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侏儒蝾螈和虎纹蝾螈的异速生长、两性异形及伦施法则

Allometry, sexual dimorphism, and Rensch's rule in pygmy and marbled newts.

作者信息

Ivanović Ana, Vučić Tijana, Arntzen Jan W

机构信息

Faculty of Biology, University of Belgrade, Belgrade, Serbia.

Naturalis Biodiversity Center, Leiden, The Netherlands.

出版信息

J Evol Biol. 2025 Feb 1;38(2):240-250. doi: 10.1093/jeb/voae150.

Abstract

Allometry, the relationship between body size and the size of other body parts, explains a significant portion of morphological variation across biological levels, at the individual level, within and between species. We used external morphology measurements of 6 Triturus (sub)species, focussing on the T. marmoratus species group, to explore allometric parameters within and between taxa. We tested for allometry of sexual size dimorphism in body, head, and limb dimensions and examined whether intraspecific allometry directed evolutionary allometry, as described by Rensch's rule. Our findings indicated that female-biased trunk and head dimensions exhibited positive allometry, whereas male-biased limb dimensions showed isometric relationships or weak correlations with body size. Morphological divergences between sexes occurred along common allometric slopes, most often through changes in the intercepts. Among taxon, comparisons revealed that (sub)species diverged in the direction of the allometric slopes. In line with Rensch's rule, sexual size dimorphism in female-biased traits significantly decreased as overall body size increased. However, the observed intraspecific allometric parameters deviated from theoretical expectations because the steepest allometric slopes for female-biased traits were recorded in the larger species. Our results contribute to understanding the dynamics of allometric relationships and sexual dimorphism in amphibians and provide a robust baseline for future comparative analyses.

摘要

异速生长,即身体大小与身体其他部位大小之间的关系,解释了跨生物水平、个体水平、物种内部和物种之间形态变异的很大一部分。我们使用了6种真螈(亚)物种的外部形态测量数据,重点关注大理石纹真螈物种组,以探索分类单元内部和之间的异速生长参数。我们测试了身体、头部和四肢维度上性大小二态性的异速生长,并研究了种内异速生长是否如伦施法则所述引导了进化异速生长。我们的研究结果表明,雌性偏向的躯干和头部维度呈现正异速生长,而雄性偏向的四肢维度与身体大小呈现等速关系或弱相关性。两性之间的形态差异沿着共同的异速生长斜率出现,最常见的是通过截距的变化。在分类单元之间的比较中发现,(亚)物种在异速生长斜率的方向上存在差异。与伦施法则一致,雌性偏向性状的性大小二态性随着总体身体大小的增加而显著降低。然而,观察到的种内异速生长参数偏离了理论预期,因为雌性偏向性状最陡峭的异速生长斜率出现在较大的物种中。我们的结果有助于理解两栖动物异速生长关系和性二态性 的动态,并为未来的比较分析提供了一个有力的基线。

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