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求购:尖孢镰刀菌的病程相关标记分子

Wanted: pathogenesis-related marker molecules for Fusarium oxysporum.

作者信息

Recorbet Ghislaine, Steinberg Christian, Olivain Chantal, Edel Véronique, Trouvelot Sophie, Dumas-Gaudot Eliane, Gianinazzi Silvio, Alabouvette Claude

机构信息

Unité Mixte de Recherche 1088, INRA/Université de Bourgogne: Biochimie, Biologie Cellulaire et Ecologie des Interactions Plantes/Micro-Organismes, INRA-CMSE, BP 86510, 21065 Dijon Cedex, France.

出版信息

New Phytol. 2003 Jul;159(1):73-92. doi: 10.1046/j.1469-8137.2003.00795.x.

Abstract

Although Fusarium oxysporum pathogens cause severe wilts in about 80 botanical species, the mechanisms of pathogenicity and symptom induction are poorly understood. Knowledge about the genetic and biochemical pathways involved in the pathogenesis of F. oxysporum would be invaluable in getting targets for both fungicide development and search for biocontrol agents. In this respect, we described the main approaches that have been developed to identify some mechanisms underlying the pathogenesis of F. oxysporum. During the last decades, the potential functions triggering of F. oysporum pathogenicity have mainly been investigated by comparing soilborne pathogenic strains with nonpathogenic ones with regards to the analysis of the pre- and infection stages and of the resulting plant-fungus interactions. The relatively recent progress in the molecular biology of this fungus has allowed complementary approaches to be developed in order to identify key factors involved in F. oxysporum pathogenicity. Screening mutants of F. oxysporum for loss of virulence led to the successful identification of some pathogenesis-related factors, such as hydrophobicity or attachment of germlings. Taken together, the strategies described above support the idea that changes in fungal metabolism is also of importance in triggering of F. oxysporum pathogenesis.

摘要

尽管尖孢镰刀菌病原体可导致约80种植物严重枯萎,但对其致病机制和症状诱导机制却知之甚少。了解尖孢镰刀菌致病过程中涉及的遗传和生化途径,对于开发杀菌剂和寻找生物防治剂的靶点都将具有极高的价值。在这方面,我们描述了已开发出的主要方法,以确定尖孢镰刀菌致病的一些潜在机制。在过去几十年中,主要通过比较土传致病菌株和非致病菌株在侵染前、侵染阶段以及由此产生的植物 - 真菌相互作用的分析,来研究引发尖孢镰刀菌致病性的潜在功能。这种真菌分子生物学领域相对较新的进展使得人们能够开发出互补方法,以确定参与尖孢镰刀菌致病性的关键因素。对尖孢镰刀菌突变体进行毒力丧失筛选,成功鉴定出了一些与致病相关的因素,如芽管的疏水性或附着性。综上所述,上述策略支持这样一种观点,即真菌代谢的变化在引发尖孢镰刀菌致病过程中也很重要。

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