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An Overview of the Molecular Genetics of Plant Resistance to the Verticillium Wilt Pathogen Verticillium dahliae

机译:植物对黄萎病病原体黄萎病抗性的分子遗传学概述

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摘要

is a soil-borne hemibiotrophic fungus that can lead to plant vascular disease and significant economic loss worldwide. Its hosts include over 400 dicotyledon plant species, such as annual herbs, perennials, and woody plants. The average yield loss of cotton crop caused by wilt is approximately 10–35%. As the control of this disease is an urgent task for many countries, further understanding of the interaction between plants and is essential. Fungi can promote or inhibit plant growth, which is important; however, the most important relationship between plants and fungi is the host–pathogen relationship. Plants can become resistant to through diverse mechanisms such as cell wall modifications, extracellular enzymes, pattern recognition receptors, transcription factors, and salicylic acid (SA)/jasmonic acid (JA)/ethylene (ET)-related signal transduction pathways. Over the last decade, several studies on the physiological and molecular mechanisms of plant resistance to have been undertaken. In this review, many resistance-related genes are summarised to provide a theoretical basis for better understanding of the molecular genetic mechanisms of plant resistance to . Moreover, it is intended to serve as a resource for research focused on the development of genetic resistance mechanisms to combat wilt.
机译:是一种土壤传播的半生营养真菌,可导致植物血管疾病和全球范围内的重大经济损失。它的寄主包括400多种双子叶植物,例如一年生草本植物,多年生植物和木本植物。由枯萎引起的棉花作物平均产量损失约为10–35%。由于控制该病是许多国家的当务之急,因此进一步了解植物之间的相互作用至关重要。真菌可以促进或抑制植物生长,这一点很重要。然而,植物与真菌之间最重要的关系是宿主与病原体的关系。植物可以通过多种机制来抵抗,例如细胞壁修饰,细胞外酶,模式识别受体,转录因子以及水杨酸(SA)/茉莉酸(JA)/乙烯(ET)相关的信号转导途径。在过去的十年中,已经对植物抗性的生理和分子机制进行了一些研究。在这篇综述中,总结了许多与抗性有关的基因,为更好地理解植物抗性的分子遗传机制提供了理论基础。此外,它旨在作为研究资源,致力于开发抗枯萎病的遗传抗性机制。

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