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蜥蜴头部形状发育缓冲的个体发生

The ontogeny of developmental buffering in lizard head shape.

作者信息

Lazić Marko M, Rödder Dennis, Kaliontzopoulou Antigoni

机构信息

Zoologisches Forschungsmuseum Alexander Koenig, Bonn, Germany.

CIBIO Research Centre in Biodiversity and Genetic Resources, InBIO, University of Porto, Vairão, Portugal.

出版信息

Evol Dev. 2017 Nov;19(6):244-252. doi: 10.1111/ede.12238. Epub 2017 Sep 19.

Abstract

Canalization and developmental stability (DS) are important organismal properties involved in determining the level of phenotypic variation. Ontogenetic patterns of phenotypic variance components can shed light on the mechanistic basis of developmental buffering (DB). Here, we analyze how individual FA and among-individual variation in head shape change in ontogenetic series of three lizard species raised in laboratory. The degree of asymmetry increased slightly with size, suggesting that developmental mechanisms hypothesized to correct for deviations either do not exist, or that their efficiency is truncated with increasing size. Alternatively, they may need the disturbance as a trigger. The relationship between asymmetry and age was complex, with asymmetry being stable across the age range in two species but increased with age in the third. Lack of congruence in ontogenetic patterns of asymmetry might be due to intrinsic differences in buffering mechanisms or a result of species-specific growth patterns. Head shape was shown to be equally canalized across both size and age range in all species, probably as a result of a balance between the buffering mechanisms and mechanisms generating variance. The patterns of symmetric and asymmetric head shape variation were highly correlated across species meaning that DS and canalization may rely on similar mechanisms.

摘要

发育稳定性和发育可塑性是决定表型变异水平的重要机体特性。表型方差成分的个体发育模式能够揭示发育缓冲的机制基础。在此,我们分析了在实验室饲养的三种蜥蜴个体发育序列中,个体的面部不对称性(FA)以及个体间头部形状的变化情况。不对称程度随体型略有增加,这表明假设用于纠正偏差的发育机制要么不存在,要么其效率会随着体型增大而降低。或者,它们可能需要干扰作为触发因素。不对称性与年龄之间的关系较为复杂,在两个物种中,不对称性在整个年龄范围内保持稳定,但在第三个物种中随年龄增加。不对称性个体发育模式缺乏一致性可能是由于缓冲机制的内在差异或特定物种生长模式的结果。在所有物种中,头部形状在大小和年龄范围内均表现出同等的发育可塑性,这可能是缓冲机制和产生变异的机制之间平衡的结果。跨物种的对称和不对称头部形状变化模式高度相关,这意味着发育稳定性和发育可塑性可能依赖于相似的机制。

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