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对植物病原体具有特定土壤抑制作用的微生物种群。

Microbial populations responsible for specific soil suppressiveness to plant pathogens.

作者信息

Weller David M, Raaijmakers Jos M, Gardener Brian B McSpadden, Thomashow Linda S

机构信息

USDA, Agricultural Research Service, Root Disease and Biological Control Research Unit, Washington State University, Pullman 99164-6430, USA.

出版信息

Annu Rev Phytopathol. 2002;40:309-48. doi: 10.1146/annurev.phyto.40.030402.110010. Epub 2002 May 13.

Abstract

Agricultural soils suppressive to soilborne plant pathogens occur worldwide, and for several of these soils the biological basis of suppressiveness has been described. Two classical types of suppressiveness are known. General suppression owes its activity to the total microbial biomass in soil and is not transferable between soils. Specific suppression owes its activity to the effects of individual or select groups of microorganisms and is transferable. The microbial basis of specific suppression to four diseases, Fusarium wilts, potato scab, apple replant disease, and take-all, is discussed. One of the best-described examples occurs in take-all decline soils. In Washington State, take-all decline results from the buildup of fluorescent Pseudomonas spp. that produce the antifungal metabolite 2,4-diacetylphloroglucinol. Producers of this metabolite may have a broader role in disease-suppressive soils worldwide. By coupling molecular technologies with traditional approaches used in plant pathology and microbiology, it is possible to dissect the microbial composition and complex interactions in suppressive soils.

摘要

对土传植物病原体具有抑制作用的农业土壤在全球范围内都有存在,并且对于其中一些土壤,抑制作用的生物学基础已被描述。已知有两种经典的抑制类型。一般抑制作用的活性归因于土壤中的总微生物生物量,并且不能在不同土壤之间转移。特异性抑制作用的活性归因于单个或特定微生物群体的作用,并且是可转移的。本文讨论了对四种病害(镰刀菌枯萎病、马铃薯疮痂病、苹果再植病和全蚀病)的特异性抑制作用的微生物基础。其中一个描述得最为详尽的例子发生在全蚀病衰退土壤中。在华盛顿州,全蚀病衰退是由产生抗真菌代谢物2,4 - 二乙酰基间苯三酚的荧光假单胞菌属细菌的积累所致。这种代谢物的产生者可能在全球范围内对病害具有抑制作用的土壤中发挥更广泛的作用。通过将分子技术与植物病理学和微生物学中使用的传统方法相结合,就有可能剖析抑制性土壤中的微生物组成和复杂相互作用。

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