Microevolutionary Divergence and Plasticity of Laryngeal Shape in the House Mouse (Mus musculus).

IF 2.3 3区 医学 Q3 PHYSIOLOGY
Tobias Riede, Mia Sherwood, Mackenzie Kaup, Karen Baab
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Abstract

The morphology of the larynx is essential for vocalization, respiration, and airway protection, yet the sources of phenotypic variation within species are not well understood. This study investigated whether genetic background exerts a stronger influence than environmental factors on laryngeal morphology in two house mouse strains. Using geometric morphometrics, we analyzed the size and shape of 87 laryngeal specimens and examined the effects of body size, genetics, obesity, exercise, and social housing. Our results demonstrate that genetic background significantly shapes laryngeal structure. There were significant shape differences between the two genetic strains, and the inbred strain showed less phenotypic variation than the outbred mice. Although these structural differences likely arose without direct selection, they were associated with marginal differences in vocal output, suggesting functional relevance. Obesity and exercise also influenced laryngeal morphology, but their effects were secondary to genetics. Notably, leptin levels were linked to size and shape changes in the vocal organ. These findings suggest that random genetic drift and pleiotropy can be important drivers of laryngeal evolution in house mice. Overall, both genetic and environmental factors contribute to laryngeal shape, underscoring the organ's plasticity.

家鼠喉形的微进化分化和可塑性。
喉部的形态对发声、呼吸和气道保护至关重要,但物种内表型变异的来源尚不清楚。本研究探讨遗传背景是否比环境因素对两家鼠喉部形态的影响更大。使用几何形态计量学,我们分析了87个喉部标本的大小和形状,并检查了体型、遗传、肥胖、运动和社会住房的影响。我们的研究结果表明,遗传背景显著塑造喉部结构。两种遗传品系之间存在显著的形态差异,近交系的表型变异小于远交系。虽然这些结构上的差异可能是在没有直接选择的情况下产生的,但它们与声音输出的边际差异有关,表明功能相关。肥胖和运动也影响喉部形态,但其影响次于遗传。值得注意的是,瘦素水平与发声器官的大小和形状变化有关。这些发现表明,随机遗传漂变和多效性可能是家鼠喉部进化的重要驱动因素。总的来说,遗传和环境因素都影响喉的形状,强调了器官的可塑性。
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来源期刊
CiteScore
5.30
自引率
3.60%
发文量
145
审稿时长
2 months
期刊介绍: The American Journal of Physiology-Regulatory, Integrative and Comparative Physiology publishes original investigations that illuminate normal or abnormal regulation and integration of physiological mechanisms at all levels of biological organization, ranging from molecules to humans, including clinical investigations. Major areas of emphasis include regulation in genetically modified animals; model organisms; development and tissue plasticity; neurohumoral control of circulation and hypertension; local control of circulation; cardiac and renal integration; thirst and volume, electrolyte homeostasis; glucose homeostasis and energy balance; appetite and obesity; inflammation and cytokines; integrative physiology of pregnancy-parturition-lactation; and thermoregulation and adaptations to exercise and environmental stress.
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