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首页> 外文期刊>Molecular Plant-Microbe Interactions >A Novel, Sensitive Method to Evaluate Potato Germplasm for Bacterial Wilt Resistance Using a Luminescent Ralstonia solanacearum Reporter Strain
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A Novel, Sensitive Method to Evaluate Potato Germplasm for Bacterial Wilt Resistance Using a Luminescent Ralstonia solanacearum Reporter Strain

机译:一种新颖,灵敏的方法来评估马铃薯种质的抗细菌性枯萎病使用发光的Ralstonia solanacearum记者菌株

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Several breeding programs are under way to introduce resistance to bacterial wilt caused by Ralstonia solanacearum in solanaceous crops. The lack of screening methods allowing easy measurement of pathogen colonization and the inability to detect latent (i.e., symptomless) infections are major limitations when evaluating resistance to this disease in plant germplasm. We describe a new method to study the interaction between R. solanacearum and potato germplasm that overcomes these restrictions. The R. solanacearum UY031 was genetically modified to constitutively generate light from a synthetic luxCDABE operon stably inserted in its chromosome. Colonization of this reporter strain on different potato accessions was followed using life imaging. Bacterial detection in planta by this nondisruptive system correlated with the development of wilting symptoms. In addition, we demonstrated that quantitative detection of the recombinant strain using a luminometer can identify latent infections on symptomless potato plants. We have developed a novel, unsophisticated, and accurate method for high-throughput evaluation of pathogen colonization in plant populations. We applied this method to compare the behavior of potato accessions with contrasting resistance to R. solanacearum. This new system will be especially useful to detect latency in symptomless parental lines before their inclusion in long-term breeding programs for disease resistance.
机译:正在实施几种育种计划,以对茄科作物中的青枯菌引起的青枯病产生抗性。当评估植物种质对这种疾病的抗性时,缺乏筛选方法使得可以容易地测量病原体的定殖以及无法检测到潜伏(即无症状)感染是主要的限制。我们描述了一种新的方法来研究青枯菌和马铃薯种质之间的相互作用,克服了这些限制。对青枯雷尔氏菌UY031进行了基因修饰,使其从稳定插入其染色体的合成luxCDABE操纵子组成性地产生光。使用生命成像追踪该报告菌株在不同马铃薯种质上的定植。通过这种非破坏性系统在植物中进行细菌检测与萎symptoms症状的发展有关。此外,我们证明了使用光度计对重组菌株进行定量检测可以识别无症状马铃薯植株上的潜在感染。我们已经开发出一种新颖,简单,准确的方法来高通量评估植物种群中的病原体定植。我们应用这种方法来比较马铃薯种质的行为与对青枯菌的抗性。这个新系统对于在无症状的父母系中将潜伏期纳入抗病长期育种计划之前,将特别有用。

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