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将昆虫头部和下颚的显著形状不对称与形状协变模式及性能联系起来。

Linking shape conspicuous asymmetry with shape covariation patterns and performance in the insect head and mandibles.

作者信息

Ginot Samuel, Sommerfeld Simon, Blanke Alexander

机构信息

Bonner Institut für Organismische Biologie, Universität Bonn, Bonn, Germany.

出版信息

Evolution. 2024 May 29;78(6):1078-1091. doi: 10.1093/evolut/qpae040.

DOI:10.1093/evolut/qpae040
PMID:38469758
Abstract

Bilateral symmetry is widespread across animals, yet, among bilaterians, many cases of conspicuous asymmetries evolved. This means that bilaterally homologous structures on the left and right sides display divergent phenotypes. The evolution of such divergent phenotypes between otherwise similarly shaped structures can be thought to be favored by modularity, but this has rarely been studied in the context of left-right differences. Here, we provide an empirical example, using geometric morphometrics to assess patterns of asymmetry and covariation between landmark partitions in a grasshopper with conspicuously asymmetric mandibles. Our morphometric data confirm the presence of strictly directional conspicuous asymmetry in the mandibles and surrounding structures. Covariance patterns and tests hint at a strong integration between mandibles despite their divergent morphologies, and variational modularity with the head capsule. While mandibles have been selected to achieve a key-and-lock morphology by having interlocking shapes, the developmental modularity required to achieve this seems to be overwritten by developmental and/or functional integration, allowing the precise matching required for feeding. The consequent conflicting covariation patterns are reminiscent of the palimpsest model. Finally, the degree of directional asymmetry appears to be under selection, although we find no relationship between bite force and mandible shape or asymmetry.

摘要

两侧对称在动物界广泛存在,然而,在两侧对称动物中,许多明显的不对称情况也在进化。这意味着左右两侧的双侧同源结构表现出不同的表型。在其他形状相似的结构之间,这种不同表型的进化可能受到模块性的青睐,但在左右差异的背景下,这方面的研究很少。在这里,我们提供了一个实证例子,利用几何形态测量学来评估一种具有明显不对称下颚的蚱蜢地标分区之间的不对称和协变模式。我们的形态测量数据证实了下颚及其周围结构中存在严格方向性的明显不对称。协变模式和测试表明,尽管下颚形态不同,但它们之间存在很强的整合性,并且与头壳存在变异模块性。虽然下颚通过相互锁定的形状被选择以实现钥匙与锁的形态,但实现这一形态所需的发育模块性似乎被发育和/或功能整合所覆盖,从而允许进食所需的精确匹配。由此产生的相互冲突的协变模式让人联想到重写本模型。最后,方向性不对称的程度似乎受到选择,尽管我们没有发现咬合力与下颚形状或不对称之间的关系。

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