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Evolution of the cercal sensory system in a tropical cricket clade (Orthoptera: Grylloidea: Eneopterinae): A phylogenetic approach

机译:热带板球进化枝(直翅目:Grylloidea:鞘翅目)的大脑感觉系统的进化:系统发育的方法。

摘要

The diversity of sensory systems in animals has poorly been explored on a phylogenetic basis at the species level. We addressed this issue using cricket cerci, comprising abdominal appendages covered with touch- and airsensitive hairs. Scanning electron microscopy measurements and spatial analyses of hair positioning were used to quantify the structural diversity of cercal structures. Eighteen Eneopterinae and two Gryllidae (outgroups) were studied from a phylogenetic perspective. Cerci were revealed to be complex, diverse, and variable between cricket species. Based on maximum likelihood estimations, the ancestral Eneopterinae cercus had a small size, and its hair equipment allowed the use of both air and touch mechanoreception. The evolution of Eneopterinae cerci was mainly unconstrained by the phylogeny; it was rather a punctuated process, involving apical transformations, and was mostly unrelated to environmental patterns. All studied species have enhanced their overall perceptive capacities compared to the ancestor. Most have longer cerci with more and/or longer hairs. Sensory abilities have improved either in the direction of touch or air movement detection, or both, without discarding the potential for any sensory capacity that was already present ancestrally. This pattern is consistent with the hypothesis of an evolutionary trade-off for sensory performances. (Résumé d'auteur)
机译:动物的感觉系统的多样性在物种水平的系统发育基础上很少被探索。我们使用cerci解决了这个问题,包括覆盖有接触性和空气敏感性毛发的腹部附件。扫描电子显微镜测量和头发位置的空间分析被用来量化大脑结构的结构多样性。从系统发育的角度研究了十八个翅翅目和两个灰蝶科。塞里奇被发现在板球物种之间是复杂,多样且可变的。根据最大似然估计,祖传E蝶的尺寸很小,其发饰允许同时使用空气和触觉机械感受。尾翅目翅翅目的进化主要不受系统发育的限制。这是一个不连贯的过程,涉及根尖的转化,并且与环境模式无关。与祖先相比,所有研究过的物种均增强了整体感知能力。大多数人的角质更长,头发更多和/或更长。感觉能力在触摸方向或空气运动检测的方向上或两者上都得到了改善,而没有放弃任何已经存在的感觉能力的潜力。这种模式与感觉表现的进化折衷假设相一致。 (Résuméd'auteur)

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