAGCAAATTTATAAAAATATCGATATAGGTTGTCTTGAACATTTGCAAT
AGGGTGAATATATCAACTCATTTATATTTAGTCGAACTTAGAAAAAAAAT
AAAAAGAAAAWTGAAAGTTTGAAACCTGCAATGGCAAAATATTTGTAGTG
AATCTTCATAAATTTTCCTATATCCACAATTTCATAGATATTTTAAACCA
GGAAAAGCTCCTTTCTTTTAATTTTCAATGTTTCAAATTGCTTGGGGTTT
CATGCCATCTATTTCTTTTGCATATTTTCCTGGCCGTTGTTTTTGAACAT
CATTTATTGATTCAACATGTCACATTAGAGAGTGACTTTGAATAATATTT
TTAAACAAATATCTAGTCAATTTATTTTAATTTTCTACTTTTCCGCCTAA
TAATTTAATTGGTCACACTGAATAAATAACTTACTTAGTTACGACCCAAT
CTGCAGTCAAAATGTTACAAACGAAGAATAAAAAGAGAAATAACAACTTA
CGTGTATAGATAACATTACAAAATCGAATCTAAAATTCTTGATTTCTAAA
TTAAGTAATTTGTTAGGCAAGACGAGAAAATCCAAAAGGACAAGGATTGT
CTACCTTTCTACTTCCGGTGCCCTTCCGTGCCCTCTTATTTGTGTGGTCA
CGGTTAAACCACGTCAACATTTTATATATACTATTCATTTTTGTCTTATT
ATTTCTATAAAAAAAATATAAAATGTTGACATGACTTAACCGTGATCACA
CAAAACAACAGGATACGGAAGGGCAAACAATCCTTGTCCAATCCAAAATT
GTACATAACCTCGTGTAACTCGTTTTTGTGATCTTGATTTTCAAGAGCAA
AAAAAGGGTAGGAATGCGCTACTCACACGGTGCATGTTACGTTGTGTAGG
GCAATAGCCAATTTCTCGATGACTTTCTCCATCATATCGGTTCTGACCGG
TCTGAACACAACGTACAGTATGGGCCTCAGATATGGTGGGCCCGTTACCA
TGGTCTACGGGTGGCCCGTAGTGGGCTTTCTCACACTTCTGGTGGGCCTG
TCCATGGCCGAGATTTGCTCTGCTTTTCCAACTTCTGGTGGGCTCTACTT
CTGGAGCGCCAAACTCGCTGGCAAACGATGGGGCGCTTTCGCTTCTTGGC
TCACTGGCTGGTACGTTTTTTATTTTTTCTCTTTTGATTTTTTTTTTTTK
TAAAAATATTTTTATTTGTTTCTGTTAAGTTTTTTTTTTTTTTTTTTTTT
TTTGATGAAGTATTAAATATAGCATTAGCATTTAGAATCAAATTATTTTG
TTATTTAAGCGATTTTCTAATATAATTTTAATCGTGGAAAAAACATTTCA
AATTTAATTAACTCCAAAGAAAAGTAGCATGCTGTTTTAACTAAATTTAA
CTCCTAATAAATTTGAATATTAATGTGTTAATTTTGGTGGATATGGGCCA
AAGATAATTTAGAGCCCAATTTATGAAGTGGGCCTCCACAATTCGTGTGC
TCAAGTATTAAGGAAGTCGTCGGCCCACGACCCATTTAGTGGGACCATCA
CTGTTGTTCGTCCATTGACGGGATATTTTTGAGGAATTTTTAACTTGTTC
ATTGATTGATTAATAGTTTGTTTAATCACTAATCCACTATTACTATTCTA
ATTAGACGGTCACATGGGATACTCGGTCAAATATTCAGATTCAAAACTAC
TAATCATTTGAGATCAGAATCTCTCGTAATTGCATTTTATTGACTTTTAT
ATTCAATAAATTACGCACGGACGAGTGTATGATAATTATTTTCTAGTATC
AATAACCGGAGTGATATTTTCTGTCAACATGAGAAATTTTTTAATGTATC
GAAAATATGGTTCGATATACCGAGTATTGTAATACAAGTAATTAAAAGTT
TTCCTTTATGCGTTCAATCATTTATATTATGATATTTAATGTACTCAACT
TTATTTTCAATATGGTGAAAAATCTCTTGAGTAACATGATTTGCCTGTCC
TATCATTTATTGGGGTTGTCACTTGTGGTATGACACTAGTTTGTCCTCCC
ATATCTGTAATTGCCATGCTATCAATGACCTTTCACAAATAATTTGTCAG
CTCATGAAAATTCAAAACTTTGTTTTATTTGGAAGATTACACACACGACT
TTGTCTGTTAATAAATCGTGTTTAATTCGGTTTCAATTAACAGAAAGTGA
ATGGATGAGATTTTAGAAACGATCATATTTAAATTTGATAATTTAATTAT
GAATAAATTCGTATGTATGGATCAATGCAGATTCATTCCGAACCTTGTTA
CACACGTGTGTTAGATTCGAAATTTGCAACGTATCATATAACAACCCTTT
CCTTAGAGTTACGTGTTGCTTCATCTTTGAAGCCAAAATATACATGATAA
GAAAATTCAGCGTTCACACCAAACAAATAGGAACCCAAAGATTTGGCACC
AATTCCTGAAAATGTTTATGGGATGAACACGCCATTAACAGAAAAATTAA
TTAAAATAATTATATTGTCGTTGGGGAAGTCCAAAGACCCAAAGTCCATG
CCCTGCCACGTTGGGAGCATCATCTTCTCCGCGCGACAAGGTGCATTGCC
TACTGGTACTGGCTGATCTGTTTGGCCTCACCTCTTCTTCCTAAAGCTCC
GTTCTTTGTTTTTCTATTCCCACCCATCCCGTTGACTATTCCCACCCTGC
CAAGAAGTCAAGGAAACAGAATACCAGAAGAGATTTGGGTTTGATTCTTT
GAATCCAAGAACAAATGGTGAGTGGTGGCGGTGACAGAATGGCACTGCCG
TCTCATCAGCCTCCAAACGGTGGCGTTTCACAGGATTCCGGCCACGCCCG
CCTCCACGAACTCGGCTACAAGCAAGAGCTCAAGCGTGACCTCTCGTAAT
TTTTCAAAACTTCCACTCTTTTACTTCGTTTTGAATCCAAAGCTTCAAGC
TTTACTGATTTCTGAGGTTTTTTTGGTTGATGGGTTGGCTGGTTTGGAAT
TGCAGGCTGCTTTCAAATTTTGCGTTTTCGTTTTCCATCATATCGGTGCT
CACCGGAGTGACCACTCTGTATAATACTGGGCTGAGATACGGCGGCCCTG
TGTCTTTCGTTTATGGGTGGTTTATAACGGGTGTCTTCACCGTCTTCGTT
GGGTTGTCAATGGGGGAGATTTGCTCCTCGTACCCAACTTCTGGGGGGCT
GTACTACTGGAGTGCCAAGCTTGCTGGCCCCAAATGGGCACCCTTTGCTT
CTTGGCTCACTGGCTGGTACTACTTTCCTCTCCTTTCAGTTCTTTTACTT
TTACTAACAGTGCTACTCACTCACTTTGGATTTGATTGCTTAGAAAATGA
ATAAAATTTTGGAGTTTTGTCTGTGAGTATGTGTTTAAGTAGTTTTTACT
GGTTTGAAAATCAATCCTTCATTGCTATGATGCTTCATTGCTAGGATTGG
ATCGGATTGGATAAGTTACTAGATCCAGCGTATGTTGAAGACATGTATGT
CAACTTCCAAATTTTGTGAAGGAAACTTGATTTGGCATAGGTTGGTGTGT
AGTTCTTTTTTTGGTTGCTCACAATCGTGGTGGGGATTAAATGTAGGACA
TGCTCAACATGAATAGCTCTGTCTTTAGATAAGGTAAATTAGACATCAGG
ACGGTGATGATGATCAGTTTTAGTAGAATTTATGTGGAATGAAGGAGGGA
ATAGGCTCTGATGCATCCGCTTAAGAGTTTTTTTTTTTTCGCTTGTGATG
TCTCAAAGATACTAGAATGATGATATGATTACCATGTTATTCTGAGCCTA
AAACTGAAATGTATATTGCCCTGCAACTTTAATCACAAGACAGTTCCAAG
TTGGTCTTTCTGCCATACTATTTCTGACGACGGTAAATGTTTTTATGTTT
TGCAGGTTCAACATAGTTGGTCAGGTACTTCCATGAATTTTTACATTCTA
GAGTTTAAATTCCTCCATTGTTCATTGTGATATCAAGCTTGTTATGGCTG
TGATATAATCCATTATAAGCTCTAACTGCATTTATACCTTTAAATTGCAG
TGGGCAGTTACAACTAGCGTGGATTTCTCACTTGCACAGCTGATTAACGT
GATCGTTCTCCTTAGCACACGTGGAGGGAATGGTGGTGATGGCACTTCGA
TAAATAAGTACGGAACCATTGGTATCCATGCAGGAATCTTGTTTCTACAT
GCTCTTATAAACAGTCTGCCCATCTCGTACTTATCTTTGTTTGGACAAGT
CGCTGCTGCGTGGAATGTTGCAGGTGTAAATTACAATGTATTTTCAAGCT
CTTTTTTGCTCGTTTTCAGTTTACTGTTTGAGGCCTTCTATATCTTGTAT
TTCTTATTGCTTTTGGAATATTAGGTGTCTTTCTCCTCATGATTCTCATA
CCCTGTGTTGCAACGGAGAGGGCTAGTGCGAAGTTTGTATTCACTCACTT
CAACACTGATAACGGGGAGGGAATCAGCAACAAATTTCACATTTTTGTTC
TGGGACTTCTGTTGAGTCAATATACCATAACTGGCTATGATGCTTCTGCC
CATATGGTTAGTATATATTTCCCTTACTTTGAAATTACTTGGCCAAATAA
TTCTAACTAAATCCTTGTGTTTCCGTCAACTTCTGTTTCTAGACAGAGGA
AACAAAGAACGCTGATACGAATGGACCAAAAGGAATAATTAGTTCCATCG
TGATATCCATTATCGTTGGATGGGGTTATATACTCGGCATCACCTTTGCA
GTTACTAACATCCCGTACCTTTTGGATGAGAACAATGAAGCTGGCGGTTA
TGCCATTGCTGAAATATTTTACCTTGCATTCAAGAGTAGATACGGCAGTG
GAGTTGGAGGAATTGTATGCTTGGGAGTGGTTGCGGTTGCCATATTCTTC
TGTGGTATGAGTTCAGTTACTAGCAACTCCAGGTAAGCAAGCCTGTTTTA
TTCTTCTCCTACAACAAGAGCCATCTGGGTAGGTTTTAGTCTCTCAGCTG
TTCGCTGCACTTAATTTTCTTCTCAGGATGGTGTATGCATTCTCTAGAGA
TGGAGCCATGCCATTATCACCATTTTGGCATAAAGTGAACAAACACGAAG
TCCCCGTAAACGCTGTTTGGCTTTCTGCTTTCATATCGTTTTGCATGGCA
CTAACAGTAAGCACATGATCACTTGTAGCAAAAATTTTATTTCTGCTTTC
TTCGGCAACTGCTAACCATGTTTGTTTCGATCTTTGCAGTCTCTCGGAAG
CCTTGTGGCATTCAATGCCATGGTTTCTATAGCAACCATTGGACTGTACA
TTGCTTATGCCCTACCCATCTTTTTTAGGGTGACCATGGCACGCAAATCC
TTTGTCCCGGGACCTTTCAACTTGGGACGCTACGGGGTCCTTGTTGGTTG
GATTTCAGTTCTTTGGGTAGCAACTATCTCTGTCCTCTTCTCGTTGCCCG
TGGCCTATCCAATTACCATCGAGACACTCAACTATACTCCCGTTGCTGTT
GGCGGTTTGCTGATCATCACAGTTTTAGCTTGGATCCTGAGCGCTCGGCA
CTGGTTTAAAGGTCCTATAACGAACATAGAAGCATGA
back to top

protein sequence of MDP0000298577

>MDP0000298577 ID=MDP0000298577; Name=MDP0000298577; organism=Malus x domestica; type=polypeptide; length=709bp
MEEEEGPYQPLQGGDAISSDDTRLNQLGYKQELSRHLSQFLDDFLHHIGS
DRSEHNVQYGPQIWWARYHGLRVARSGLSHTSGGPVHGRDLLCFSNFWWA
LLLERQTRWQTMGRFRFLAHWLEPKDLAPIPENVYGMNTPLTEKLIKIII
LSLGKSKDPKSMPCHVGSIIFSARQGALPTEQMVSGGGDRMALPSHQPPN
GGVSQDSGHARLHELGYKQELKRDLSLLSNFAFSFSIISVLTGVTTLYNT
GLRYGGPVSFVYGWFITGVFTVFVGLSMGEICSSYPTSGGLYYWSAKLAG
PKWAPFASWLTGWFNIVGQWAVTTSVDFSLAQLINVIVLLSTRGGNGGDG
TSINKYGTIGIHAGILFLHALINSLPISYLSLFGQVAAAWNVAGVFLLMI
LIPCVATERASAKFVFTHFNTDNGEGISNKFHIFVLGLLLSQYTITGYDA
SAHMTEETKNADTNGPKGIISSIVISIIVGWGYILGITFAVTNIPYLLDE
NNEAGGYAIAEIFYLAFKSRYGSGVGGIVCLGVVAVAIFFCGMSSVTSNS
RMVYAFSRDGAMPLSPFWHKVNKHEVPVNAVWLSAFISFCMALTSLGSLV
AFNAMVSIATIGLYIAYALPIFFRVTMARKSFVPGPFNLGRYGVLVGWIS
VLWVATISVLFSLPVAYPITIETLNYTPVAVGGLLIITVLAWILSARHWF
KGPITNIEA
back to top

mRNA from alignment at chr16:786479..792565-

Legend: CDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>MDP0000298577 ID=MDP0000298577; Name=MDP0000298577; organism=Malus x domestica; type=mRNA; location=Sequence derived from: chr16:786479..792565- (Malus x domestica
back to top

mRNA from alignment at MDC013096.127:17459..23545-

Legend: CDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>MDP0000298577 ID=MDP0000298577; Name=MDP0000298577; organism=Malus x domestica; type=mRNA; length=6087bp; location=Sequence derived from: MDC013096.127:17459..23545- (Malus x domestica
ATGGAGGAGGAGGAAGGTCCTTATCAGCCTCTTCAAGGCGGGGACGCCAT TTCTTCCGACGACACTCGCCTGAACCAGCTCGGTTACAAGCAAGAGCTCA GTCGTCACCTCTCGTATGAACCCTATCCCCTTGAATTTCATTTTACCCTT AACTTCTTCTGTACTTGAATCTGATTCTGCTGTATATCTGAAAGCACTTT TGAGTTTTGACCTTTCTGTATTGGGGCTGCTGGGTTTATGCAGTTAAAGC ACTTTTCATTGTGTGTGCATTTTGTTTCCCACATCACAATCACATATTTT TCAGTTCTGTTTACTTCTGGATAATTATCATTTATTCATCACAGCTGTTT TGGACTTTTAGTCGTTGAATATCAGTTCTAACATGAGCACATATAATATG ATTGCTAATTTCCACTAAAATATCGAAAATGCATCAGATATTTTGGTATA TTTCTTGTCACTCTCAACTACTGTTTAAAATATTAATATAGGAATAACGA GAAGCAAATTTATAAAAATATCGATATAGGTTGTCTTGAACATTTGCAAT AGGGTGAATATATCAACTCATTTATATTTAGTCGAACTTAGAAAAAAAAT AAAAAGAAAAWTGAAAGTTTGAAACCTGCAATGGCAAAATATTTGTAGTG AATCTTCATAAATTTTCCTATATCCACAATTTCATAGATATTTTAAACCA GGAAAAGCTCCTTTCTTTTAATTTTCAATGTTTCAAATTGCTTGGGGTTT CATGCCATCTATTTCTTTTGCATATTTTCCTGGCCGTTGTTTTTGAACAT CATTTATTGATTCAACATGTCACATTAGAGAGTGACTTTGAATAATATTT TTAAACAAATATCTAGTCAATTTATTTTAATTTTCTACTTTTCCGCCTAA TAATTTAATTGGTCACACTGAATAAATAACTTACTTAGTTACGACCCAAT CTGCAGTCAAAATGTTACAAACGAAGAATAAAAAGAGAAATAACAACTTA CGTGTATAGATAACATTACAAAATCGAATCTAAAATTCTTGATTTCTAAA TTAAGTAATTTGTTAGGCAAGACGAGAAAATCCAAAAGGACAAGGATTGT CTACCTTTCTACTTCCGGTGCCCTTCCGTGCCCTCTTATTTGTGTGGTCA CGGTTAAACCACGTCAACATTTTATATATACTATTCATTTTTGTCTTATT ATTTCTATAAAAAAAATATAAAATGTTGACATGACTTAACCGTGATCACA CAAAACAACAGGATACGGAAGGGCAAACAATCCTTGTCCAATCCAAAATT GTACATAACCTCGTGTAACTCGTTTTTGTGATCTTGATTTTCAAGAGCAA AAAAAGGGTAGGAATGCGCTACTCACACGGTGCATGTTACGTTGTGTAGG GCAATAGCCAATTTCTCGATGACTTTCTCCATCATATCGGTTCTGACCGG TCTGAACACAACGTACAGTATGGGCCTCAGATATGGTGGGCCCGTTACCA TGGTCTACGGGTGGCCCGTAGTGGGCTTTCTCACACTTCTGGTGGGCCTG TCCATGGCCGAGATTTGCTCTGCTTTTCCAACTTCTGGTGGGCTCTACTT CTGGAGCGCCAAACTCGCTGGCAAACGATGGGGCGCTTTCGCTTCTTGGC TCACTGGCTGGTACGTTTTTTATTTTTTCTCTTTTGATTTTTTTTTTTTK TAAAAATATTTTTATTTGTTTCTGTTAAGTTTTTTTTTTTTTTTTTTTTT TTTGATGAAGTATTAAATATAGCATTAGCATTTAGAATCAAATTATTTTG TTATTTAAGCGATTTTCTAATATAATTTTAATCGTGGAAAAAACATTTCA AATTTAATTAACTCCAAAGAAAAGTAGCATGCTGTTTTAACTAAATTTAA CTCCTAATAAATTTGAATATTAATGTGTTAATTTTGGTGGATATGGGCCA AAGATAATTTAGAGCCCAATTTATGAAGTGGGCCTCCACAATTCGTGTGC TCAAGTATTAAGGAAGTCGTCGGCCCACGACCCATTTAGTGGGACCATCA CTGTTGTTCGTCCATTGACGGGATATTTTTGAGGAATTTTTAACTTGTTC ATTGATTGATTAATAGTTTGTTTAATCACTAATCCACTATTACTATTCTA ATTAGACGGTCACATGGGATACTCGGTCAAATATTCAGATTCAAAACTAC TAATCATTTGAGATCAGAATCTCTCGTAATTGCATTTTATTGACTTTTAT ATTCAATAAATTACGCACGGACGAGTGTATGATAATTATTTTCTAGTATC AATAACCGGAGTGATATTTTCTGTCAACATGAGAAATTTTTTAATGTATC GAAAATATGGTTCGATATACCGAGTATTGTAATACAAGTAATTAAAAGTT TTCCTTTATGCGTTCAATCATTTATATTATGATATTTAATGTACTCAACT TTATTTTCAATATGGTGAAAAATCTCTTGAGTAACATGATTTGCCTGTCC TATCATTTATTGGGGTTGTCACTTGTGGTATGACACTAGTTTGTCCTCCC ATATCTGTAATTGCCATGCTATCAATGACCTTTCACAAATAATTTGTCAG CTCATGAAAATTCAAAACTTTGTTTTATTTGGAAGATTACACACACGACT TTGTCTGTTAATAAATCGTGTTTAATTCGGTTTCAATTAACAGAAAGTGA ATGGATGAGATTTTAGAAACGATCATATTTAAATTTGATAATTTAATTAT GAATAAATTCGTATGTATGGATCAATGCAGATTCATTCCGAACCTTGTTA CACACGTGTGTTAGATTCGAAATTTGCAACGTATCATATAACAACCCTTT CCTTAGAGTTACGTGTTGCTTCATCTTTGAAGCCAAAATATACATGATAA GAAAATTCAGCGTTCACACCAAACAAATAGGAACCCAAAGATTTGGCACC AATTCCTGAAAATGTTTATGGGATGAACACGCCATTAACAGAAAAATTAA TTAAAATAATTATATTGTCGTTGGGGAAGTCCAAAGACCCAAAGTCCATG CCCTGCCACGTTGGGAGCATCATCTTCTCCGCGCGACAAGGTGCATTGCC TACTGGTACTGGCTGATCTGTTTGGCCTCACCTCTTCTTCCTAAAGCTCC GTTCTTTGTTTTTCTATTCCCACCCATCCCGTTGACTATTCCCACCCTGC CAAGAAGTCAAGGAAACAGAATACCAGAAGAGATTTGGGTTTGATTCTTT GAATCCAAGAACAAATGGTGAGTGGTGGCGGTGACAGAATGGCACTGCCG TCTCATCAGCCTCCAAACGGTGGCGTTTCACAGGATTCCGGCCACGCCCG CCTCCACGAACTCGGCTACAAGCAAGAGCTCAAGCGTGACCTCTCGTAAT TTTTCAAAACTTCCACTCTTTTACTTCGTTTTGAATCCAAAGCTTCAAGC TTTACTGATTTCTGAGGTTTTTTTGGTTGATGGGTTGGCTGGTTTGGAAT TGCAGGCTGCTTTCAAATTTTGCGTTTTCGTTTTCCATCATATCGGTGCT CACCGGAGTGACCACTCTGTATAATACTGGGCTGAGATACGGCGGCCCTG TGTCTTTCGTTTATGGGTGGTTTATAACGGGTGTCTTCACCGTCTTCGTT GGGTTGTCAATGGGGGAGATTTGCTCCTCGTACCCAACTTCTGGGGGGCT GTACTACTGGAGTGCCAAGCTTGCTGGCCCCAAATGGGCACCCTTTGCTT CTTGGCTCACTGGCTGGTACTACTTTCCTCTCCTTTCAGTTCTTTTACTT TTACTAACAGTGCTACTCACTCACTTTGGATTTGATTGCTTAGAAAATGA ATAAAATTTTGGAGTTTTGTCTGTGAGTATGTGTTTAAGTAGTTTTTACT GGTTTGAAAATCAATCCTTCATTGCTATGATGCTTCATTGCTAGGATTGG ATCGGATTGGATAAGTTACTAGATCCAGCGTATGTTGAAGACATGTATGT CAACTTCCAAATTTTGTGAAGGAAACTTGATTTGGCATAGGTTGGTGTGT AGTTCTTTTTTTGGTTGCTCACAATCGTGGTGGGGATTAAATGTAGGACA TGCTCAACATGAATAGCTCTGTCTTTAGATAAGGTAAATTAGACATCAGG ACGGTGATGATGATCAGTTTTAGTAGAATTTATGTGGAATGAAGGAGGGA ATAGGCTCTGATGCATCCGCTTAAGAGTTTTTTTTTTTTCGCTTGTGATG TCTCAAAGATACTAGAATGATGATATGATTACCATGTTATTCTGAGCCTA AAACTGAAATGTATATTGCCCTGCAACTTTAATCACAAGACAGTTCCAAG TTGGTCTTTCTGCCATACTATTTCTGACGACGGTAAATGTTTTTATGTTT TGCAGGTTCAACATAGTTGGTCAGGTACTTCCATGAATTTTTACATTCTA GAGTTTAAATTCCTCCATTGTTCATTGTGATATCAAGCTTGTTATGGCTG TGATATAATCCATTATAAGCTCTAACTGCATTTATACCTTTAAATTGCAG TGGGCAGTTACAACTAGCGTGGATTTCTCACTTGCACAGCTGATTAACGT GATCGTTCTCCTTAGCACACGTGGAGGGAATGGTGGTGATGGCACTTCGA TAAATAAGTACGGAACCATTGGTATCCATGCAGGAATCTTGTTTCTACAT GCTCTTATAAACAGTCTGCCCATCTCGTACTTATCTTTGTTTGGACAAGT CGCTGCTGCGTGGAATGTTGCAGGTGTAAATTACAATGTATTTTCAAGCT CTTTTTTGCTCGTTTTCAGTTTACTGTTTGAGGCCTTCTATATCTTGTAT TTCTTATTGCTTTTGGAATATTAGGTGTCTTTCTCCTCATGATTCTCATA CCCTGTGTTGCAACGGAGAGGGCTAGTGCGAAGTTTGTATTCACTCACTT CAACACTGATAACGGGGAGGGAATCAGCAACAAATTTCACATTTTTGTTC TGGGACTTCTGTTGAGTCAATATACCATAACTGGCTATGATGCTTCTGCC CATATGGTTAGTATATATTTCCCTTACTTTGAAATTACTTGGCCAAATAA TTCTAACTAAATCCTTGTGTTTCCGTCAACTTCTGTTTCTAGACAGAGGA AACAAAGAACGCTGATACGAATGGACCAAAAGGAATAATTAGTTCCATCG TGATATCCATTATCGTTGGATGGGGTTATATACTCGGCATCACCTTTGCA GTTACTAACATCCCGTACCTTTTGGATGAGAACAATGAAGCTGGCGGTTA TGCCATTGCTGAAATATTTTACCTTGCATTCAAGAGTAGATACGGCAGTG GAGTTGGAGGAATTGTATGCTTGGGAGTGGTTGCGGTTGCCATATTCTTC TGTGGTATGAGTTCAGTTACTAGCAACTCCAGGTAAGCAAGCCTGTTTTA TTCTTCTCCTACAACAAGAGCCATCTGGGTAGGTTTTAGTCTCTCAGCTG TTCGCTGCACTTAATTTTCTTCTCAGGATGGTGTATGCATTCTCTAGAGA TGGAGCCATGCCATTATCACCATTTTGGCATAAAGTGAACAAACACGAAG TCCCCGTAAACGCTGTTTGGCTTTCTGCTTTCATATCGTTTTGCATGGCA CTAACAGTAAGCACATGATCACTTGTAGCAAAAATTTTATTTCTGCTTTC TTCGGCAACTGCTAACCATGTTTGTTTCGATCTTTGCAGTCTCTCGGAAG CCTTGTGGCATTCAATGCCATGGTTTCTATAGCAACCATTGGACTGTACA TTGCTTATGCCCTACCCATCTTTTTTAGGGTGACCATGGCACGCAAATCC TTTGTCCCGGGACCTTTCAACTTGGGACGCTACGGGGTCCTTGTTGGTTG GATTTCAGTTCTTTGGGTAGCAACTATCTCTGTCCTCTTCTCGTTGCCCG TGGCCTATCCAATTACCATCGAGACACTCAACTATACTCCCGTTGCTGTT GGCGGTTTGCTGATCATCACAGTTTTAGCTTGGATCCTGAGCGCTCGGCA CTGGTTTAAAGGTCCTATAACGAACATAGAAGCATGA
back to top

Coding sequence (CDS) from alignment at MDC013096.127:17459..23545-

>MDP0000298577 ID=MDP0000298577; Name=MDP0000298577; organism=Malus x domestica; type=CDS; length=2130bp; location=Sequence derived from: MDC013096.127:17459..23545- (Malus x domestica
ATGGAGGAGGAGGAAGGTCCTTATCAGCCTCTTCAAGGCGGGGACGCCAT
TTCTTCCGACGACACTCGCCTGAACCAGCTCGGTTACAAGCAAGAGCTCA
GTCGTCACCTCTCCCAATTTCTCGATGACTTTCTCCATCATATCGGTTCT
GACCGGTCTGAACACAACGTACAGTATGGGCCTCAGATATGGTGGGCCCG
TTACCATGGTCTACGGGTGGCCCGTAGTGGGCTTTCTCACACTTCTGGTG
GGCCTGTCCATGGCCGAGATTTGCTCTGCTTTTCCAACTTCTGGTGGGCT
CTACTTCTGGAGCGCCAAACTCGCTGGCAAACGATGGGGCGCTTTCGCTT
CTTGGCTCACTGGCTGGAACCCAAAGATTTGGCACCAATTCCTGAAAATG
TTTATGGGATGAACACGCCATTAACAGAAAAATTAATTAAAATAATTATA
TTGTCGTTGGGGAAGTCCAAAGACCCAAAGTCCATGCCCTGCCACGTTGG
GAGCATCATCTTCTCCGCGCGACAAGGTGCATTGCCTACTGAACAAATGG
TGAGTGGTGGCGGTGACAGAATGGCACTGCCGTCTCATCAGCCTCCAAAC
GGTGGCGTTTCACAGGATTCCGGCCACGCCCGCCTCCACGAACTCGGCTA
CAAGCAAGAGCTCAAGCGTGACCTCTCGCTGCTTTCAAATTTTGCGTTTT
CGTTTTCCATCATATCGGTGCTCACCGGAGTGACCACTCTGTATAATACT
GGGCTGAGATACGGCGGCCCTGTGTCTTTCGTTTATGGGTGGTTTATAAC
GGGTGTCTTCACCGTCTTCGTTGGGTTGTCAATGGGGGAGATTTGCTCCT
CGTACCCAACTTCTGGGGGGCTGTACTACTGGAGTGCCAAGCTTGCTGGC
CCCAAATGGGCACCCTTTGCTTCTTGGCTCACTGGCTGGTTCAACATAGT
TGGTCAGTGGGCAGTTACAACTAGCGTGGATTTCTCACTTGCACAGCTGA
TTAACGTGATCGTTCTCCTTAGCACACGTGGAGGGAATGGTGGTGATGGC
ACTTCGATAAATAAGTACGGAACCATTGGTATCCATGCAGGAATCTTGTT
TCTACATGCTCTTATAAACAGTCTGCCCATCTCGTACTTATCTTTGTTTG
GACAAGTCGCTGCTGCGTGGAATGTTGCAGGTGTCTTTCTCCTCATGATT
CTCATACCCTGTGTTGCAACGGAGAGGGCTAGTGCGAAGTTTGTATTCAC
TCACTTCAACACTGATAACGGGGAGGGAATCAGCAACAAATTTCACATTT
TTGTTCTGGGACTTCTGTTGAGTCAATATACCATAACTGGCTATGATGCT
TCTGCCCATATGACAGAGGAAACAAAGAACGCTGATACGAATGGACCAAA
AGGAATAATTAGTTCCATCGTGATATCCATTATCGTTGGATGGGGTTATA
TACTCGGCATCACCTTTGCAGTTACTAACATCCCGTACCTTTTGGATGAG
AACAATGAAGCTGGCGGTTATGCCATTGCTGAAATATTTTACCTTGCATT
CAAGAGTAGATACGGCAGTGGAGTTGGAGGAATTGTATGCTTGGGAGTGG
TTGCGGTTGCCATATTCTTCTGTGGTATGAGTTCAGTTACTAGCAACTCC
AGGATGGTGTATGCATTCTCTAGAGATGGAGCCATGCCATTATCACCATT
TTGGCATAAAGTGAACAAACACGAAGTCCCCGTAAACGCTGTTTGGCTTT
CTGCTTTCATATCGTTTTGCATGGCACTAACATCTCTCGGAAGCCTTGTG
GCATTCAATGCCATGGTTTCTATAGCAACCATTGGACTGTACATTGCTTA
TGCCCTACCCATCTTTTTTAGGGTGACCATGGCACGCAAATCCTTTGTCC
CGGGACCTTTCAACTTGGGACGCTACGGGGTCCTTGTTGGTTGGATTTCA
GTTCTTTGGGTAGCAACTATCTCTGTCCTCTTCTCGTTGCCCGTGGCCTA
TCCAATTACCATCGAGACACTCAACTATACTCCCGTTGCTGTTGGCGGTT
TGCTGATCATCACAGTTTTAGCTTGGATCCTGAGCGCTCGGCACTGGTTT
AAAGGTCCTATAACGAACATAGAAGCATGA
back to top
Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: INTERPRO
TermDefinition
IPR002293AA/rel_permease1
IPR004756AA_permease
IPR004840Amoino_acid_permease_CS
IPR004841AA-permease/SLC12A_dom
Vocabulary: Biological Process
TermDefinition
GO:0003333amino acid transmembrane transport
GO:0006865amino acid transport
GO:0055085transmembrane transport
GO:0006810transport
Vocabulary: Molecular Function
TermDefinition
GO:0015171amino acid transmembrane transporter activity
Vocabulary: Cellular Component
TermDefinition
GO:0016020membrane
GO:0016021integral to membrane