1,126
Views
6
CrossRef citations to date
0
Altmetric
Article; Agriculture and Environmental Biotechnology

Expression analysis of innate immunity related genes in the true/field blast resistance gene-mediated defence response

, , , , , , & show all
Pages 999-1007 | Received 09 Apr 2014, Accepted 29 May 2014, Published online: 18 Nov 2014

References

  • Strange RN, Scott PR. Plant disease: a threat to global food security. Ann Rev Phytopathol. 2005;43:83–116.
  • Skamnioti P, Gurr SJ. Against the grain: safeguarding rice from rice blast disease. Trends Biotechnol. 2009;27:141–150.
  • Kou Y, Wang S. Broad-spectrum and durability: understanding of quantitative disease resistance. Curr Opin Plant Biol. 2010;13:181–185.
  • Xu X, Lv Q, Shang J, Pang Z, Zhou Z, Wang J, Jiang G, Tao Y, Xu Q, Li X, Zhao X, Li S, Xu J, Zhu L. Excavation of Pid3 orthologs with differential resistance spectra to Magnaporthe oryzae in rice resource. PLoS One. 2014;9:e93275.
  • Chen XW, Shang JJ, Chen DX, Lei CL, Zou Y, Zhai WX, Liu GZ, Xu JC, Ling ZZ, Cao G, Ma BT, Wang YP, Zhao XF, Li SG, Zhu H. A B-lectin receptor kinase gene conferring rice blast resistance. Plant J. 2006;46:794–804.
  • Fukuoka S, Saka N, Koga H, Ono K, Shimizu T, Ebana K, Hayashi N, Takahashi A, Hirochika H, Okuno K, Yano M. Loss of function of a proline-containing protein confers durable disease resistance in rice. Science. 2009;325:998–1001.
  • Kim ST, Yu S, Kang YH, Kim SG, Kim JY, Kim SH, Kang KY. The rice pathogen-related protein 10 (JIOsPR10) is induced by abiotic and biotic stresses and exhibits ribonuclease activity. Plant Cell Rep. 2008;27:593–603.
  • Hammond-Kosack KE, Parker JE. Deciphering plant–pathogen communication: fresh perspectives for molecular resistance breeding. Curr Opin Biotechnol. 2003;14:177–193.
  • Loake G, Grant M. Salicylic acid in plant defence – the players and protagonists. Curr Opin Plant Biol. 2007;10:466–472.
  • Shimono M, Sugano S, Nakayama A, Jiang CJ, Ono K, Toki S, Takatsuji H. Rice WRKY45 plays a crucial role in benzothiadiazole-inducible blast resistance. Plant Cell. 2007;19:2064–2076.
  • Kim EH, Kim YS, Park SH, Choi YD, Chung YY, Lee IJ, Kim JK. Methyl jasmonate reduces grain yield by mediating stress signals to alter spikelet development in rice. Plant Physiol. 2009;149:1751–1760.
  • Seo YS, Lee SK, Song MY, Suh JP Hahn TR, Ronald P, Jeon JS. The HSP90-SGT1-RAR1 molecular chaperone complex: a core modulator in plant immunity. J Plant Biol. 2008;51:1–10.
  • Koornneef A, Pieterse CMJ. Cross talk in defense signaling. Plant Physiol. 2008;146:839–844.
  • Takahashi A, Hayashi N, Miyao A, Hirochika H. Unique features of the rice blast resistance Pish locus revealed by large scale retrotransposon-tagging. BMC Plant Biol. 2010;10:175.
  • Okuyama Y, Kanzaki H, Abe A, Yoshida K, Tamiru M, Saitoh H, Fujibe T, Matsumura H, Shenton M, Clark Galam D, Undan J, Ito A, Sone T, Terauchi R. A multifaceted genomics approach allows the isolation of the rice Pia-blast resistance gene consisting of two adjacent NBS-LRR protein genes. Plant J. 2011;66:467–479.
  • Xu X, Hayashi N, Wang CT, Fukuoka S, Kawasaki S, Takatsuji H and Jiang CJ. Rice blast resistance gene Pikahei-1(t), a member of a resistance gene cluster on chromosome 4, encodes a nucleotide-binding site and leucine-rich repeat protein. Mol Breed. 2014;34(2):691–700.
  • Koornneef A, Pieterse CMJ. Cross talk in defense signaling. Plant Physiol. 2008;146:839–844.
  • Tao Z, Kou Y, Liu H, Li XH, Xiao J, Wang SP. OsWRKY45 alleles play different roles in abscisic acid signalling and salt stress tolerance but similar roles in drought and cold tolerance in rice. J Exp Bot. 2011;62:4863–4874.
  • Jiang CJ, Shimono M, Sugano S, Kojima M, Yazawa K, Yoshida R, Inoue H, Hayashi N, Sakakibara H, Takatsuji H. Abscisic acid interacts antagonistically with salicylic acid signaling pathway in rice Magnaporthe grisea. Mol Plant Microbe Interact. 2010;23:791–798.
  • Yasuda M, Ishikawa A, Jikumaru Y, Seki M, Umezawa T, Asami T, Maruyama-Nakashita A, Kudo T, Shinozaki K, Yoshida S, Nakashita H. Antagonistic interaction between systemic acquired resistance and the abscisic acid-mediated abiotic stress response in Arabidopsis. Plant Cell. 2008;20:1678–1692.
  • Kim SG, Kim ST, Wang Y, Yu S, Choi IS, Kim YC, Kim WT, Agrawal GK, Rakwal R, Kang KY. The RNase activity of rice probenazole-induced protein1 (PBZ1) plays a key role in cell death in plants. Mol Cells. 2011;31:25–31.
  • Wang YL, Gao MJ, Li Q, Wang LY, Wang JJ, Jeon JS, Qu N, Zhang YL, He ZH. OsRAR1 and OsSGT1 physically interact and function in rice basal disease resistance. Mol Plant Microbe Interact. 2008;21:294–303.
  • Thao NP, Chen LT, Nakashima A, Hara SI, Umemura K, Takahashi A, Shirasu K, Kawasaki T, Shimamoto K. RAR1 and HSP90 form a complex with Rac/RopGTPase and function in innate-immune responses in rice. Plant Cell. 2007;19:4035–4045.
  • Yan J, Zhang Y, Ding Y. Binding mechanism between Hsp90 and Sgt1 explored by homology modeling and molecular dynamics simulations in rice. J Mol Model. 2012;18:4665–4673.