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叶片生态系统中的细菌,重点关注丁香假单胞菌——一种病原体、冰核和附生植物。

Bacteria in the leaf ecosystem with emphasis on Pseudomonas syringae-a pathogen, ice nucleus, and epiphyte.

作者信息

Hirano S S, Upper C D

机构信息

Department of Plant Pathology, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

出版信息

Microbiol Mol Biol Rev. 2000 Sep;64(3):624-53. doi: 10.1128/MMBR.64.3.624-653.2000.

Abstract

The extremely large number of leaves produced by terrestrial and aquatic plants provide habitats for colonization by a diversity of microorganisms. This review focuses on the bacterial component of leaf microbial communities, with emphasis on Pseudomonas syringae-a species that participates in leaf ecosystems as a pathogen, ice nucleus, and epiphyte. Among the diversity of bacteria that colonize leaves, none has received wider attention than P. syringae, as it gained notoriety for being the first recombinant organism (Ice(-) P. syringae) to be deliberately introduced into the environment. We focus on P. syringae to illustrate the attractiveness and somewhat unique opportunities provided by leaf ecosystems for addressing fundamental questions of microbial population dynamics and mechanisms of plant-bacterium interactions. Leaf ecosystems are dynamic and ephemeral. The physical environment surrounding phyllosphere microbes changes continuously with daily cycles in temperature, radiation, relative humidity, wind velocity, and leaf wetness. Slightly longer-term changes occur as weather systems pass. Seasonal climatic changes impose still a longer cycle. The physical and physiological characteristics of leaves change as they expand, mature, and senesce and as host phenology changes. Many of these factors influence the development of populations of P. syringae upon populations of leaves. P. syringae was first studied for its ability to cause disease on plants. However, disease causation is but one aspect of its life strategy. The bacterium can be found in association with healthy leaves, growing and surviving for many generations on the surfaces of leaves as an epiphyte. A number of genes and traits have been identified that contribute to the fitness of P. syringae in the phyllosphere. While still in their infancy, such research efforts demonstrate that the P. syringae-leaf ecosystem is a particularly attractive system with which to bridge the gap between what is known about the molecular biology of genes linked to pathogenicity and the ecology and epidemiology of associated diseases as they occur in natural settings, the field.

摘要

陆生植物和水生植物产生的大量叶片为多种微生物的定殖提供了栖息地。本综述聚焦于叶片微生物群落中的细菌成分,重点关注丁香假单胞菌——一种作为病原体、冰核和附生植物参与叶片生态系统的物种。在定殖于叶片的多种细菌中,没有哪种细菌比丁香假单胞菌受到更广泛的关注,因为它作为首个被有意引入环境的重组生物(冰核缺陷型丁香假单胞菌)而声名狼藉。我们聚焦于丁香假单胞菌,以说明叶片生态系统在解决微生物种群动态及植物 - 细菌相互作用机制等基本问题方面所具有的吸引力和一些独特机遇。叶片生态系统是动态且短暂的。叶际微生物周围的物理环境随温度、辐射、相对湿度、风速和叶片湿度的每日循环而不断变化。随着天气系统的过境会发生稍长期的变化。季节性气候变化则带来更长的周期。叶片的物理和生理特征会随着它们的扩展、成熟、衰老以及宿主物候的变化而改变。这些因素中的许多都会影响丁香假单胞菌在叶片上的种群发展。丁香假单胞菌最初因其对植物致病的能力而受到研究。然而,致病只是其生存策略的一个方面。这种细菌可以在健康叶片上被发现,作为附生植物在叶片表面生长并繁衍多代。已经鉴定出许多有助于丁香假单胞菌在叶际适应的基因和性状。尽管此类研究仍处于起步阶段,但这些努力表明,丁香假单胞菌 - 叶片生态系统是一个特别有吸引力的系统,可用于弥合与致病性相关基因的分子生物学知识与这些基因在自然环境(田间)中相关疾病的生态学和流行病学之间的差距。

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