Difference between revisions of "Os11g0225300"

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(References)
(References)
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<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">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="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>
 
<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>
 +
<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>
 +
<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>
 +
<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>
 +
<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>
 +
<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>
 +
<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>
 
</references>
 
</references>
  

Revision as of 02:49, 3 June 2014

Please input one-sentence summary here.

Annotated Information

Function

afdhgjhhk [1] fdfdfdf[2]

Expression

Please input expression information here.

Evolution

Please input evolution information here.

You can also add sub-section(s) at will.

Labs working on this gene

  • 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
  • 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
  • CNRS, UMR 2594 Laboratoire des Interactions Plantes-Microorganismes, F-31326 Castanet-Tolosan, France
  • Iwate Biotechnology Research Center, Kitakami, Iwate 024-0003, Japan

References

  1. 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.
  2. 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.

Cite error: <ref> tag with name "ref3" defined in <references> is not used in prior text.
Cite error: <ref> tag with name "ref4" defined in <references> is not used in prior text.
Cite error: <ref> tag with name "ref5" defined in <references> is not used in prior text.
Cite error: <ref> tag with name "ref6" defined in <references> is not used in prior text.
Cite error: <ref> tag with name "ref7" defined in <references> is not used in prior text.
Cite error: <ref> tag with name "ref8" defined in <references> is not used in prior text.

Structured Information

Gene Name

Os11g0225300

Description

Disease resistance protein family protein

Version

NM_001074069.1 GI:115484786 GeneID:4350112

Length

7166 bp

Definition

Oryza sativa Japonica Group Os11g0225300, complete gene.

Source

Oryza sativa Japonica Group

 ORGANISM  Oryza sativa Japonica Group
           Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
           Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
           clade; Ehrhartoideae; Oryzeae; Oryza.
Chromosome

Chromosome 11

Location

Chromosome 11:6537450..6544615

Sequence Coding Region

6537456..6538285,6539404..6541536,6543349..6544291

Expression

GEO Profiles:Os11g0225300

Genome Context

<gbrowseImage1> name=NC_008404:6537450..6544615 source=RiceChromosome11 preset=GeneLocation </gbrowseImage1>

Gene Structure

<gbrowseImage2> name=NC_008404:6537450..6544615 source=RiceChromosome11 preset=GeneLocation </gbrowseImage2>

Coding Sequence

<cdnaseq>atggatgctccggtgagtttctccctaggtgccatgggccctctcctcaggaagctcgattcgcttccggtggctcccgaaatccggctgcctgagccactgaaggacggaatcgagctcctcaaggaagatctagaagaaatcggtgccgccctcgtggagcagtccatggtagattccccaagccacagggcaagatactggatggatgaggtgcgtgacctctcctaccacatcgaggactgcatcgacaccatgttttcgatgcgctgcggcggcgacgacggcaagcccagatccgttcgccgccacaaggttggccgtgtgaaggttgacggtttctccaagacgcagaagccgtgcacgaggctcgccaggatcgcggagctcagggctctggtgcgggaggccagcgagcgccacgaaaggtaccagcttggtgacggccgcgcctcgagctcgagctcgagctctcaccgcgtgttcactgcgcacggccaggttcctgcgccgtgcagaaatctggttggcatggacgaaccgaagacgaagctcaccaatatgctcaccgacgaagcagagctgcatatgaaagtggtatgcattcttggatcagccggtattggtaagaccacgcttgctgaacaagtataccgtaaacttagatggcaattcgattgccatgcttttgtgcgggcatcacgaaaacctgacatgaggaggcttcttggggccatcctctctcaagttcagctgcgtatacggatatctgataccagcacggtgcagagccttattgataatctctgggagtatctacagaaaaagaggtattttattgtaattgatgaattatatgaaacagcaacatgggatatcattaccagtgcttttccagaggataataattgcagtaggataatgactacggctggaattgaaggtgtagctctcgaatgctgcagttatcattctgtcaatattttcaagatgatacctcttggccttgatgattctgcaaaattattctttaatagagtttttggatcagagcaacaatgtccttatgaattgaatgaagtttcatataggattacagcaaaatgtggtggattgccactagcagtcattattatagccggtcttttagcaagcctgccgtgcaaaacagagctgtggtacaatatagatggatgtttatgttccagtgtgactacagatattgatttggatgagatactgaaggaaatcataagtcttggctacgacaatcttccacattatttgaagacatgtctgttgtatcttagtttatattcggagggtttcataatttggacggctgacttactgaagcaatggatatctgaaggtttcatcgctgtaatagatggagaagacatagaggaagtcgctgagagctatttctataaccttgttaacaggggaatgatccaaagtgtgaaaactaagtacaataatcaggtgttgtgtactgtgcaccacactgtatttgatcttattattcacaagtccaaagaagagaaatttatctccgcaatagattactctcaaactatgccaggaaattctttagaggctcgtcgattgtcattccactttagcaataccagatatgcaactgaagttgcaggtattacactgtcacaagttcgttcgtttgcctttcttggacttctgaagtgtatgccttctattatggaatttaagcttcttcgggttctaattcttgaattttggggagataaccatggatgcatgagttttaacgttgcaagaatttgtagattgtttcagcttagatatttgaagatctcaagccaaataataatagaattaccagcccagatccgggggctaaaatacttggaaacacttgaaatagatgcaagagtaactgcgattccatctgatattattcatctccgaagtttgttgcatctatattttcaagatgggatcgttctacctgatggcattggctgcatcagatctttgcgtacacttaagtattttgatcttggaagtaactctgaagagaatatacggagtcttggtcagctgacgaacttacgggatcttcatctcacttgttctgcaccaaaatctaatcagcaggcaaagagaaacctcgtaattctagcctcttatactgggaaactcggtaacctcaaatctgtcaaattttctcctggtgattcaggcatggatatttcctttttgttttatggaattggtatttcggttgatcgttccagaacagcgtcctctcttcctttctctgttaggacattagagttgccatccatttgcatatttgctagacttcctgactggattggtcaactccgtaaactccacacattgaatcttgctgttagagaactgatagaaaatgatattgatagtcttgcaggactgcctgacctcattgttctctcaatgcatatcatgaaagctcctatggaaaggattgtcttcaacagaaaagcatttccagttctcaagtatttcaagtttatatgtggcacactgcgcatggcttttcaggcaggagccatggccaatcttcacaggctcaagctaggtttcaatgcccataaaggggagaagtatgacaatattcttgtaggcattgagcacctattaaacctcaagaagattgctgttcgaattggaggagctgctgaagccaaggagtctgacaggatggctgcagaggctgcgttgaaagaagccattagaaagcatctaatgtttcttgatgatctcgacatagcaagggtagaatgtgttaaggaagagtataagtgtattaagaaaaaacacaagatcaagattgaagattcaattagcgaaaaaaatggggactcaaaaaagcagcattctgtcgaaaagaaagcagtgtggggcaaaactatgaagaatattgctgatagtggcgtgtttcctgaagattatactatgtcaagggagcaacgggtcgcagaaggcttcgtagtgggcattgaaaagtgcagggcagaggatgcggccgagcgaataatcaggaatgtgcctgtggactatgatgggcttggccaggtgagcacatccaagatacaggaccacttgcctgaacttgctcctcgtgctgtgcaaaacgagaagttcggctcttcaaatgatcttagcataatgatacaaatcaacaagtatgctcgtctgccatcttatgagtggagggacactgatatatccaaactgaatttccggcttctccgcgccccgatgttacttgaagctgtaacggcccgttgtcacttgttggacttaatcctcattggttcaaacaacattactgttcttgaccttggacgtcccacaatcaccaaactgccggcatctatagaatgtctacctaatttacggtacttgaggttgcagggcacgcaactgaagtcgctgtcggaggttattgtgaagatgcccaccatcagggggttggacatcaagaataccaagacagaggagctaccacaaggcattttgaggatgaagaagttgagtcacctgagtatgggggagaagcagaaaaatattcaagtattcatggaaaaaatgcagactctggctgagaccgtccaagacagcgatgacttgtccgacgaaacagagggaatagccgacgacgaaggcgagttctctacaagggccaacgcgtcaacaccgaaggtggatgaggacgaggtggaccggagggccaataacttcatcgccaggttcaggaagcagatcacgatcaggaattcaggattcgccaaaaaggagagcagcatcgacgaacgactgtggatacgagatctcgatgagtgccaactctccaagagaggtggacgattttaa</cdnaseq>

Protein Sequence

<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>

Gene Sequence

<dnaseqindica>7..836#1955..4087#5900..6842#ggcggcatggatgctccggtgagtttctccctaggtgccatgggccctctcctcaggaagctcgattcgcttccggtggctcccgaaatccggctgcctgagccactgaaggacggaatcgagctcctcaaggaagatctagaagaaatcggtgccgccctcgtggagcagtccatggtagattccccaagccacagggcaagatactggatggatgaggtgcgtgacctctcctaccacatcgaggactgcatcgacaccatgttttcgatgcgctgcggcggcgacgacggcaagcccagatccgttcgccgccacaaggttggccgtgtgaaggttgacggtttctccaagacgcagaagccgtgcacgaggctcgccaggatcgcggagctcagggctctggtgcgggaggccagcgagcgccacgaaaggtaccagcttggtgacggccgcgcctcgagctcgagctcgagctctcaccgcgtgttcactgcgcacggccaggttcctgcgccgtgcagaaatctggttggcatggacgaaccgaagacgaagctcaccaatatgctcaccgacgaagcagagctgcatatgaaagtggtatgcattcttggatcagccggtattggtaagaccacgcttgctgaacaagtataccgtaaacttagatggcaattcgattgccatgcttttgtgcgggcatcacgaaaacctgacatgaggaggcttcttggggccatcctctctcaagttcagctgcgtatacggatatctgataccagcacggtgcagagccttattgataatctctgggagtatctacagaaaaagaggtaattaattaacgctatattcactgctttttaatactagttcagctactgagcatcaccaatagactctcaaaattctattcccaaaaatctgttattgggcgttctaaactgattttggggtgttgaatgtattcctccttccaacaaattggcttaattaactgcctaaaattaaggacttggcccatgtaaaaactattaacagaaatcatgctccccatcatccatcatccagcgtgatcacatctgcatgatcggccacgcctccctccgcgatcactcccgccatgattttgggagtcaaccctctcccctagaagagtagagcaagacatacgggaatgggagctgcaaaattttggtagacctttcggatattgttggagcaagatttttacaaaaaaaattgtaaattttggtattgggaatgattttgggagactcttgtgaggctatctccaacccttcatgtcattagcatgaggggactcagtgtccatagcattaagtatattgtcacatcggaaaaaatctgaggtggcaagagagttaatgaggagagagatgaaaagatgaagaaaccatctcttcacaacaaccaagaatgaaaacaagtgataggttcataaaaggagagagaagaaagatgattggatatatagtgtctatatgacatagcaagtatggaaactactttgatagtttctaggttggggatggcctgatgctgcacattgaacaattgctgttccctccgtcacattgaataaggcgcgcatgcattttaaaattgaactctctaaatatctgatcaataatattttgttataaattaacttttatttgacaaaaataatatcattggattgacatttaaatttactttgatataattgtgattttgttgttacaaatatcatagtattttagatattcaaaatcaaagatttgttttaaaaaccataccaagtttgactgcgccggataaagggggtaatttagaaaataaataaataaataaatatattatcctgataaacttcctttcctttttgagagagacctgatacactttgttcttttcccagagaatataatttaattatactttgcaggtattttattgtaattgatgaattatatgaaacagcaacatgggatatcattaccagtgcttttccagaggataataattgcagtaggataatgactacggctggaattgaaggtgtagctctcgaatgctgcagttatcattctgtcaatattttcaagatgatacctcttggccttgatgattctgcaaaattattctttaatagagtttttggatcagagcaacaatgtccttatgaattgaatgaagtttcatataggattacagcaaaatgtggtggattgccactagcagtcattattatagccggtcttttagcaagcctgccgtgcaaaacagagctgtggtacaatatagatggatgtttatgttccagtgtgactacagatattgatttggatgagatactgaaggaaatcataagtcttggctacgacaatcttccacattatttgaagacatgtctgttgtatcttagtttatattcggagggtttcataatttggacggctgacttactgaagcaatggatatctgaaggtttcatcgctgtaatagatggagaagacatagaggaagtcgctgagagctatttctataaccttgttaacaggggaatgatccaaagtgtgaaaactaagtacaataatcaggtgttgtgtactgtgcaccacactgtatttgatcttattattcacaagtccaaagaagagaaatttatctccgcaatagattactctcaaactatgccaggaaattctttagaggctcgtcgattgtcattccactttagcaataccagatatgcaactgaagttgcaggtattacactgtcacaagttcgttcgtttgcctttcttggacttctgaagtgtatgccttctattatggaatttaagcttcttcgggttctaattcttgaattttggggagataaccatggatgcatgagttttaacgttgcaagaatttgtagattgtttcagcttagatatttgaagatctcaagccaaataataatagaattaccagcccagatccgggggctaaaatacttggaaacacttgaaatagatgcaagagtaactgcgattccatctgatattattcatctccgaagtttgttgcatctatattttcaagatgggatcgttctacctgatggcattggctgcatcagatctttgcgtacacttaagtattttgatcttggaagtaactctgaagagaatatacggagtcttggtcagctgacgaacttacgggatcttcatctcacttgttctgcaccaaaatctaatcagcaggcaaagagaaacctcgtaattctagcctcttatactgggaaactcggtaacctcaaatctgtcaaattttctcctggtgattcaggcatggatatttcctttttgttttatggaattggtatttcggttgatcgttccagaacagcgtcctctcttcctttctctgttaggacattagagttgccatccatttgcatatttgctagacttcctgactggattggtcaactccgtaaactccacacattgaatcttgctgttagagaactgatagaaaatgatattgatagtcttgcaggactgcctgacctcattgttctctcaatgcatatcatgaaagctcctatggaaaggattgtcttcaacagaaaagcatttccagttctcaagtatttcaagtttatatgtggcacactgcgcatggcttttcaggcaggagccatggccaatcttcacaggctcaagctaggtttcaatgcccataaaggggagaagtatgacaatattcttgtaggcattgagcacctattaaacctcaagaagattgctgttcgaattggaggagctgctgaagccaaggagtctgacaggatggctgcagaggctgcgttgaaagaagccattagaaagcatctaatgtttcttgatgatctcgacatagcaagggtagaatgtgttaaggaagagtataagtgtattaagaaaaaacacaagatcaagattgaagattcaattagcgaaaaaaatggggactcaaaaaagcagcattctgtcgaaaagaaagcagtgtggggcaaaactatgaagaatattgctgatagtgggtatgttctttcctattatttcagcctctacattttccaatatatattgtttagaaataaatgattactacaacaataaccttatagtaaaacgctaaaacacagttgtatcaaaaggaatctttacaaaggtacatctatgctctttgaaaaggataagatgggatgctctatactaattggagcctctactagaagctttcacattaaccttagaaggcaaaagactggaaattcccacattaacaaaaaagaaaactaaaagcattaatctttgaaagatcaaatggtatgcgccaatgtatcaaatctaaggttgatatcttccaccacagaatatgtgcatttatcaaatttggaatcaataaatacctagttatacttggtttggacactcgagtatagtattttgatgaataataattgaaacattcagcattaacaaatattgagttttactcggtctagagtctcactagcttattttttatgattttattttataattccgaaattcagaattgataaatactgtgttgtactaggtttgaagtttttgttgaataatagtttcaaaattcaaaaacaataaatatgctcaatttagagcgtagagtaattttctcatgacctaataattctgcagtttagatttaatcatagtatctcatgatttgataattcaaaaatcgaaattaatacatactcagttgatgcttgtacattcacacgggttaatttctaccggtgtccaagcggtgtagcaagatcaaatagtatgggttagactcaatttacactttgtagtcaaagttgtgtgaccttgtaagcaatctagacaaatggcaaatctatggctatctaaaatttaaaacaaatcagacatgctatttacgggaagctgttttgatccctcaagagaatgtccctcgcttgtaaaaaaaaaccatctagaattctcaaaaaaaattcacaacattcatactatgtatgtatgtatgtatgcatgcatgcatgcatgcacacacacacacatgtatgtacatataacacatatacatatacatatacatattcatacataacgcacacacacaaattaacttaaatttttgaaaattttcaacttatgagtatatactaaggtacaagaatttgattcgtacctatatctagcaacaaaacaactcaaattcaactttattttacaatccattattacatacctaactaattatatgtttgggtggtatatacctagaagcaaaatctaacaaaaaaatgttcaaatttagttcaaacttgttagtaaagaagttaatgtccatacctgatctacattgccttgctctcatcatcgtcagcgttgtggcctttctcacaggcaacctctcctcgctcgagatccataaaaacaagagagaaaaaaatggattggttagttcgtgtgtgtatctatatataggtctatagtaaaaaaattactgggtgatgcgttgtgggatgggcgatgctggtagtctgcgggggtgggtttacacacacaacactccactaggtccaaactcaatttataacatttaggtataaaaaataaatatattcataccggaatttgtctttttgtttctcaatatataggtcgaatttgaagttgttctctcgtggaatgttagatgtcactgtactccacattgttaattaaatttttataactattttaattgaatttaaaagcaaaaaagtatatgaggggatatcctttcgtgggattagaattcattcctgctattaactagacctgtattgcagcgtgtttcctgaagattatactatgtcaagggagcaacgggtcgcagaaggcttcgtagtgggcattgaaaagtgcagggcagaggatgcggccgagcgaataatcaggaatgtgcctgtggactatgatgggcttggccaggtgagcacatccaagatacaggaccacttgcctgaacttgctcctcgtgctgtgcaaaacgagaagttcggctcttcaaatgatcttagcataatgatacaaatcaacaagtatgctcgtctgccatcttatgagtggagggacactgatatatccaaactgaatttccggcttctccgcgccccgatgttacttgaagctgtaacggcccgttgtcacttgttggacttaatcctcattggttcaaacaacattactgttcttgaccttggacgtcccacaatcaccaaactgccggcatctatagaatgtctacctaatttacggtacttgaggttgcagggcacgcaactgaagtcgctgtcggaggttattgtgaagatgcccaccatcagggggttggacatcaagaataccaagacagaggagctaccacaaggcattttgaggatgaagaagttgagtcacctgagtatgggggagaagcagaaaaatattcaagtattcatggaaaaaatgcagactctggctgagaccgtccaagacagcgatgacttgtccgacgaaacagagggaatagccgacgacgaaggcgagttctctacaagggccaacgcgtcaacaccgaaggtggatgaggacgaggtggaccggagggccaataacttcatcgccaggttcaggaagcagatcacgatcaggaattcaggattcgccaaaaaggagagcagcatcgacgaacgactgtggatacgagatctcgatgagtgccaactctccaagagaggtggacgattttaagaagaagttcgacgagatcattgccaggaacaggcacacatggaagccaatcgagtcaccgcgttctgtcaagcacggcaagtatttcgttcgctgcccgccgtcgctaatcaccagcgctgtcttttcctttttctttctttctatttttctagtatggtactccctccgtttcaggatattgtcaggaaacccctaatcaatcgccttgtgaacactggatgaactcacgcgaaagtggaagaacacgtagaacacaatagtgtagacgaacagacaacaaaaacagagtttttggtgctgcctgaattgcttgcagctttt</dnaseqindica>

External Link(s)

NCBI Gene:Os11g0225300, RefSeq:Os11g0225300