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Phytopathogenic Cercosporoid Fungi—From Taxonomy to Modern Biochemistry and Molecular Biology

机译:植物疗法的植酸孢子真菌 - 从分类到现代生物化学和分子生物学

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摘要

Phytopathogenic cercosporoid fungi have been investigated comprehensively due to their important role in causing plant diseases. A significant amount of research has been focused on the biology, morphology, systematics, and taxonomy of this group, with less of a focus on molecular or biochemical issues. Early and extensive research on these fungi focused on taxonomy and their classification based on in vivo features. Lately, investigations have mainly addressed a combination of characteristics such as morphological traits, host specificity, and molecular analyses initiated at the end of the 20th century. Some species that are important from an economic point of view have been more intensively investigated by means of genetic and biochemical methods to better understand the pathogenesis processes. Cercosporin, a photoactivated toxin playing an important role in Cercospora diseases, has been extensively studied. Understanding cercosporin toxicity in relation to reactive oxygen species (ROS) production facilitated the discovery and regulation of the cercosporin biosynthesis pathway, including the gene cluster encoding pathway enzymes. Furthermore, these fungi may be a source of other biotechnologically important compounds, e.g., industrially relevant enzymes. This paper reviews methods and important results of investigations of this group of fungi addressed at different levels over the years.
机译:由于其在引起植物疾病方面的重要作用,植物疗法孢子蛋白真菌已经全面调查。大量的研究一直侧重于本集团的生物学,形态,系统性和分类法,较少关注分子或生物化学问题。对这些真菌的早期和广泛研究,重点是基于体内特征的分类学及其分类。最近,研究主要解决了20世纪末发起的形态特征,宿主特异性和分子分析的特征的组合。通过遗传和生物化学方法更加集中研究了一些重要的物种,以更好地了解发病机制过程。植物孢菌素,在Cercospora疾病中发挥着重要作用的光孢子素,已经广泛研究。了解与反应性氧物质(ROS)产生相关的植酸孢素毒性促进了Cercosporin生物合成途径的发现和调节,包括编码途径酶的基因簇。此外,这些真菌可以是其他生物技术上重要的化合物的来源,例如,工业相关酶。本文在多年来,本篇论文评定了该组真菌的调查的方法和重要结果。

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