通过比较转录组和蛋白质组鉴定寄生蜂的毒力差异

Samuel GornardEGCE, Pascaline Venon, Florian Lasfont, Thierry Balliau, Laure Marie-Paule Kaiser-Arnauld, Florence Mougel
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引用次数: 0

摘要

背景:内寄生虫 Cotesia typhae 的两种菌株对宿主 Sesamia nonagrioides 的寄生成功率存在差异。其中一株对允许寄生的宿主种群和具有抗性的宿主种群都具有病毒性,而另一株仅对允许寄生的宿主具有病毒性。这种相互作用为研究毒力因子提供了一个非常有趣的框架。在这里,我们结合使用了转录组学和蛋白质组学的比较分析方法,以揭示菌株间毒力差异的分子基础:结果:首先,我们发现病毒性基因主要在若虫期表达。尤其是病毒基因在这一阶段广泛上调,而它们的表达只有在宿主体内才会出现。寄生虫基因在宿主体内的表达量随着时间的推移而增加,这表明寄生虫产生了更多的毒力因子。其次,不同毒株之间的比较显示了毒液组成的差异,有 12 种蛋白质的丰度不同。宿主体内的毒腺表达具有很强的时间差异性,不同毒株之间的表达模式也不尽相同。值得注意的是,包括蛋白酪氨酸磷酸酶在内的一组前病毒基因在寄生 24 小时后被毒力较弱的毒株寄生的抗性宿主体内特别过度表达。这一结果特别提示了宿主对前体表达的调节作用:本研究揭示了伤寒木虱病毒因子在宿主和寄生虫体内的时间表达。它还发现了导致两个品系之间寄生成功率差异的潜在分子候选因子。总之,这些发现为进一步探索寄生蜂的毒力机制提供了一条途径,并为寄主与寄生蜂的共同进化提供了启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterizing virulence differences in a parasitoid wasp through comparative transcriptomic and proteomic
Background: Two strains of the endoparasitoid Cotesia typhae present a differential parasitism success on the host, Sesamia nonagrioides. One is virulent on both permissive and resistant host populations, and the other only on the permissive host. This interaction provides a very interesting frame for studying virulence factors. Here, we used a combination of comparative transcriptomic and proteomic analyses to unravel the molecular basis underlying virulence differences between the strains.Results: First, we report that virulence genes are mostly expressed during the nymphal stage of the parasitoid. Especially, proviral genes are broadly up-regulated at this stage, while their expression is only expected in the host. Parasitoid gene expression in the host increases with time, indicating the production of more virulence factors. Secondly, comparison between strains reveals differences in venom composition, with 12 proteins showing differential abundance. Proviral expression in the host displays a strong temporal variability, along with differential patterns between strains. Notably, a subset of proviral genes including protein-tyrosine phosphatases is specifically over-expressed in the resistant host parasitized by the less virulent strain, 24 hours after parasitism. This result particularly hints at host modulation of proviral expression.Conclusions: This study sheds light on the temporal expression of virulence factors of Cotesia typhae, both in the host and in the parasitoid. It also identifies potential molecular candidates driving differences in parasitism success between two strains. Together, those findings provide a path for further exploration of virulence mechanisms in parasitoid wasps, and offer insights into host-parasitoid coevolution.
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