首页> 美国卫生研究院文献>other >Analysis of Phaseolus vulgaris Response to Its Association with Trichoderma harzianum (ALL-42) in the Presence or Absence of the Phytopathogenic Fungi Rhizoctonia solani and Fusarium solani
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Analysis of Phaseolus vulgaris Response to Its Association with Trichoderma harzianum (ALL-42) in the Presence or Absence of the Phytopathogenic Fungi Rhizoctonia solani and Fusarium solani

机译:有无植物致病性真菌茄枯萎病和茄枯萎病的菜豆对与哈茨木霉(ALL-42)结合的响应分析

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摘要

The present study was carried out to evaluate the ability of Trichoderma harzianum (ALL 42-isolated from Brazilian Cerrado soil) to promote common bean growth and to modulate its metabolism and defense response in the presence or absence of the phytopathogenic fungi Rhizoctonia solani and Fusarium solani using a proteomic approach. T. harzianum was able to promote common bean plants growth as shown by the increase in root/foliar areas and by size in comparison to plants grown in its absence. The interaction was shown to modulate the expression of defense-related genes (Glu1, pod3 and lox1) in roots of P. vulgaris. Proteomic maps constructed using roots and leaves of plants challenged or unchallenged by T. harzianum and phytopathogenic fungi showed differences. Reference gels presented differences in spot distribution (absence/presence) and relative volumes of common spots (up or down-regulation). Differential spots were identified by peptide fingerprinting MALDI-TOF mass spectrometry. A total of 48 identified spots (19 for leaves and 29 for roots) were grouped into protein functional classes. For leaves, 33%, 22% and 11% of the identified proteins were categorized as pertaining to the groups: metabolism, defense response and oxidative stress response, respectively. For roots, 17.2%, 24.1% and 10.3% of the identified proteins were categorized as pertaining to the groups: metabolism, defense response and oxidative stress response, respectively.
机译:本研究旨在评估在存在或不存在植物病原性真菌Rhizoctonia solani和Fusarium solani的条件下,哈茨木霉(从巴西Cerrado土壤中分离的ALL 42)促进普通豆生长并调节其代谢和防御反应的能力。使用蛋白质组学方法。哈萨克烟草能够促进普通豆类植物的生长,其根/叶面积的增加以及与不存在豆类的植物相比的大小显示。该相互作用被证明可调节寻常型毕赤酵母根中防御相关基因(Glu1,pod3和lox1)的表达。使用受哈茨木霉和植物致病真菌攻击或未挑战的植物的根和叶构建的蛋白质组图谱显示出差异。参比凝胶在斑点分布(不存在/存在)和常见斑点的相对体积(上调或下调)方面存在差异。通过肽指纹MALDI-TOF质谱法鉴定差异点。总共48个已识别斑点(叶19个,根29个)被归类为蛋白质功能类别。对于叶子,分别将33%,22%和11%的鉴定蛋白质归为以下几类:新陈代谢,防御反应和氧化应激反应。对于根,鉴定出的蛋白质中分别有17.2%,24.1%和10.3%被归类为:新陈代谢,防御反应和氧化应激反应。

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