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'Suicide' of crickets harbouring hairworms: a proteomics investigation

机译:hair携带hair的“自杀”:蛋白质组学研究

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Despite increasing evidence of host phenotypic manipulation by parasites, the underlying mechanisms causing infected hosts to act in ways that benefit the parasite remain enigmatic in most cases. Here, we used proteomics tools to identify the biochemical alterations that occur in the head of the cricket Nemobius sylvestris when it is driven to water by the hairworm Paragordius tricuspidatus. We characterized host and parasite proteomes during the expression of the water-seeking behaviour. We found that the parasite produces molecules from the Wnt family that may act directly on the development of the central nervous system (CNS). In the head of manipulated cricket, we found differential expression of proteins specifically linked to neurogenesis, circadian rhythm and neurotransmitter activities. We also detected proteins for which the function(s) are still unknown. This proteomics study on the biochemical pathways altered by hairworms has also allowed us to tackle questions of physiological and molecular convergence in the mechanism(s) causing the alteration of orthoptera behaviour. The two hairworm species produce effective molecules acting directly on the CNS of their orthoptera hosts.
机译:尽管越来越多的证据表明寄生虫可操纵宿主的表型,但在大多数情况下,导致感染宿主以有益于寄生虫的方式起作用的潜在机制仍然难以捉摸。在这里,我们使用了蛋白质组学工具,来确定当the虫Paragordius tricuspidatus将to驱入水中时,N的头部发生的生化变化。我们在求水行为的表达过程中表征宿主和寄生虫蛋白质组。我们发现该寄生虫产生了来自Wnt家族的分子,这些分子可能直接作用于中枢神经系统(CNS)的发育。在操纵的头部,我们发现了与神经发生,昼夜节律和神经递质活性特别相关的蛋白质的差异表达。我们还检测了功能未知的蛋白质。蛋白质组学研究了由hair虫改变的生化途径,这也使我们能够解决引起直翅目行为改变的机制中的生理和分子趋同问题。这两种hair虫产生直接作用于直翅目宿主中枢神经系统的有效分子。

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