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Potassium-induced plant resistance against soybean cyst nematode via root exudation of phenolic acids and plant pathogen-related genes

机译:钾通过酚酸和植物病原体相关基因的根系渗出诱导植物抗大豆孢囊线虫

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摘要

Soybean cyst nematode (SCN) is a severe soil borne disease. The control of this disease is still a worldwide problem in agriculture. In this study, we found that application of potassium (K) fertilizer could decrease the occurrence of SCN at two field sites. Furthermore, the application of K could suppress Heterodera glycines with the activation of Phenylalanine Ammonia Lyase (PAL) and Polyphenol Oxidase (PPO) expression via pot experiments in a greenhouse. The release of cinnamic, ferulic and salicylic acids was significantly enhanced by K application of 3 mM, and each of three acids can dramatically constrain Heterodera glycines in vitro. This research indicated that K induce multiple mechanisms to improve the resistance of soybean against SCN and provide a new strategy to control SCN in fields with nutrient application.
机译:大豆孢囊线虫(SCN)是一种严重的土壤传播疾病。这种疾病的控制仍然是农业领域的世界性问题。在这项研究中,我们发现钾肥的施用可以减少两个田间SCN的发生。此外,通过在温室中的盆栽试验,钾的施用可通过激活苯丙氨酸氨裂合酶(PAL)和多酚氧化酶(PPO)的表达来抑制异型藻的甘氨酸。施用3 mM显着增强了肉桂酸,阿魏酸和水杨酸的释放,并且三种酸中的每一种均可在体外显着抑制异型藻的甘氨酸。这项研究表明,钾诱导多种机制来提高大豆对SCN的抗性,并为施用养分的田间控制SCN提供了新的策略。

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