Difference between revisions of "Os11g0225300"

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(Function)
(Function)
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===Function===
 
===Function===
  
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" />
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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) proteins. This effector-triggered immunity (ETI) gives rise to stronger and faster defense responses than PAMP-triggered immunity and often involves a form of localized programmed cell death called the hypersensitive response (HR) (Dodds and Rathjen, 2010). The largest class of R proteins belongs to the conserved family of NB-LRR proteins (Tameling and Takken,2007). They contain a central nucleotide binding (NB) domain,also known as the NB-ARC (for NB adaptor shared by Apaf-1,certain R proteins, and CED-4) domain, and a C-terminal leucinerich repeat (LRR) domain. In monocot R proteins, the LRR repeatmotif is often not conserved (Bai et al., 2002) and in those cases,the domain is called leucine-rich domain (Monosi et al., 2004;Zhou et al., 2004). NB-LRR proteins are further subdivided according
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to their N-terminal domain into two major subclasses(Meyers et al., 1999; Pan et al., 2000). Proteins of the TIR-NB-LRR class possess an N-terminal Toll Interleukin-1 (TIR) domain,whereas CC-NB-LRR class proteins harbor a structured coiledcoil(CC) domain. Both N-terminal domains seem to be involved in R protein homodimerization and in the activation of defensesignaling (Bernoux et al., 2011; Maekawa et al., 2011). In the absence of the Avr protein, R proteins are maintained in an inactive conformation to avoid inappropriate defense activationand cell death (Takken and Goverse, 2012).<ref name="ref1" /> <ref name="ref2" />
  
 
===Expression===
 
===Expression===

Revision as of 02:59, 3 June 2014

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Annotated Information

Function

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) proteins. This effector-triggered immunity (ETI) gives rise to stronger and faster defense responses than PAMP-triggered immunity and often involves a form of localized programmed cell death called the hypersensitive response (HR) (Dodds and Rathjen, 2010). The largest class of R proteins belongs to the conserved family of NB-LRR proteins (Tameling and Takken,2007). They contain a central nucleotide binding (NB) domain,also known as the NB-ARC (for NB adaptor shared by Apaf-1,certain R proteins, and CED-4) domain, and a C-terminal leucinerich repeat (LRR) domain. In monocot R proteins, the LRR repeatmotif is often not conserved (Bai et al., 2002) and in those cases,the domain is called leucine-rich domain (Monosi et al., 2004;Zhou et al., 2004). NB-LRR proteins are further subdivided according to their N-terminal domain into two major subclasses(Meyers et al., 1999; Pan et al., 2000). Proteins of the TIR-NB-LRR class possess an N-terminal Toll Interleukin-1 (TIR) domain,whereas CC-NB-LRR class proteins harbor a structured coiledcoil(CC) domain. Both N-terminal domains seem to be involved in R protein homodimerization and in the activation of defensesignaling (Bernoux et al., 2011; Maekawa et al., 2011). In the absence of the Avr protein, R proteins are maintained in an inactive conformation to avoid inappropriate defense activationand cell death (Takken and Goverse, 2012).[1] [2]

Expression

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Evolution

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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.

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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