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程序性细胞死亡塑造了有角甲虫种内和种间角的表达。

Programed cell death shapes the expression of horns within and between species of horned beetles.

机构信息

Department of Biology, Indiana University, Bloomington, IN 47405, USA.

出版信息

Evol Dev. 2010 Sep-Oct;12(5):449-58. doi: 10.1111/j.1525-142X.2010.00431.x.

Abstract

Holometabolous insects provide an excellent opportunity to study both the properties of development as well as their evolution and diversification across taxa. Here we investigate the developmental basis and evolutionary diversification of secondary trait loss during development in the expression of beetle horns, a novel and highly diverse class of secondary sexual traits. In many species, horn growth during late larval development is followed by a period of dramatic remodeling during the pupal stage, including the complete resorption of horns in many cases. Here we show that programed cell death plays an important and dynamic role in the secondary resorption of pupal horn primordia during pupal development. Surprisingly, the degree of cell death mediated horn resorption depended on species, sex, and body region, suggesting the existence of regulatory mechanisms that can diversify quickly over short phylogenetic distances. More generally, our results illustrate that secondary, differential loss of structures during development can be a powerful mechanism for generating considerable morphological diversity both within and between species.

摘要

完全变态昆虫为研究发育特性及其在分类群中的进化和多样化提供了极好的机会。在这里,我们研究了在甲虫角的表达过程中,次生特征丧失的发育基础和进化多样化,甲虫角是一类新颖且高度多样化的次生性特征。在许多物种中,角在幼虫晚期的生长之后,在蛹期会经历一个剧烈的重塑阶段,包括在许多情况下完全吸收角。在这里,我们表明程序性细胞死亡在蛹发育过程中次生角原基的二次吸收中起着重要和动态的作用。令人惊讶的是,细胞死亡介导的角吸收程度取决于物种、性别和身体区域,这表明存在调节机制,可以在短的系统发育距离内快速多样化。更一般地说,我们的结果表明,发育过程中次生的、结构的差异丧失可以是在种内和种间产生相当大的形态多样性的有力机制。

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