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Complex genetic networks underlying the defensive system of rice (Oryza sativa L.) to Xanthomonas oryzae pv. oryzae

机译:水稻(Oryza sativa L.)到水稻Xanthomonas oryzae pv防御系统的复杂遗传网络。水稻

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摘要

Complete resistance (CR) and partial resistance (PR) of rice (Oryza sativa L.) to its bacterial pathogen, Xanthomonas oryzae pv. oryzae (Xoo), was genetically dissected by using 2 mapping populations and 10 Xoo races. Two CR genes, 50 quantitative resistance loci, and 60 digenic interactions were identified, which showed various degrees of race specificity to the Xoo races. The complex epistasis between these loci led us to the discovery of complex genetic networks underlying the rice defensive system to Xoo. The networks consisted of two major components: one representing interactions between alleles at the R loci of rice and alleles at the corresponding avirulence loci of Xoo for CR and the other comprising interactions between quantitative resistance loci in rice and their corresponding aggressiveness loci in Xoo for PR. The race specificity of PR and its strong genetic overlap with CR indicate that PR is essentially “weaker” CR. The genetic networks discovered are expected to maintain a high level of the allelic diversity at avirulent loci in the pathogen by stabilizing selection, which may maintain a high allelic diversity at R loci in the host by the frequency-dependent selection.
机译:水稻(Oryza sativa L.)对细菌病原体Xanthomonas oryzae pv的完全抗性(CR)和部分抗性(PR)。通过使用2个作图群体和10个Xoo种族对稻米(Xoo)进行了基因解剖。确定了两个CR基因,50个定量抗性基因座和60个双基因相互作用,它们显示了对Xoo种族的不同程度的种族特异性。这些基因座之间的复杂上位性使我们发现了Xoo水稻防御系统背后的复杂遗传网络。该网络由两个主要组成部分组成:一个代表水稻R基因座的等位基因与Xoo对于CR的相应无毒力基因座的等位基因之间的相互作用,另一个代表水稻中定量抗性基因座与其在Xoo对于PR的相应侵袭性基因座之间的相互作用。 。 PR的种族特异性及其与CR的强烈遗传重叠表明PR本质上是“弱”的CR。期望发现的遗传网络通过稳定选择而在病原体的无毒基因座中维持高水平的等位基因多样性,这可以通过频率依赖性选择在宿主中的R基因座处维持高等位基因多样性。

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