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Tracing the evolutionary origins of insect renal function

机译:追踪昆虫肾脏功能的进化起源

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摘要

Knowledge on neuropeptide receptor systems is integral to understanding animal physiology. Yet, obtaining general insight into neuropeptide signalling in a clade as biodiverse as the insects is problematic. Here we apply fluorescent analogues of three key insect neuropeptides to map renal tissue architecture across systematically chosen representatives of the major insect Orders, to provide an unprecedented overview of insect renal function and control. In endopterygote insects, such as Drosophila , two distinct transporting cell types receive separate neuropeptide signals, whereas in the ancestral exopterygotes, a single, general cell type mediates all signals. Intriguingly, the largest insect Order Coleoptera (beetles) has evolved a unique approach, in which only a small fraction of cells are targets for neuropeptide action. In addition to demonstrating a universal utility of this technology, our results reveal not only a generality of signalling by the evolutionarily ancient neuropeptide families but also a clear functional separation of the types of cells that mediate the signal.
机译:关于神经肽受体系统的知识对于理解动物生理学是必不可少的。然而,对于像昆虫一样生物多样性的进化枝中的神经肽信号传导获得普遍的了解是有问题的。在这里,我们应用了三种主要昆虫神经肽的荧光类似物,在系统选择的主要昆虫纲代表中绘制了肾脏组织结构图,从而为昆虫的肾功能和控制提供了前所未有的概述。在内蝇类昆虫(如果蝇)中,两种不同的转运细胞类型接收单独的神经肽信号,而在祖先的外翅类昆虫中,单个普通细胞类型介导所有信号。有趣的是,最大的昆虫鞘翅目昆虫(甲虫)已经进化出一种独特的方法,其中只有一小部分细胞是神经肽作用的靶标。除了证明该技术的通用性,我们的结果不仅揭示了进化上古老的神经肽家族对信号传导的一般性,而且还清楚地区分了介导信号的细胞类型的功能。

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