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首页> 外文期刊>Genome Biology and Evolution >Extensive Genomic Rearrangements along with Distinct Mobilome and TALome are Associated with Extreme Pathotypes of a Rice Pathogen
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Extensive Genomic Rearrangements along with Distinct Mobilome and TALome are Associated with Extreme Pathotypes of a Rice Pathogen

机译:广泛的基因组重排以及不同的单门和塔椎骨与水稻病原体的极端病理有关

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Xanthomonas oryzae pv. oryzae (Xoo) is a serious pathogen of rice which displays tremendous interstrain variation. The emergence of highly-virulent strains of Xoo is a major threat to rice cultivation. Evolutionary insights into genome dynamics of highly virulent strains as compared with the less-virulent ones are crucial for understanding the molecular basis of exceptional success of Xoo as a highly evolved plant pathogen. In the present study, we report complete genome sequence of Xoo strains with extreme-virulent pathotypes (XVPs) characterized based on their reaction toward ten resistance (Xa) genes. One strain, IXO1088, can overcome resistance mediated by all the ten resistance genes while the other strain IXO704 cannot overcome any of them. Interestingly, our investigation revealed that XVPs display dramatic variation in the genome structure with numerous rearrangements/inversions. Moreover, XVPs also possess distinct transposon content and prophage elements that may provide genomic flux required for the acquisition of novel gene cassettes and structural changes in the genome. Interestingly, analysis of transcription activator-like effector proteins, which are major virulence determinants of Xanthomonas pathogen show marked variation in the transcription activator-like effector content and DNA binding domain of tal genes. Overall, the present study indicates the possible role of mobilomes and repetitive elements in major structural and sequence alterations, which may be leading to the emergence of novel and extreme pathotypes. The knowledge and resource of XVPs will be invaluable in the further systematic understanding of evolution and management of variant pathotypes of Xoo.
机译:Xanthomonas oryzae pv。 oryzae(xoo)是大米的严重病原体,其展示了巨大的情化变异。高毒性的XOO株的出现是对水稻种植的重大威胁。与较低毒力的菌株相比,对高毒性菌株的基因组动力学的进化见解对于了解XOO的特殊成功作为高度发展的植物病原体至关重要。在本研究中,我们报告了具有极端毒力的病理型(XVP)的XOO菌株的完整基因组序列,其特征在于它们对十抗性(XA)基因的反应。一个菌株IXO1088可以克服所有十种抗性基因介导的抗性,而另一个菌株IXO704不能克服它们中的任何一个。有趣的是,我们的调查揭示了XVPS在基因组结构中显示出众多重排/逆分的剧烈变化。此外,XVPS还具有不同的转座子含量和前进元素,可以提供采集新型基因盒和基因组结构变化所需的基因组助焊剂。有趣的是,转录活化剂样效应蛋白分析,Xanthomonas病原体的主要毒力决定簇显示出转录活化剂样效应含量和TAL基因的DNA结合结构域的显着变化。总体而言,本研究表明了Mobileomes和重复元素在主要结构和序列变化中的可能作用,这可能导致新颖和极端病理型的出现。 XVP的知识和资源在进一步系统地了解XOO的变异诊断的演变和管理方面的态度非常宝贵。

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