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体型发育调控与进化:研究蜣螂获得的新见解。

Developmental regulation and evolution of scaling: novel insights through the study of Onthophagus beetles.

机构信息

Department of Biology, Indiana University, 915 East 3(rd) Street, Bloomington, IN 47405, United States.

Department of Biology, Indiana University, 915 East 3(rd) Street, Bloomington, IN 47405, United States.

出版信息

Curr Opin Insect Sci. 2017 Feb;19:52-60. doi: 10.1016/j.cois.2016.11.004. Epub 2016 Dec 5.

Abstract

Scaling relationships play critical roles in defining biological shape, trait functionality, and species characteristics, yet the developmental basis of scaling and its evolution remain poorly resolved in most taxa. In the horned beetle genus Onthophagus, scaling relationships of most traits are largely comparable across many species, however, the morphology and scaling of horns, a recent evolutionary invention, has diversified dramatically, ranging from modestly to highly positively linear to more complex sigmoidal allometries. Through a series of transcriptomic screens and gene function assays, the doublesex, hedgehog, insulin, and serotonin signaling pathways have recently been implicated in the regulation of amplitude, slope, and threshold location of the highly sigmoidal horn allometry in O. taurus. These and other findings suggest that co-option of these pathways into the regulation of horn development may have been critical in the evolutionary transitions from isometric to positively allometric to sigmoidal allometries in Onthophagus, thereby contributing to the extraordinary diversification of one of the most species-rich genera in the animal kingdom.

摘要

标度关系在定义生物形态、特征功能和物种特征方面起着关键作用,但在大多数类群中,标度的发育基础及其进化仍未得到很好的解决。在角甲虫属 Onthophagus 中,大多数特征的标度关系在许多物种中基本相似,然而,角的形态和标度,这是最近的进化发明,已经发生了巨大的变化,从适度的到高度的线性到更复杂的曲线异速生长。通过一系列转录组筛选和基因功能测定,双性 sex、刺猬、胰岛素和血清素信号通路最近被牵涉到高度曲线异速生长的角的幅度、斜率和阈值位置的调节中。这些和其他发现表明,这些途径被共同用于角发育的调节,可能在 Onthophagus 中从等比生长到正异速生长到曲线异速生长的进化转变中至关重要,从而为动物王国中物种最丰富的属之一的非凡多样化做出了贡献。

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