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植原体:植物致病性柔膜菌纲细菌。

Phytoplasma: phytopathogenic mollicutes.

作者信息

Lee I M, Davis R E, Gundersen-Rindal D E

机构信息

United States Department of Agriculture, Molecular Plant Pathology Laboratory, and Insect Biocontrol Laboratory, Agricultural Research Service, Beltsville, Maryland 20705, USA.

出版信息

Annu Rev Microbiol. 2000;54:221-55. doi: 10.1146/annurev.micro.54.1.221.

Abstract

During the past decade, research has yielded new knowledge about the plant and insect host ranges, geographical distribution, and phylogenetic relationships of phytoplasmas, and a taxonomic system has emerged in which distinct phytoplasmas are named as separate "Candidatus phytoplasma species." In large part, this progress has resulted from the development and use of molecular methods to detect, identify, and classify phytoplasmas. While these advances continue, research has recently begun on the phytoplasma genome, how phytoplasmas cause disease, the role of mixed phytoplasmal infections in plant diseases, and molecular/genetic phenomena that underlie symptom development in plants. These and other recent advances are laying the foundation for future progress in understanding the mechanisms of phytoplasma pathogenicity, organization of the phytoplasma genome, evolution of new phytoplasma strains and emergence of new diseases, bases of insect transmissibility and specificity of transmission, and plant gene expression in response to phytoplasmal infection, as well as the design of novel approaches to achieve effective control of phytoplasmal diseases.

摘要

在过去十年中,研究产生了关于植原体的植物和昆虫宿主范围、地理分布以及系统发育关系的新知识,并且出现了一种分类系统,其中不同的植原体被命名为单独的“暂定植原体种”。在很大程度上,这一进展得益于用于检测、鉴定和分类植原体的分子方法的开发和应用。在这些进展持续的同时,最近已经开始了关于植原体基因组、植原体如何致病、混合植原体感染在植物病害中的作用以及植物症状发展背后的分子/遗传现象的研究。这些以及其他最近的进展正在为未来在理解植原体致病性机制、植原体基因组组织、新植原体菌株的进化和新病害的出现、昆虫传播性和传播特异性的基础以及植物对植原体感染的基因表达方面取得进展奠定基础,同时也为设计有效控制植原体病害的新方法奠定基础。

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