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临界体重介导了黄粪蝇(Scathophaga stercoraria,双翅目:粪蝇科)的性别特异性体型可塑性和两性异形。

Critical weight mediates sex-specific body size plasticity and sexual dimorphism in the yellow dung fly Scathophaga stercoraria (Diptera: Scathophagidae).

作者信息

Rohner Patrick T, Blanckenhorn Wolf U, Schäfer Martin A

机构信息

Department of Evolutionary Biology and Environmental Studies, University of Zurich, Winterthurerstrasse, Zurich, Switzerland.

出版信息

Evol Dev. 2017 May;19(3):147-156. doi: 10.1111/ede.12223.

DOI:10.1111/ede.12223
PMID:28463473
Abstract

Ultimate factors driving insect body size are rather well understood, while-apart from a few model species-the underlying physiological and developmental mechanisms received less attention. We investigate the physiological basis of adaptive size variation in the yellow dung fly Scathophaga stercoraria, which shows pronounced male-biased sexual size dimorphism and strong body size plasticity. We estimate variation of a major physiological threshold, the critical weight, which is the mass at which a larva initiates pupariation. Critical weight was associated with sexual size dimorphism and sex-specific plasticity, and is thus a likely target of selection on adult size. Detailed larval growth trajectories derived from individuals raised at two food and temperature treatments further reveal that sex-specific size plasticity is mediated by faster initial growth of males that later becomes reduced by higher male weight loss during the wandering stage. We further demonstrate that integral growth rates, which are typically calculated as simple ratios of egg-to-adult development time and adult weight, do not necessarily well reflect variation in instantaneous growth rates. We illustrate the importance of detailed assessments of ontogenetic growth trajectories for the understanding of adaptive size variation and discuss the mechanistic basis of size determination in shaping sex-specific phenotypic plasticity.

摘要

驱动昆虫体型大小的最终因素已相当清楚,然而,除了少数模式物种外,其潜在的生理和发育机制却较少受到关注。我们研究了黄粪蝇(Scathophaga stercoraria)适应性体型变化的生理基础,该物种表现出明显的雄性偏向性两性体型差异和很强的体型可塑性。我们估计了一个主要生理阈值——临界体重的变化,临界体重是幼虫开始化蛹时的体重。临界体重与两性体型差异和性别特异性可塑性相关,因此可能是成虫体型选择的目标。来自两种食物和温度处理条件下饲养个体的详细幼虫生长轨迹进一步表明,性别特异性体型可塑性是由雄性更快的初始生长介导的,而这种初始生长随后在漫游阶段因雄性更高的体重减轻而降低。我们还进一步证明,通常计算为卵到成虫发育时间与成虫体重简单比值的整体生长率,不一定能很好地反映瞬时生长率的变化。我们阐述了详细评估个体发育生长轨迹对于理解适应性体型变化的重要性,并讨论了体型决定在塑造性别特异性表型可塑性中的机制基础。

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