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黄瓜种子在发芽过程中被细菌定植。

Colonization of cucumber seeds by bacteria during germination.

机构信息

Institute of Soil, Water and Environmental Sciences, Agricultural Research Organization, PO Box 6, Bet Dagan, Israel.

出版信息

Environ Microbiol. 2011 Oct;13(10):2794-807. doi: 10.1111/j.1462-2920.2011.02551.x. Epub 2011 Aug 30.

DOI:10.1111/j.1462-2920.2011.02551.x
PMID:21883798
Abstract

Detailed analysis revealed fundamental differences between bacterial association with cucumber (Cucumis sativus) seeds and seedlings roots. Seed colonization by bacteria seems to result from passive encounter between bacteria, conveyed by imbibed soil solution, and the germinating seed. In accordance, the seed-associated bacterial community composition directly reflected that of the germination medium and was characterized by low dominance. Transition from seed to root was marked by a shift in bacterial community composition and in an increase in dominance values. Furthermore, settlement of bacteria on roots was tightly controlled by the specific properties of each root segment. Size and richness of the seed-associated bacterial community were clearly determinate by the community in the germination medium. In contrast, for fully developed and active roots, the medium effect on these parameters was negligible. Perturbation of the seed environment by a pathogen (Pythium aphanidermatum) had major consequences on the seed bacterial community. However, those were mostly related to direct pathogen-bacteria rather than seed-bacteria interactions. In conclusion, simple, even passive processes may determine the initial stage of plant-microbe association during seed germination, prior to extension of the primary root. Therefore, seed germination is a unique phase in the plant life cycle, with respect to its interaction with the below-ground microbiome.

摘要

详细分析揭示了细菌与黄瓜(Cucumis sativus)种子和幼苗根系的关联之间存在根本差异。细菌对种子的定殖似乎是由被吸收的土壤溶液携带的细菌与正在发芽的种子之间的被动接触所导致的。因此,种子相关细菌群落的组成直接反映了发芽介质的组成,且以低优势度为特征。从种子到根的转变标志着细菌群落组成的转变和优势度值的增加。此外,细菌在根系上的定居受到每个根段特定性质的严格控制。种子相关细菌群落的大小和丰富度显然由发芽介质中的群落决定。相比之下,对于完全发育和活跃的根系,介质对这些参数的影响可以忽略不计。病原体(腐霉属)对种子环境的干扰对种子细菌群落有重大影响。然而,这些影响主要与直接的病原体-细菌相互作用有关,而不是种子-细菌相互作用。总之,简单的甚至是被动的过程可能会在主根延伸之前决定种子发芽过程中植物-微生物关联的初始阶段。因此,就其与地下微生物组的相互作用而言,种子发芽是植物生命周期中的一个独特阶段。

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