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综述:什么是精子球以及如何对其进行研究?

A review: what is the spermosphere and how can it be studied?

作者信息

Schiltz S, Gaillard I, Pawlicki-Jullian N, Thiombiano B, Mesnard F, Gontier E

机构信息

Biologie des Plantes et Innovation (BIOPI), Université de Picardie Jules Verne, Amiens, France.

出版信息

J Appl Microbiol. 2015 Dec;119(6):1467-81. doi: 10.1111/jam.12946. Epub 2015 Oct 2.

Abstract

The spermosphere is the zone surrounding seeds where interactions between the soil, microbial communities and germinating seeds take place. The concept of the spermosphere is usually only applied during germination sensu stricto. Despite the transient nature of this very small zone of soil around the germinating seed, the microbial activities which occur there may have long-lasting impacts on plants. The spermosphere is indirectly characterized by either (i) seed exudates, which could be inhibitors or stimulators of micro-organism growth or (ii) the composition of the microbiome on and around the germinating seeds. The microbial communities present in the spermosphere directly reflect that of the germination medium or are host-dependent and influenced quantitatively and qualitatively by host exudates. Despite its strong impact on the future development of plants, the spermosphere remains little studied. This can be explained by the technical difficulties related to characterizing this concept due to its short duration, small size and biomass, and the number and complexity of the interactions that take place. However, recent technical methods, such as metabolite profiling, combining phenotypic methods with DNA- and RNA-based methods, could be used to investigate seed exudates, microbial communities and their interactions with the soil environment.

摘要

种子周围区域是种子周围的一个区域,土壤、微生物群落和正在萌发的种子之间的相互作用在此发生。种子周围区域的概念通常仅在严格意义上的萌发过程中应用。尽管围绕正在萌发种子的这个非常小的土壤区域具有短暂性,但在那里发生的微生物活动可能会对植物产生持久影响。种子周围区域可通过以下两种方式间接表征:(i)种子渗出物,其可能是微生物生长的抑制剂或刺激剂;(ii)正在萌发种子上及其周围微生物群落的组成。种子周围区域中存在的微生物群落直接反映萌发介质的群落,或者依赖于宿主,并在数量和质量上受到宿主渗出物的影响。尽管种子周围区域对植物的未来发育有很大影响,但对其研究仍然很少。这可以通过与表征这一概念相关的技术困难来解释,因为它持续时间短、体积小、生物量少,以及发生的相互作用的数量和复杂性。然而,最近的技术方法,如代谢物谱分析,将表型方法与基于DNA和RNA的方法相结合,可用于研究种子渗出物、微生物群落及其与土壤环境的相互作用。

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