Siewers Verena, Viaud Muriel, Jimenez-Teja Daniel, Collado Isidro G, Gronover Christian Schulze, Pradier Jean-Marc, Tudzynski Bettina, Tudzynski Paul
Institut für Botanik, Westf. Wilhelms-Universität Münster, Schlossgarten 3, D-48149 Münster, Germany.
Mol Plant Microbe Interact. 2005 Jun;18(6):602-12. doi: 10.1094/MPMI-18-0602.
The micrographic phytopathogen Botrytis cinerea causes gray mold diseases in a large number of dicotyledonous crop plants and ornamentals. Colonization of host tissue is accompanied by rapid killing of plant cells ahead of the growing hyphen, probably caused by secretion of nonspecific phytotoxins, e.g., the sesquiterpene botrydial. Although all pathogenic strains tested so far had been shown to secrete botrydial and although the toxin causes comparable necrotic lesions as infection by the fungus, the role of botrydial in the infection process has not been elucidated so far. Here, we describe the functional characterization of bcbot1, encoding a P450 monooxygenase and provide evidence that it is involved in the botrydial pathway, i.e., it represents the first botrydial biosynthetic gene identified. We show that bcbot1 is expressed in planta and that expression in vitro and in planta is controlled by an alpha-subunit of a heterotrimeric GTP-binding protein, BCG1. Deletion of bcbot1 in three standard strains of B. cinerea shows that the effect on virulence (on several host plants) is strain-dependent; only deletion in one of the strains (T4) led to reduced virulence.
显微植物病原体灰葡萄孢在大量双子叶作物和观赏植物中引发灰霉病。在生长的菌丝体前方,寄主组织的定殖伴随着植物细胞的快速死亡,这可能是由非特异性植物毒素的分泌引起的,例如倍半萜烯葡萄孢菌素。尽管到目前为止测试的所有致病菌株都已被证明能分泌葡萄孢菌素,并且尽管该毒素会导致与真菌感染相当的坏死病变,但葡萄孢菌素在感染过程中的作用迄今尚未阐明。在此,我们描述了编码一种细胞色素P450单加氧酶的bcbot1的功能特性,并提供证据表明它参与葡萄孢菌素的合成途径,即它是第一个被鉴定出的葡萄孢菌素生物合成基因。我们表明bcbot1在植物体内表达,并且其在体外和植物体内的表达受异源三聚体GTP结合蛋白BCG1的α亚基控制。在灰葡萄孢的三个标准菌株中缺失bcbot1表明,对毒力(在几种寄主植物上)的影响因菌株而异;只有在其中一个菌株(T4)中缺失才导致毒力降低。