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……的自然生物环境 (原文不完整)

The Natural Biotic Environment of .

作者信息

Schulenburg Hinrich, Félix Marie-Anne

机构信息

Zoological Institute, Christian-Albrechts Universitaet zu Kiel, 24098 Kiel, Germany

Institut de Biologie de l'Ecole Normale Supérieure, Centre National de la Recherche Scientifique, Institut National de la Santé et de la Recherche Médicale, École Normale Supérieure, L'université de Recherche Paris Sciences et Lettres, 75005, France

出版信息

Genetics. 2017 May;206(1):55-86. doi: 10.1534/genetics.116.195511.

Abstract

Organisms evolve in response to their natural environment. Consideration of natural ecological parameters are thus of key importance for our understanding of an organism's biology. Curiously, the natural ecology of the model species has long been neglected, even though this nematode has become one of the most intensively studied models in biological research. This lack of interest changed ∼10 yr ago. Since then, an increasing number of studies have focused on the nematode's natural ecology. Yet many unknowns still remain. Here, we provide an overview of the currently available information on the natural environment of We focus on the biotic environment, which is usually less predictable and thus can create high selective constraints that are likely to have had a strong impact on evolution. This nematode is particularly abundant in microbe-rich environments, especially rotting plant matter such as decomposing fruits and stems. In this environment, it is part of a complex interaction network, which is particularly shaped by a species-rich microbial community. These microbes can be food, part of a beneficial gut microbiome, parasites and pathogens, and possibly competitors. is additionally confronted with predators; it interacts with vector organisms that facilitate dispersal to new habitats, and also with competitors for similar food environments, including competitors from congeneric and also the same species. Full appreciation of this nematode's biology warrants further exploration of its natural environment and subsequent integration of this information into the well-established laboratory-based research approaches.

摘要

生物体为响应其自然环境而进化。因此,考虑自然生态参数对于我们理解生物体的生物学特性至关重要。奇怪的是,尽管这种线虫已成为生物学研究中研究最为深入的模型之一,但该模式物种的自然生态长期以来一直被忽视。大约10年前,这种情况发生了改变。从那时起,越来越多的研究聚焦于线虫的自然生态。然而,仍有许多未知之处。在这里,我们概述了目前关于[线虫名称]自然环境的可用信息。我们关注生物环境,其通常更难以预测,因此会产生可能对[线虫名称]进化产生强烈影响的高度选择性限制。这种线虫在富含微生物的环境中尤其丰富,特别是在腐烂的植物物质中,如分解的果实和茎。在这种环境中,它是一个复杂相互作用网络的一部分,该网络尤其由物种丰富的微生物群落塑造。这些微生物可以是食物、有益肠道微生物群的一部分、寄生虫和病原体,也可能是竞争者。[线虫名称]还面临着捕食者;它与促进向新栖息地扩散的媒介生物相互作用,也与类似食物环境的竞争者相互作用,包括同属和同种的竞争者。要全面了解这种线虫的生物学特性,需要进一步探索其自然环境,并随后将这些信息整合到成熟的基于实验室的研究方法中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60ab/5419493/ebccb1c2f5a3/55fig1.jpg

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