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| − | Please input one-sentence summary here.
| + | The rice '''''Os11g0225300''''' was reported as '''''RGA5''''' in 2013 <ref name="ref1" /> by researchers from France and Japan. |
| | | | |
| | ==Annotated Information== | | ==Annotated Information== |
| | + | ===Gene Symbol=== |
| | + | *'''''Os11g0225300''''' '''''<=>''''' '''''Os11gRGA5,RGA5,RGA5-A,RGA5-B''''' |
| | + | |
| | ===Function=== | | ===Function=== |
| − | | + | * '''''RGA4''''' and '''''RGA5''''' encodes NB-LRR protein |
| − | Plant resistance to microbial pathogens is a complex process relying on two major levels of resistance controlled by distinct types of plant receptors (Jones and Dangl, 2006; Dodds and Rathjen, 2010). The first line of plant defense is activated by plasma membrane proteins called pattern recognition receptors,which perceive conserved microbial molecules called pathogenassociated molecular patterns (PAMPs). Adapted plant pathogens are able to bypass this PAMP-triggered immunity by producing secreted effectors that act inside or outside the host cell and manipulate key components of plant defense (Jones and Dangl, 2006). The second layer of plant immunity relies on the specific recognition of certain pathogen-derived effectors called Avirulence (Avr) proteins by so-called plant resistance (R) <ref name="ref1" />
| + | * '''''RGA4''''' and '''''RGA5''''' Confer Pia and Pi-CO39 Resistance |
| − | | + | * '''''RGA4''''' and '''''RGA5''''' were found to be required for the recognition of the Magnaporthe oryzae effector AVR1-CO39. |
| − | ===Expression===
| + | * '''''RGA4''''' and '''''RGA5''''' also mediate recognition of the unrelated M. oryzae effector AVR-Pia, indicating that the corresponding R proteins possess dual recognition specificity. |
| − | Please input expression information here.
| + | * '''''RGA4''''' and '''''RGA5''''' interact Functionally to Recognize Two Sequence-Unrelated Effectors |
| − | | |
| − | ===Evolution===
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| − | Please input evolution information here.
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| − | | |
| − | You can also add sub-section(s) at will.
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| | | | |
| | ==Labs working on this gene== | | ==Labs working on this gene== |
| − | *INRA, UMR 385 Biologie et Génétique des Interactions Plante-Parasite, F-34398 Montpellier, France | + | * INRA,UMR 385 Biologie et Génétique des Interactions Plante-Parasite, F-34398 Montpellier, France |
| − | *CIRAD, UMR Biologie et Génétique des Interactions Plante-Parasite, F-34398 Montpellier, France | + | * CIRAD UMR Biologie et Génétique des Interactions Plante-Parasite, F-34398 Montpellier, France |
| − | *CNRS, Plateforme Imagerie-Microscopie, Fédération de Recherche FR3450, 31326 Castanet-Tolosan, France | + | * CNRS, Plateforme Imagerie-Microscopie, Fédération de Recherche FR3450, 31326 Castanet-Tolosan, France |
| − | *INRA, UMR 441 Laboratoire des Interactions Plantes-Microorganismes, F-31326 Castanet-Tolosan, France | + | * INRA, UMR 441 Laboratoire des Interactions Plantes-Microorganismes, F-31326 Castanet-Tolosan, France |
| − | *CNRS, UMR 2594 Laboratoire des Interactions Plantes-Microorganismes, F-31326 Castanet-Tolosan, France | + | * CNRS, UMR 2594 Laboratoire des Interactions Plantes-Microorganismes, F-31326 Castanet-Tolosan, France |
| − | *Iwate Biotechnology Research Center, Kitakami, Iwate 024-0003, Japan | + | * Iwate Biotechnology Research Center, Kitakami, Iwate 024-0003, Japan |
| − | | |
| | ==References== | | ==References== |
| − |
| |
| | <references> | | <references> |
| − | <ref name="ref1">Stella Cesari;Gaëtan Thilliez;Cécile Ribot, et al. (2013) The Rice Resistance Protein Pair RGA4/RGA5 Recognizes the Magnaporthe oryzae Effectors AVR-Pia and AVR1-CO39 by Direct Binding.The Plant Cell, 25(4): 1463-1481.</ref> | + | * <ref name="ref1"> |
| − | <ref name="ref2">Altschul, S.F., Madden, T.L., Schäffer, A.A., Zhang, J., Zhang, Z.,Miller, W., and Lipman, D.J. (1997). Gapped BLAST and PSIBLAST:A new generation of protein database search programs.Nucleic Acids Res. 25: 3389–3402.</ref>
| + | Cesari S, Thilliez G, Ribot C, Chalvon V, Michel C, Jauneau A, Rivas S, Alaux |
| − | <ref name="ref3">Ashikawa, I., Hayashi, N., Yamane, H., Kanamori, H., Wu, J.,Matsumoto, T., Ono, K., and Yano, M. (2008). Two adjacent nucleotide-binding site-leucine-rich repeat class genes are required toconfer Pikm-specific rice blast resistance. Genetics 180: 2267–2276.</ref>
| + | L, Kanzaki H, Okuyama Y, Morel JB, Fournier E, Tharreau D, Terauchi R, Kroj T. |
| − | <ref name="ref4">Bai, J., Pennill, L.A., Ning, J., Lee, S.W., Ramalingam, J., Webb,C.A., Zhao, B., Sun, Q., Nelson, J.C., Leach, J.E., and Hulbert,S.H. (2002). Diversity in nucleotide binding site-leucine-rich repeatgenes in cereals. Genome Res. 12: 1871–1884.</ref>
| + | The rice resistance protein pair RGA4/RGA5 recognizes the Magnaporthe oryzae |
| − | <ref name="ref5">Ballini, E., Morel, J.B., Droc, G., Price, A., Courtois, B., Notteghem,J.L., and Tharreau, D. (2008). A genome-wide meta-analysis of rice blast resistance genes and quantitative trait loci provides newinsights into partial and complete resistance. Mol. Plant Microbe Interact. 21: 859–868.</ref>
| + | effectors AVR-Pia and AVR1-CO39 by direct binding. Plant Cell. 2013 |
| − | <ref name="ref6">Bernoux,M., Ve, T., Williams, S.,Warren, C., Hatters, D., Valkov, E.,Zhang, X., Ellis, J.G., Kobe, B., and Dodds, P.N. (2011). Structural and functional analysis of a plant resistance protein TIR domainreveals interfaces for self-association, signaling, and autoregulation.Cell Host Microbe 9: 200–211.</ref>
| + | Apr;25(4):1463-81. doi: 10.1105/tpc.112.107201. Epub 2013 Apr 2. PubMed PMID: |
| − | <ref name="ref7">Berruyer, R., Adreit, H., Milazzo, J., Gaillard, S., Berger, A., Dioh,W., Lebrun, M.-H., and Tharreau, D. (2003). Identification and finemapping of Pi33, the rice resistance gene corresponding to theMagnaporthe grisea avirulence gene ACE1. Theor. Appl. Genet.107: 1139–1147.</ref>
| + | 23548743; PubMed Central PMCID: PMC3663280. |
| − | <ref name="ref8">Birker, D., Heidrich, K., Takahara, H., Narusaka, M., Deslandes, L.,Narusaka, Y., Reymond, M., Parker, J.E., and O’Connell, R.J.(2009). A locus conferring resistance to Colletotrichum higginsianum isshared by four geographically distinct Arabidopsis accessions. Plant J.60: 602–613.</ref>
| + | </ref> |
| | </references> | | </references> |
| | | | |
| − | ==Structured Information==
| |
| − | {{JaponicaGene|
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| − | GeneName = Os11g0225300|
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| − | Description = Disease resistance protein family protein|
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| − | Version = NM_001074069.1 GI:115484786 GeneID:4350112|
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| − | Length = 7166 bp|
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| − | Definition = Oryza sativa Japonica Group Os11g0225300, complete gene.|
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| − | Source = Oryza sativa Japonica Group
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| − |
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| − | ORGANISM Oryza sativa Japonica Group
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| − | Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
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| − | Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
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| − | clade; Ehrhartoideae; Oryzeae; Oryza.
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| − | |
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| − | Chromosome = [[:category:Japonica Chromosome 11|Chromosome 11]]|
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| − | AP = Chromosome 11:6537450..6544615|
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| − | CDS = 6537456..6538285,6539404..6541536,6543349..6544291|
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| − | GCID = <gbrowseImage1>
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| − | name=NC_008404:6537450..6544615
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| − | source=RiceChromosome11
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| − | preset=GeneLocation
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| − | </gbrowseImage1>|
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| − | GSID = <gbrowseImage2>
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| − | name=NC_008404:6537450..6544615
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| − | source=RiceChromosome11
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| − | preset=GeneLocation
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| − | </gbrowseImage2>|
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| − | CDNA = <cdnaseq>atggatgctccggtgagtttctccctaggtgccatgggccctctcctcaggaagctcgattcgcttccggtggctcccgaaatccggctgcctgagccactgaaggacggaatcgagctcctcaaggaagatctagaagaaatcggtgccgccctcgtggagcagtccatggtagattccccaagccacagggcaagatactggatggatgaggtgcgtgacctctcctaccacatcgaggactgcatcgacaccatgttttcgatgcgctgcggcggcgacgacggcaagcccagatccgttcgccgccacaaggttggccgtgtgaaggttgacggtttctccaagacgcagaagccgtgcacgaggctcgccaggatcgcggagctcagggctctggtgcgggaggccagcgagcgccacgaaaggtaccagcttggtgacggccgcgcctcgagctcgagctcgagctctcaccgcgtgttcactgcgcacggccaggttcctgcgccgtgcagaaatctggttggcatggacgaaccgaagacgaagctcaccaatatgctcaccgacgaagcagagctgcatatgaaagtggtatgcattcttggatcagccggtattggtaagaccacgcttgctgaacaagtataccgtaaacttagatggcaattcgattgccatgcttttgtgcgggcatcacgaaaacctgacatgaggaggcttcttggggccatcctctctcaagttcagctgcgtatacggatatctgataccagcacggtgcagagccttattgataatctctgggagtatctacagaaaaagaggtattttattgtaattgatgaattatatgaaacagcaacatgggatatcattaccagtgcttttccagaggataataattgcagtaggataatgactacggctggaattgaaggtgtagctctcgaatgctgcagttatcattctgtcaatattttcaagatgatacctcttggccttgatgattctgcaaaattattctttaatagagtttttggatcagagcaacaatgtccttatgaattgaatgaagtttcatataggattacagcaaaatgtggtggattgccactagcagtcattattatagccggtcttttagcaagcctgccgtgcaaaacagagctgtggtacaatatagatggatgtttatgttccagtgtgactacagatattgatttggatgagatactgaaggaaatcataagtcttggctacgacaatcttccacattatttgaagacatgtctgttgtatcttagtttatattcggagggtttcataatttggacggctgacttactgaagcaatggatatctgaaggtttcatcgctgtaatagatggagaagacatagaggaagtcgctgagagctatttctataaccttgttaacaggggaatgatccaaagtgtgaaaactaagtacaataatcaggtgttgtgtactgtgcaccacactgtatttgatcttattattcacaagtccaaagaagagaaatttatctccgcaatagattactctcaaactatgccaggaaattctttagaggctcgtcgattgtcattccactttagcaataccagatatgcaactgaagttgcaggtattacactgtcacaagttcgttcgtttgcctttcttggacttctgaagtgtatgccttctattatggaatttaagcttcttcgggttctaattcttgaattttggggagataaccatggatgcatgagttttaacgttgcaagaatttgtagattgtttcagcttagatatttgaagatctcaagccaaataataatagaattaccagcccagatccgggggctaaaatacttggaaacacttgaaatagatgcaagagtaactgcgattccatctgatattattcatctccgaagtttgttgcatctatattttcaagatgggatcgttctacctgatggcattggctgcatcagatctttgcgtacacttaagtattttgatcttggaagtaactctgaagagaatatacggagtcttggtcagctgacgaacttacgggatcttcatctcacttgttctgcaccaaaatctaatcagcaggcaaagagaaacctcgtaattctagcctcttatactgggaaactcggtaacctcaaatctgtcaaattttctcctggtgattcaggcatggatatttcctttttgttttatggaattggtatttcggttgatcgttccagaacagcgtcctctcttcctttctctgttaggacattagagttgccatccatttgcatatttgctagacttcctgactggattggtcaactccgtaaactccacacattgaatcttgctgttagagaactgatagaaaatgatattgatagtcttgcaggactgcctgacctcattgttctctcaatgcatatcatgaaagctcctatggaaaggattgtcttcaacagaaaagcatttccagttctcaagtatttcaagtttatatgtggcacactgcgcatggcttttcaggcaggagccatggccaatcttcacaggctcaagctaggtttcaatgcccataaaggggagaagtatgacaatattcttgtaggcattgagcacctattaaacctcaagaagattgctgttcgaattggaggagctgctgaagccaaggagtctgacaggatggctgcagaggctgcgttgaaagaagccattagaaagcatctaatgtttcttgatgatctcgacatagcaagggtagaatgtgttaaggaagagtataagtgtattaagaaaaaacacaagatcaagattgaagattcaattagcgaaaaaaatggggactcaaaaaagcagcattctgtcgaaaagaaagcagtgtggggcaaaactatgaagaatattgctgatagtggcgtgtttcctgaagattatactatgtcaagggagcaacgggtcgcagaaggcttcgtagtgggcattgaaaagtgcagggcagaggatgcggccgagcgaataatcaggaatgtgcctgtggactatgatgggcttggccaggtgagcacatccaagatacaggaccacttgcctgaacttgctcctcgtgctgtgcaaaacgagaagttcggctcttcaaatgatcttagcataatgatacaaatcaacaagtatgctcgtctgccatcttatgagtggagggacactgatatatccaaactgaatttccggcttctccgcgccccgatgttacttgaagctgtaacggcccgttgtcacttgttggacttaatcctcattggttcaaacaacattactgttcttgaccttggacgtcccacaatcaccaaactgccggcatctatagaatgtctacctaatttacggtacttgaggttgcagggcacgcaactgaagtcgctgtcggaggttattgtgaagatgcccaccatcagggggttggacatcaagaataccaagacagaggagctaccacaaggcattttgaggatgaagaagttgagtcacctgagtatgggggagaagcagaaaaatattcaagtattcatggaaaaaatgcagactctggctgagaccgtccaagacagcgatgacttgtccgacgaaacagagggaatagccgacgacgaaggcgagttctctacaagggccaacgcgtcaacaccgaaggtggatgaggacgaggtggaccggagggccaataacttcatcgccaggttcaggaagcagatcacgatcaggaattcaggattcgccaaaaaggagagcagcatcgacgaacgactgtggatacgagatctcgatgagtgccaactctccaagagaggtggacgattttaa</cdnaseq>|
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| − | AA = <aaseq>MDAPVSFSLGAMGPLLRKLDSLPVAPEIRLPEPLKDGIELLKED LEEIGAALVEQSMVDSPSHRARYWMDEVRDLSYHIEDCIDTMFSMRCGGDDGKPRSVR RHKVGRVKVDGFSKTQKPCTRLARIAELRALVREASERHERYQLGDGRASSSSSSSHR VFTAHGQVPAPCRNLVGMDEPKTKLTNMLTDEAELHMKVVCILGSAGIGKTTLAEQVY RKLRWQFDCHAFVRASRKPDMRRLLGAILSQVQLRIRISDTSTVQSLIDNLWEYLQKK RYFIVIDELYETATWDIITSAFPEDNNCSRIMTTAGIEGVALECCSYHSVNIFKMIPL GLDDSAKLFFNRVFGSEQQCPYELNEVSYRITAKCGGLPLAVIIIAGLLASLPCKTEL WYNIDGCLCSSVTTDIDLDEILKEIISLGYDNLPHYLKTCLLYLSLYSEGFIIWTADL LKQWISEGFIAVIDGEDIEEVAESYFYNLVNRGMIQSVKTKYNNQVLCTVHHTVFDLI IHKSKEEKFISAIDYSQTMPGNSLEARRLSFHFSNTRYATEVAGITLSQVRSFAFLGL LKCMPSIMEFKLLRVLILEFWGDNHGCMSFNVARICRLFQLRYLKISSQIIIELPAQI RGLKYLETLEIDARVTAIPSDIIHLRSLLHLYFQDGIVLPDGIGCIRSLRTLKYFDLG SNSEENIRSLGQLTNLRDLHLTCSAPKSNQQAKRNLVILASYTGKLGNLKSVKFSPGD SGMDISFLFYGIGISVDRSRTASSLPFSVRTLELPSICIFARLPDWIGQLRKLHTLNL AVRELIENDIDSLAGLPDLIVLSMHIMKAPMERIVFNRKAFPVLKYFKFICGTLRMAF QAGAMANLHRLKLGFNAHKGEKYDNILVGIEHLLNLKKIAVRIGGAAEAKESDRMAAE AALKEAIRKHLMFLDDLDIARVECVKEEYKCIKKKHKIKIEDSISEKNGDSKKQHSVE KKAVWGKTMKNIADSGVFPEDYTMSREQRVAEGFVVGIEKCRAEDAAERIIRNVPVDY DGLGQVSTSKIQDHLPELAPRAVQNEKFGSSNDLSIMIQINKYARLPSYEWRDTDISK LNFRLLRAPMLLEAVTARCHLLDLILIGSNNITVLDLGRPTITKLPASIECLPNLRYL RLQGTQLKSLSEVIVKMPTIRGLDIKNTKTEELPQGILRMKKLSHLSMGEKQKNIQVF MEKMQTLAETVQDSDDLSDETEGIADDEGEFSTRANASTPKVDEDEVDRRANNFIARF RKQITIRNSGFAKKESSIDERLWIRDLDECQLSKRGGRF</aaseq>|
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| − | DNA = <dnaseqindica>7..836#1955..4087#5900..6842#ggcggcatggatgctccggtgagtttctccctaggtgccatgggccctctcctcaggaagctcgattcgcttccggtggctcccgaaatccggctgcctgagccactgaaggacggaatcgagctcctcaaggaagatctagaagaaatcggtgccgccctcgtggagcagtccatggtagattccccaagccacagggcaagatactggatggatgaggtgcgtgacctctcctaccacatcgaggactgcatcgacaccatgttttcgatgcgctgcggcggcgacgacggcaagcccagatccgttcgccgccacaaggttggccgtgtgaaggttgacggtttctccaagacgcagaagccgtgcacgaggctcgccaggatcgcggagctcagggctctggtgcgggaggccagcgagcgccacgaaaggtaccagcttggtgacggccgcgcctcgagctcgagctcgagctctcaccgcgtgttcactgcgcacggccaggttcctgcgccgtgcagaaatctggttggcatggacgaaccgaagacgaagctcaccaatatgctcaccgacgaagcagagctgcatatgaaagtggtatgcattcttggatcagccggtattggtaagaccacgcttgctgaacaagtataccgtaaacttagatggcaattcgattgccatgcttttgtgcgggcatcacgaaaacctgacatgaggaggcttcttggggccatcctctctcaagttcagctgcgtatacggatatctgataccagcacggtgcagagccttattgataatctctgggagtatctacagaaaaagaggtaattaattaacgctatattcactgctttttaatactagttcagctactgagcatcaccaatagactctcaaaattctattcccaaaaatctgttattgggcgttctaaactgattttggggtgttgaatgtattcctccttccaacaaattggcttaattaactgcctaaaattaaggacttggcccatgtaaaaactattaacagaaatcatgctccccatcatccatcatccagcgtgatcacatctgcatgatcggccacgcctccctccgcgatcactcccgccatgattttgggagtcaaccctctcccctagaagagtagagcaagacatacgggaatgggagctgcaaaattttggtagacctttcggatattgttggagcaagatttttacaaaaaaaattgtaaattttggtattgggaatgattttgggagactcttgtgaggctatctccaacccttcatgtcattagcatgaggggactcagtgtccatagcattaagtatattgtcacatcggaaaaaatctgaggtggcaagagagttaatgaggagagagatgaaaagatgaagaaaccatctcttcacaacaaccaagaatgaaaacaagtgataggttcataaaaggagagagaagaaagatgattggatatatagtgtctatatgacatagcaagtatggaaactactttgatagtttctaggttggggatggcctgatgctgcacattgaacaattgctgttccctccgtcacattgaataaggcgcgcatgcattttaaaattgaactctctaaatatctgatcaataatattttgttataaattaacttttatttgacaaaaataatatcattggattgacatttaaatttactttgatataattgtgattttgttgttacaaatatcatagtattttagatattcaaaatcaaagatttgttttaaaaaccataccaagtttgactgcgccggataaagggggtaatttagaaaataaataaataaataaatatattatcctgataaacttcctttcctttttgagagagacctgatacactttgttcttttcccagagaatataatttaattatactttgcaggtattttattgtaattgatgaattatatgaaacagcaacatgggatatcattaccagtgcttttccagaggataataattgcagtaggataatgactacggctggaattgaaggtgtagctctcgaatgctgcagttatcattctgtcaatattttcaagatgatacctcttggccttgatgattctgcaaaattattctttaatagagtttttggatcagagcaacaatgtccttatgaattgaatgaagtttcatataggattacagcaaaatgtggtggattgccactagcagtcattattatagccggtcttttagcaagcctgccgtgcaaaacagagctgtggtacaatatagatggatgtttatgttccagtgtgactacagatattgatttggatgagatactgaaggaaatcataagtcttggctacgacaatcttccacattatttgaagacatgtctgttgtatcttagtttatattcggagggtttcataatttggacggctgacttactgaagcaatggatatctgaaggtttcatcgctgtaatagatggagaagacatagaggaagtcgctgagagctatttctataaccttgttaacaggggaatgatccaaagtgtgaaaactaagtacaataatcaggtgttgtgtactgtgcaccacactgtatttgatcttattattcacaagtccaaagaagagaaatttatctccgcaatagattactctcaaactatgccaggaaattctttagaggctcgtcgattgtcattccactttagcaataccagatatgcaactgaagttgcaggtattacactgtcacaagttcgttcgtttgcctttcttggacttctgaagtgtatgccttctattatggaatttaagcttcttcgggttctaattcttgaattttggggagataaccatggatgcatgagttttaacgttgcaagaatttgtagattgtttcagcttagatatttgaagatctcaagccaaataataatagaattaccagcccagatccgggggctaaaatacttggaaacacttgaaatagatgcaagagtaactgcgattccatctgatattattcatctccgaagtttgttgcatctatattttcaagatgggatcgttctacctgatggcattggctgcatcagatctttgcgtacacttaagtattttgatcttggaagtaactctgaagagaatatacggagtcttggtcagctgacgaacttacgggatcttcatctcacttgttctgcaccaaaatctaatcagcaggcaaagagaaacctcgtaattctagcctcttatactgggaaactcggtaacctcaaatctgtcaaattttctcctggtgattcaggcatggatatttcctttttgttttatggaattggtatttcggttgatcgttccagaacagcgtcctctcttcctttctctgttaggacattagagttgccatccatttgcatatttgctagacttcctgactggattggtcaactccgtaaactccacacattgaatcttgctgttagagaactgatagaaaatgatattgatagtcttgcaggactgcctgacctcattgttctctcaatgcatatcatgaaagctcctatggaaaggattgtcttcaacagaaaagcatttccagttctcaagtatttcaagtttatatgtggcacactgcgcatggcttttcaggcaggagccatggccaatcttcacaggctcaagctaggtttcaatgcccataaaggggagaagtatgacaatattcttgtaggcattgagcacctattaaacctcaagaagattgctgttcgaattggaggagctgctgaagccaaggagtctgacaggatggctgcagaggctgcgttgaaagaagccattagaaagcatctaatgtttcttgatgatctcgacatagcaagggtagaatgtgttaaggaagagtataagtgtattaagaaaaaacacaagatcaagattgaagattcaattagcgaaaaaaatggggactcaaaaaagcagcattctgtcgaaaagaaagcagtgtggggcaaaactatgaagaatattgctgatagtgggtatgttctttcctattatttcagcctctacattttccaatatatattgtttagaaataaatgattactacaacaataaccttatagtaaaacgctaaaacacagttgtatcaaaaggaatctttacaaaggtacatctatgctctttgaaaaggataagatgggatgctctatactaattggagcctctactagaagctttcacattaaccttagaaggcaaaagactggaaattcccacattaacaaaaaagaaaactaaaagcattaatctttgaaagatcaaatggtatgcgccaatgtatcaaatctaaggttgatatcttccaccacagaatatgtgcatttatcaaatttggaatcaataaatacctagttatacttggtttggacactcgagtatagtattttgatgaataataattgaaacattcagcattaacaaatattgagttttactcggtctagagtctcactagcttattttttatgattttattttataattccgaaattcagaattgataaatactgtgttgtactaggtttgaagtttttgttgaataatagtttcaaaattcaaaaacaataaatatgctcaatttagagcgtagagtaattttctcatgacctaataattctgcagtttagatttaatcatagtatctcatgatttgataattcaaaaatcgaaattaatacatactcagttgatgcttgtacattcacacgggttaatttctaccggtgtccaagcggtgtagcaagatcaaatagtatgggttagactcaatttacactttgtagtcaaagttgtgtgaccttgtaagcaatctagacaaatggcaaatctatggctatctaaaatttaaaacaaatcagacatgctatttacgggaagctgttttgatccctcaagagaatgtccctcgcttgtaaaaaaaaaccatctagaattctcaaaaaaaattcacaacattcatactatgtatgtatgtatgtatgcatgcatgcatgcatgcacacacacacacatgtatgtacatataacacatatacatatacatatacatattcatacataacgcacacacacaaattaacttaaatttttgaaaattttcaacttatgagtatatactaaggtacaagaatttgattcgtacctatatctagcaacaaaacaactcaaattcaactttattttacaatccattattacatacctaactaattatatgtttgggtggtatatacctagaagcaaaatctaacaaaaaaatgttcaaatttagttcaaacttgttagtaaagaagttaatgtccatacctgatctacattgccttgctctcatcatcgtcagcgttgtggcctttctcacaggcaacctctcctcgctcgagatccataaaaacaagagagaaaaaaatggattggttagttcgtgtgtgtatctatatataggtctatagtaaaaaaattactgggtgatgcgttgtgggatgggcgatgctggtagtctgcgggggtgggtttacacacacaacactccactaggtccaaactcaatttataacatttaggtataaaaaataaatatattcataccggaatttgtctttttgtttctcaatatataggtcgaatttgaagttgttctctcgtggaatgttagatgtcactgtactccacattgttaattaaatttttataactattttaattgaatttaaaagcaaaaaagtatatgaggggatatcctttcgtgggattagaattcattcctgctattaactagacctgtattgcagcgtgtttcctgaagattatactatgtcaagggagcaacgggtcgcagaaggcttcgtagtgggcattgaaaagtgcagggcagaggatgcggccgagcgaataatcaggaatgtgcctgtggactatgatgggcttggccaggtgagcacatccaagatacaggaccacttgcctgaacttgctcctcgtgctgtgcaaaacgagaagttcggctcttcaaatgatcttagcataatgatacaaatcaacaagtatgctcgtctgccatcttatgagtggagggacactgatatatccaaactgaatttccggcttctccgcgccccgatgttacttgaagctgtaacggcccgttgtcacttgttggacttaatcctcattggttcaaacaacattactgttcttgaccttggacgtcccacaatcaccaaactgccggcatctatagaatgtctacctaatttacggtacttgaggttgcagggcacgcaactgaagtcgctgtcggaggttattgtgaagatgcccaccatcagggggttggacatcaagaataccaagacagaggagctaccacaaggcattttgaggatgaagaagttgagtcacctgagtatgggggagaagcagaaaaatattcaagtattcatggaaaaaatgcagactctggctgagaccgtccaagacagcgatgacttgtccgacgaaacagagggaatagccgacgacgaaggcgagttctctacaagggccaacgcgtcaacaccgaaggtggatgaggacgaggtggaccggagggccaataacttcatcgccaggttcaggaagcagatcacgatcaggaattcaggattcgccaaaaaggagagcagcatcgacgaacgactgtggatacgagatctcgatgagtgccaactctccaagagaggtggacgattttaagaagaagttcgacgagatcattgccaggaacaggcacacatggaagccaatcgagtcaccgcgttctgtcaagcacggcaagtatttcgttcgctgcccgccgtcgctaatcaccagcgctgtcttttcctttttctttctttctatttttctagtatggtactccctccgtttcaggatattgtcaggaaacccctaatcaatcgccttgtgaacactggatgaactcacgcgaaagtggaagaacacgtagaacacaatagtgtagacgaacagacaacaaaaacagagtttttggtgctgcctgaattgcttgcagctttt</dnaseqindica>|
| |
| − | Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001074069.1 RefSeq:Os11g0225300]|
| |
| − | }}
| |
| | [[Category:Genes]] | | [[Category:Genes]] |
| | [[Category:Japonica mRNA]] | | [[Category:Japonica mRNA]] |
| Line 73: |
Line 37: |
| | [[Category:Japonica Chromosome 11]] | | [[Category:Japonica Chromosome 11]] |
| | [[Category:Chromosome 11]] | | [[Category:Chromosome 11]] |
| | + | ==Structured Information== |