首页> 外文期刊>BMC Biology >Albugo-imposed changes to tryptophan-derived antimicrobial metabolite biosynthesis may contribute to suppression of non-host resistance to Phytophthora infestans in Arabidopsis thaliana
【24h】

Albugo-imposed changes to tryptophan-derived antimicrobial metabolite biosynthesis may contribute to suppression of non-host resistance to Phytophthora infestans in Arabidopsis thaliana

机译:白蛋白对色氨酸衍生的微生物代谢产物生物合成的影响可能有助于抑制拟南芥对疫霉菌的非寄主抗性

获取原文
           

摘要

BackgroundPlants are exposed to diverse pathogens and pests, yet most plants are resistant to most plant pathogens. Non-host resistance describes the ability of all members of a plant species to successfully prevent colonization by any given member of a pathogen species. White blister rust caused by Albugo species can overcome non-host resistance and enable secondary infection and reproduction of usually non-virulent pathogens, including the potato late blight pathogen Phytophthora infestans on Arabidopsis thaliana . However, the molecular basis of host defense suppression in this complex plant–microbe interaction is unclear. Here, we investigate specific defense mechanisms in Arabidopsis that are suppressed by Albugo infection. ResultsGene expression profiling revealed that two species of Albugo upregulate genes associated with tryptophan-derived antimicrobial metabolites in Arabidopsis. Albugo laibachii- infected tissue has altered levels of these metabolites, with lower indol-3-yl methylglucosinolate and higher camalexin accumulation than uninfected tissue. We investigated the contribution of these Albugo -imposed phenotypes to suppression of non-host resistance to P. infestans . Absence of tryptophan-derived antimicrobial compounds enables P. infestans colonization of Arabidopsis, although to a lesser extent than Albugo -infected tissue. A. laibachii also suppresses a subset of genes regulated by salicylic acid; however, salicylic acid plays only a minor role in non-host resistance to P. infestans . Conclusions Albugo sp. alter tryptophan-derived metabolites and suppress elements of the responses to salicylic acid in Arabidopsis. Albugo sp. imposed alterations in tryptophan-derived metabolites may play a role in Arabidopsis non-host resistance to P. infestans . Understanding the basis of non-host resistance to pathogens such as P. infestans could assist in development of strategies to elevate food security.
机译:背景植物暴露于多种病原体和害虫,但是大多数植物对大多数植物病原体具有抗性。非寄主抗性描述了植物物种的所有成员成功阻止病原体物种的任何给定成员定居的能力。白化病菌种引起的白色水疱锈病可以克服非寄主的抗性,并使通常无毒的病原体(包括拟南芥的马铃薯晚疫病病原体疫霉)的继发感染和繁殖成为可能。然而,在这种复杂的植物-微生物相互作用中抑制宿主防御的分子基础尚不清楚。在这里,我们调查了拟南芥中被白蛋白感染抑制的特定防御机制。结果基因表达谱分析表明,两种拟南芥都上调了与色氨酸衍生的抗菌代谢产物相关的基因。与未感染的组织相比,被白化病感染的组织改变了这些代谢物的水平,吲哚-3-基甲基硫代葡萄糖苷的含量较低,而卡莱姆毒素的积累较高。我们调查了这些白化病表现型对抑制非宿主对P. infestans的抗性的贡献。色氨酸衍生的抗微生物化合物的缺乏使拟南芥无性繁殖能够在拟南芥中定殖,尽管程度不如被白蛋白感染的组织低。莱氏芽孢杆菌还抑制水杨酸调节的基因的一个子集。然而,水杨酸在非寄主对致病疫霉的抗性中仅起次要作用。结论Albugo sp。改变色氨酸衍生的代谢产物并抑制拟南芥对水杨酸反应的元素。 Albugo sp。色氨酸衍生代谢产物强加的改变可能在拟南芥对致病疫霉的非寄主抗性中起作用。了解对病原体如致病疫霉的非寄主抗性的基础,可能有助于制定提高粮食安全的战略。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号