首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >A novel gene, Pi40(t), linked to the DNA markers derived from NBS-LRR motifs confers broad spectrum of blast resistance in rice
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A novel gene, Pi40(t), linked to the DNA markers derived from NBS-LRR motifs confers broad spectrum of blast resistance in rice

机译:一个新的基因Pi40(t),与源自NBS-LRR基序的DNA标记相连,赋予水稻稻瘟病的广谱性

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摘要

Rice blast disease caused by Magnaporthe grisea is a continuous threat to stable rice production worldwide. In a modernized agricultural system, the development of varieties with broad-spectrum and durable resistance to blast disease is essential for increased rice production and sustainability. In this study, a new gene is identified in the introgression line IR65482-4-136-2-2 that has inherited the resistance gene from an EE genome wild Oryza species, O. australiensis (Acc. 100882). Genetic and molecular analysis localized a major resistance gene, Pi40(t), on the short arm of chromosome 6, where four blast resistance genes (Piz, Piz-5, Piz-t, and Pi9) were also identified, flanked by the markers S2539 and RM3330. Through e-Landing, 14 BAC/PAC clones within the 1.81-Mb equivalent virtual contig were identified on Rice Pseudomolecule3. Highly stringent primer sets designed for 6 NBS-LRR motifs located within PAC clone P0649C11 facilitated high-resolution mapping of the new resistance gene, Pi40(t). Following association analysis and detailed haplotyping approaches, a DNA marker, 9871.T7E2b, was identified to be linked to the Pi40(t) gene at the 70 Kb chromosomal region, and differentiated the Pi40(t) gene from the LTH monogenic differential lines possessing genes Piz, Piz-5, Piz-t, and Pi-9. Pi40(t) was validated using the most virulent isolates of Korea as well as the Philippines, suggesting a broad spectrum for the resistance gene. Marker-assisted selection (MAS) and pathotyping of BC progenies having two japonica cultivar genetic backgrounds further supported the potential of the resistance gene in rice breeding. Our study based on new gene identification strategies provides insight into novel genetic resources for blast resistance as well as future studies on cloning and functional analysis of a blast resistance gene useful for rice improvement.
机译:由稻瘟病引起的稻瘟病一直威胁着全球稻米稳定生产。在现代化的农业系统中,开发具有广谱和持久抗稻瘟病抗性的品种对于提高稻米产量和可持续性至关重要。在这项研究中,在渗入系IR65482-4-136-2-2中鉴定了一个新基因,该基因继承了来自EE基因组野生稻(O. australiensis)的抗性基因(Acc。100882)。遗传和分子分析将主要抗性基因Pi40(t)定位在6号染色体的短臂上,在那里还鉴定了四个爆炸性抗性基因(Piz,Piz-5,Piz-t和Pi9),两侧是标记S2539和RM3330。通过电子登陆,在水稻假分子3上鉴定出1.81-Mb等效虚拟重叠群内的14个BAC / PAC克隆。为位于PAC克隆P0649C11中的6个NBS-LRR基序设计的高度严格的引物组有助于新抗性基因Pi40(t)的高分辨率定位。经过关联分析和详细的单倍型分析方法,鉴定出一个DNA标记9871.T7E2b在70 Kb染色体区域与Pi40(t)基因连接,并从具有基因Piz,Piz-5,Piz-t和Pi-9。 Pi40(t)已使用韩国和菲律宾最强毒的分离株进行了验证,表明抗性基因的范围很广。具有两个粳稻品种遗传背景的BC后代的标记辅助选择(MAS)和病理分型进一步支持了抗性基因在水稻育种中的潜力。我们基于新的基因鉴定策略的研究提供了对新的抗稻瘟病遗传资源的见识,以及有关对用于水稻改良的抗稻瘟病基因的克隆和功能分析的未来研究。

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