首页> 外文期刊>Molecular Plant-Microbe Interactions >Streptomyces-Induced Resistance Against Oak Powdery Mildew Involves Host Plant Responses in Defense, Photosynthesis, and Secondary Metabolism Pathways
【24h】

Streptomyces-Induced Resistance Against Oak Powdery Mildew Involves Host Plant Responses in Defense, Photosynthesis, and Secondary Metabolism Pathways

机译:链霉菌诱导的对橡树白粉病的抗性涉及宿主植物在防御,光合作用和次生代谢途径中的反应。

获取原文
获取外文期刊封面目录资料

摘要

Rhizobacteria are known to induce defense responses in plants without causing disease symptoms, resulting in increased resistance to plant pathogens. This study investigated how Streptomyces sp. strain AcH 505 suppressed oak powdery mildew infection in pedunculate oak, by analyzing RNA-Seq data from singly- and co-inoculated oaks. We found that this Streptomyces strain elicited a systemic defense response in oak that was, in part, enhanced upon pathogen challenge. In addition to induction of the jasmonic acid/ethylene–dependent pathway, the RNA-Seq data suggests the participation of the salicylic acid–dependent pathway. Transcripts related to tryptophan, phenylalanine, and phenylpropanoid biosynthesis were enriched and phenylalanine ammonia lyase activity increased, indicating that priming by Streptomyces spp. in pedunculate oak shares some determinants with the Pseudomonas-Arabidopsis system. Photosynthesis-related transcripts were depleted in response to powdery mildew infection, but AcH 505 alleviated this inhibition, which suggested there is a fitness benefit for primed plants upon pathogen challenge. This study offers novel insights into the mechanisms of priming by actinobacteria and highlights their capacity to activate plant defense responses in the absence of pathogen challenge.
机译:已知根瘤菌在植物中诱导防御反应而不会引起疾病症状,导致对植物病原体的抗性增加。这项研究调查了链霉菌属。通过分析来自单独接种和共同接种的橡木的RNA-Seq数据,AcH 505菌株抑制了带花梗橡木的橡木白粉病感染。我们发现,该链霉菌菌株在橡树中引起全身防御反应,在病原体攻击后部分增强。除诱导茉莉酸/乙烯依赖性途径外,RNA-Seq数据还提示了水杨酸依赖性途径的参与。与色氨酸,苯丙氨酸和苯丙氨酸生物合成有关的转录本富集,苯丙氨酸氨裂合酶活性增加,表明由链霉菌属物种引发。有花梗的橡木与假单胞菌-拟南芥系统共享一些决定因素。光合作用相关的转录本被白粉病感染所消耗,但是AcH 505减轻了这种抑制作用,这表明在病原体攻击后对发芽的植物具有适应性。这项研究提供了对放线菌引发机制的新颖见解,并突出了它们在没有病原体攻击的情况下激活植物防御反应的能力。

著录项

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