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首页> 外文期刊>Phytopathology >The Involvement of Jasmonic Acid, Ethylene, and Salicylic Acid in the Signaling Pathway of Clonostachys rosea-Induced Resistance to Gray Mold Disease in Tomato
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The Involvement of Jasmonic Acid, Ethylene, and Salicylic Acid in the Signaling Pathway of Clonostachys rosea-Induced Resistance to Gray Mold Disease in Tomato

机译:茉莉酸,乙烯和水杨酸的参与在Clonostachys Rosea诱导的番茄灰霉病抗性的信号通路中

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摘要

Tomato gray mold disease caused by Botrytis cinerea is a serious disease that threatens tomato production around the world. Clonostachys rosea has been used successfully as a biocontrol agent against divergent plant pathogens, including B. cinerea. To understand the signal transduction pathway of C. rosea-induced resistance to tomato gray mold disease, the effects of C. rosea on gray mold tomato leaves along with changes in the activities of three defense enzymes (phenylalanine ammonialyase [PAL], polyphenol oxidase [PPO], and catalase [CAT]), second messengers (nitric oxide [NO], hydrogen peroxide [H2O2], and superoxide anion radical [O-2(-)]), and stress-related genes (mitogenactivated protein kinase [MAPK], WRKY, Lexyl2, and atpA) in four different hormone-deficient (jasmonic acid [JA], ethylene [ET], salicylic acid [SA], and gibberellin) tomato mutants were investigated. The results revealed that C. rosea significantly inhibited the growth of mycelia and spore germination of B. cinerea. Furthermore, it reduced the incidence of gray mold disease, induced higher levels of PAL and PPO, and induced lower levels of CAT activities in tomato leaves. Moreover, it also increased NO, H2O2, and O-2(-) levels and the gene expression levels of WRKY, MAPK, atpA, and Lexyl2. The incidence of gray mold disease in four hormone-deficient mutants was higher than that in the corresponding wild-type tomato plants. Among all of these hormone-deficient tomato mutants, JA had the most significant effect in regulating the different signal molecules. Additional study suggested that JA upregulated the expression of Lexyl2, MAPK, and WRKY but downregulated atpA. Furthermore, JA also enhanced the activity of PAL, PPO, and CAT and the production of NO and H2O2. SA downregulated CAT and PAL, whereas ET upregulated PAL but downregulated CAT. This study is of significance in understanding the regulatory pathways and biocontrol mechanism of C. rosea against B. cinerea.
机译:由Botrytis Cinerea引起的番茄灰霉病是一种严重的疾病,可能威胁到世界各地的番茄生产。 Clonostachys Rosea已被成功用作反对不同植物病原体的生物控制剂,包括B. Cinerea。要了解C.马罗西抗番茄灰霉病抗性的信号转导途径,C. Rosea对灰霉素番茄的影响以及三种防御酶活性的变化(苯丙氨酸氨基氨基[PAL],多酚氧化酶[ PPO]和过氧化氢酶[CAT]),第二信使(一氧化氮[NO],过氧化氢[H 2 O 2]和超氧化物阴离子自由基[O-2())和相关基因(促滤蛋白激酶[MAPK研究了四种不同激素缺陷(JasmOxic acid [Ja],乙烯ρ,水杨酸[SA]和赤霉素)番茄突变体的衣物。结果表明,C.罗西显着抑制菌丝体和孢子萌发的生长。此外,它降低了灰霉病的发生率,诱导较高水平的PAL和PPO,并诱导番茄叶中患者患者较低水平的猫活动。此外,它也增加了不增加的H 2 O 2和O-2( - )水平和WRKY,MAPK,ATPA和lexyl2的基因表达水平。四种激素缺陷型突变体中灰霉病疾病的发病率高于相应的野生型番茄植物中的发生率。在所有这些激素缺乏型番茄突变体中,JA对调节不同信号分子具有最显着的影响。额外的研究表明,JA上调了lexyl2,Mapk和Wrky但下调的ATPA表达。此外,JA还增强了PAL,PPO和猫的活性以及NO和H2O2的产生。 SA下调的猫和朋友,而另一个上调的朋友,但下调的猫。该研究对了解C. Rosea对抗B. Cinerea的调节途径和生物控制机制具有重要意义。

著录项

  • 来源
    《Phytopathology》 |2019年第7期|共13页
  • 作者单位

    Northeast Agr Univ Coll Life Sci Harbin 150030 Heilongjiang Peoples R China;

    Northeast Agr Univ Coll Hort &

    Landscape Architecture Harbin 150030 Heilongjiang Peoples R China;

    Northeast Agr Univ Coll Life Sci Harbin 150030 Heilongjiang Peoples R China;

    Henan Agr Univ Coll Hort Zhengzhou 450000 Henan Peoples R China;

    Northeast Agr Univ Coll Hort &

    Landscape Architecture Harbin 150030 Heilongjiang Peoples R China;

    Northeast Agr Univ Coll Hort &

    Landscape Architecture Harbin 150030 Heilongjiang Peoples R China;

    Northeast Agr Univ Coll Life Sci Harbin 150030 Heilongjiang Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物病理学;
  • 关键词

    biological control; disease control and pest management; mycology;

    机译:生物控制;疾病控制和害虫管理;MUSCOLY;

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