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Fitness costs associated with unnecessary virulence factors and life history traits: evolutionary insights from the potato late blight pathogen Phytophthora infestans

机译:与不必要的毒力因素和生活历史特征相关的健身成本:来自马铃薯的进化见解枯萎病原体植物植物感染症

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Background In gene-for-gene models of plant-pathogen interactions, the existence of fitness costs associated with unnecessary virulence factors still represents an issue, both in evolutionary biology and agricultural sciences. Measuring such costs experimentally has proven difficult, especially in pathogens not readily amenable to genetic transformation, since the creation of isogenic lines differing only by the presence or absence of avirulence genes cannot be achieved in many organisms. Here, we circumvented this difficulty by comparing fitness traits in groups of Phytophthora infestans isolates sharing the same multilocus fingerprint, but differing by their virulence/avirulence spectrum. Results Fitness was assessed from calculations derived from the basic reproduction number, combining several life history traits (latent period, spore density and lesion growth rate) evaluated on leaflets of the potato cultivar Bintje, which is free of resistance genes. A statistically significant fitness cost was found in isolates virulent to the R10 resistance gene. That cost was due to a lower spore production in virulent isolates; however, the latent period was shorter in virulent isolates. Similar trends, although not statistically significant, were observed for the other genes tested. Conclusion The data likely reflect the adaptive response of the pathogen to the cost associated with virulence. They suggest strong trade-offs between life history traits related to pathogenicity and adaptive biology of pathogens.
机译:背景技术植物病原体相互作用的基因模型,与不必要的毒力因子相关的健身成本仍然是进化生物学和农业科学的问题。在实验上测量这种成本已经证明是困难的,特别是在不容易扫描遗传转化的病原体中,因为在许多生物体中不能达到仅通过存在或不存在的异丙状线而不同。在这里,我们通过比较植物细胞凋亡分离的健身性状分离相同的多层指纹,但是通过它们的毒力/无流动谱不同,所以通过比较植物的健身性状来规避困难。结果评估了从基本再现数的计算评估的健身,结合了在马铃薯品种Bintje的传单上评估的几种寿命历史特征(潜伏期,孢子密度和病变生长率),这是没有抗性基因的抗性基因。发现统计学上显着的健身成本在分离毒性到R10抗性基因中。这种成本是由于毒性分离物的孢子产生较低;然而,毒性分离物的潜伏期短。对于测试的其他基因,观察到类似的趋势虽然没有统计学意义。结论数据可能反映病原体的适应性响应与毒力相关的成本。他们建议与病原体致病性和适应性生物学相关的生命历史特征之间的强劲权衡。

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