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滞育信息素产生和感知的自然变异支持线虫的种内竞争。

Natural variation in dauer pheromone production and sensing supports intraspecific competition in nematodes.

作者信息

Bose Neelanjan, Meyer Jan M, Yim Joshua J, Mayer Melanie G, Markov Gabriel V, Ogawa Akira, Schroeder Frank C, Sommer Ralf J

机构信息

Boyce Thompson Institute and Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY 14853, USA.

Department for Evolutionary Biology, Max Planck Institute for Developmental Biology, Spemannstrasse 35, 72076 Tübingen, Germany.

出版信息

Curr Biol. 2014 Jul 7;24(13):1536-41. doi: 10.1016/j.cub.2014.05.045.

Abstract

Dauer formation, a major nematode survival strategy, represents a model for small-molecule regulation of metazoan development [1-10]. Free-living nematodes excrete dauer-inducing pheromones that have been assumed to target conspecifics of the same genotype [9, 11]. However, recent studies in Pristionchus pacificus revealed that the dauer pheromone of some strains affects conspecifics of other genotypes more strongly than individuals of the same genotype [12]. To elucidate the mechanistic basis for this intriguing cross-preference, we compared six P. pacificus wild isolates to determine the chemical composition of their dauer-inducing metabolomes and responses to individual pheromone components. We found that these isolates produce dauer pheromone blends of different composition and respond differently to individual pheromone components. Strikingly, there is no correlation between production of and dauer response to a specific compound in individual strains. Specifically, pheromone components that are abundantly produced by one genotype induce dauer formation in other genotypes, but not necessarily in the abundant producer. Furthermore, some genotypes respond to pheromone components they do not produce themselves. These results support a model of intraspecific competition in nematode dauer formation. Indeed, we observed intraspecific competition among sympatric strains in a novel experimental assay, suggesting a new role of small molecules in nematode ecology.

摘要

滞育形成是线虫的一种主要生存策略,它代表了后生动物发育小分子调控的一个模型[1-10]。自由生活的线虫会分泌假定针对相同基因型同种个体的滞育诱导信息素[9, 11]。然而,近期对太平洋小杆线虫的研究表明,某些品系的滞育信息素对其他基因型的同种个体的影响比对相同基因型个体的影响更强[12]。为了阐明这种有趣的交叉偏好的机制基础,我们比较了六个太平洋小杆线虫野生分离株,以确定它们的滞育诱导代谢组的化学成分以及对单个信息素成分的反应。我们发现这些分离株产生的滞育信息素混合物组成不同,并且对单个信息素成分的反应也不同。令人惊讶的是,单个菌株中特定化合物的产生与滞育反应之间没有相关性。具体而言,一种基因型大量产生的信息素成分会诱导其他基因型形成滞育,但不一定会诱导大量产生该成分的基因型形成滞育。此外,一些基因型会对它们自身不产生的信息素成分产生反应。这些结果支持了线虫滞育形成中的种内竞争模型。事实上,我们在一项新的实验测定中观察到了同域菌株之间的种内竞争,这表明小分子在线虫生态学中具有新的作用。

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本文引用的文献

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Complex small-molecule architectures regulate phenotypic plasticity in a nematode.复杂的小分子结构调节线虫的表型可塑性。
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