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由昆虫病原线虫的细菌共生体介导的生存与繁殖权衡。

A survival-reproduction trade-off in entomopathogenic nematodes mediated by their bacterial symbionts.

作者信息

Emelianoff Vanya, Chapuis Elodie, Le Brun Nathalie, Chiral Magali, Moulia Catherine, Ferdy Jean-Baptiste

机构信息

Institut des Sciences de l'Evolution de Montpellier, c.c. 63 CNRS-UM2 UMR 5554, Université de Montpellier 2, Place Eugène Bataillon, 34095 Cedex 05 Montpellier, France.

出版信息

Evolution. 2008 Apr;62(4):932-42. doi: 10.1111/j.1558-5646.2008.00319.x. Epub 2008 Jan 10.

Abstract

In this work, we investigate the investment of entomopathogenic Steinernema nematodes (Rhabditidae) in their symbiotic association with Xenorhabdus bacteria (Enterobacteriaceae). Their life cycle comprises two phases: (1) a free stage in the soil, where infective juveniles (IJs) of the nematode carry bacteria in a digestive vesicle and search for insect hosts, and (2) a parasitic stage into the insect where bacterial multiplication, nematode reproduction, and production of new IJs occur. Previous studies clearly showed benefits to the association for the nematode during the parasitic stage, but preliminary data suggest the existence of costs to the association for the nematode in free stage. IJs deprived from their bacteria indeed survive longer than symbiotic ones. Here we show that those bacteria-linked costs and benefits lead to a trade-off between fitness traits of the symbiotic nematodes. Indeed IJs mortality positively correlates with their parasitic success in the insect host for symbiotic IJs and not for aposymbiotic ones. Moreover mortality and parasitic success both positively correlate with the number of bacteria carried per IJ, indicating that the trade-off is induced by symbiosis. Finally, the trade-off intensity depends on parental effects and, more generally, is greater under restrictive environmental conditions.

摘要

在这项研究中,我们探究了昆虫病原斯氏线虫(小杆线虫科)与致病杆菌属细菌(肠杆菌科)共生关系中的投入。它们的生命周期包括两个阶段:(1)在土壤中的自由阶段,线虫的感染性幼虫(IJs)在消化泡中携带细菌并寻找昆虫宿主;(2)在昆虫体内的寄生阶段,细菌繁殖、线虫繁殖并产生新的感染性幼虫。先前的研究清楚地表明了寄生阶段这种共生关系对 nematode 的益处,但初步数据表明自由阶段这种共生关系对 nematode 存在代价。确实,没有细菌的感染性幼虫比共生的存活时间更长。在此我们表明,那些与细菌相关的代价和益处导致了共生线虫适合度性状之间的权衡。实际上,对于共生感染性幼虫而非脱共生感染性幼虫而言,感染性幼虫死亡率与它们在昆虫宿主中的寄生成功率呈正相关。此外,死亡率和寄生成功率均与每个感染性幼虫携带的细菌数量呈正相关,这表明这种权衡是由共生引起的。最后,权衡强度取决于亲代效应,更普遍地说,在限制性环境条件下更大。

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