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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Do distantly related parasites rely on the same proximate factors to alter the behaviour of their hosts?
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Do distantly related parasites rely on the same proximate factors to alter the behaviour of their hosts?

机译:远缘寄生虫是否依靠相同的邻近因素来改变其宿主的行为?

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Phylogenetically unrelated parasites often increase the chances of their transmission by inducing similar phenotypic changes in their hosts. However, it is not known whether these convergent strategies rely on the same biochemical precursors. In this paper, we explored such aspects by studying two gammarid species (Gammarus insensibilis and Gammarus pulex; Crustacea: Amphipoda: Gammaridae) serving as intermediate hosts in the life cycle of two distantly related parasites: the trematode, Microphallus papillorobustus and the acanthocephalan, Polymorphus minutus. Both these parasite species are known to manipulate the behaviour of their amphipod hosts, bringing them towards the water surface, where they are preferentially eaten by aquatic birds (definitive hosts). By studying and comparing the brains of infected G. insensibilis and G. pulex with proteomics tools, we have elucidated some of the proximate causes involved in the parasite-induced alterations of host behaviour for each system. Protein identifications suggest that altered physiological compartments in hosts can be similar (e.g. immunoneural connexions) or different (e.g. vision process), and hence specific to the host-parasite association considered. Moreover, proteins required to alter the same physiological compartment can be specific or conversely common in both systems, illustrating in the latter case a molecular convergence in the proximate mechanisms of manipulation.
机译:与系统发育无关的寄生虫通常通过在宿主体内诱导相似的表型变化来增加其传播的机会。但是,尚不清楚这些融合策略是否依赖于相同的生化前体。在本文中,我们通过研究作为两个远缘相关寄生虫生命周期的中间宿主的两种伽马龙物种(伽马龙不育和伽马普勒斯;甲壳纲:两栖类:伽马龙科)来探索这些方面。瘦肉。众所周知,这两种寄生虫都可以操纵两栖动物宿主的行为,将它们带到水面,在那里它们优先被水生鸟类(定性宿主)食用。通过使用蛋白质组学工具研究和比较感染的不动产G. insensibilis和G. pulex的大脑,我们阐明了每个系统中由寄生虫诱导的宿主行为改变所涉及的一些直接原因。蛋白质鉴定表明宿主中改变的生理区室可以相似(例如免疫神经连接)或不同(例如视觉过程),因此对于所考虑的宿主-寄生虫关联是特异性的。此外,改变同一生理区室所需的蛋白质在两个系统中可能是特异性的,或者相反,这在两种系统中都是常见的,这说明在后一种情况下,在邻近的操纵机制中分子会聚。

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