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热变异性会导致斑马鱼(Danio rerio)出现性别特异性形态变化。

Thermal variability induces sex-specific morphometric changes in zebrafish (Danio rerio).

作者信息

Grigg A G, Lowi-Merri T M, Hutchings J A, Massey M D

机构信息

Dalhousie University, Halifax, Nova Scotia, Canada.

University of Toronto, Toronto, Ontario, Canada.

出版信息

J Fish Biol. 2023 Oct;103(4):839-850. doi: 10.1111/jfb.15551. Epub 2023 Sep 26.

Abstract

In nature, organisms are exposed to variable environmental conditions that impact their performance and fitness. Despite the ubiquity of environmental variability, substantial knowledge gaps in our understanding of organismal responses to nonconstant thermal regimes remain. In the present study, using zebrafish (Danio rerio) as a model organism, we applied geometric morphometric methods to examine how challenging but ecologically realistic diel thermal fluctuations experienced during different life stages influence adult body shape, size, and condition. Zebrafish were exposed to either thermal fluctuations (22-32°C) or a static optimal temperature (27°C) sharing the same thermal mean during an early period spanning embryonic and larval ontogeny (days 0-30), a later period spanning juvenile and adult ontogeny (days 31-210), or a combination of both. We found that body shape, size, and condition were affected by thermal variability, but these plasticity-mediated changes were dependent on the timing of ontogenetic exposure. Notably, after experiencing fluctuating temperatures during early ontogeny, females displayed a deeper abdomen while males displayed an elongated caudal peduncle region. Moreover, males displayed beneficial acclimation of body condition under lifelong fluctuating temperature exposure, whereas females did not. The present study, using ecologically realistic thermal regimes, provides insight into the timing of environmental experiences that generate phenotypic variation in zebrafish.

摘要

在自然界中,生物体面临着影响其性能和适应性的各种环境条件。尽管环境变异性普遍存在,但我们对生物体对非恒定热环境的反应的理解仍存在重大知识空白。在本研究中,我们以斑马鱼(Danio rerio)为模式生物,应用几何形态测量方法来研究在不同生命阶段经历的具有挑战性但生态现实的昼夜热波动如何影响成年鱼的体型、大小和身体状况。在胚胎和幼体发育早期(0至30天)、幼体和成年发育后期(31至210天)或两个阶段的组合期间,斑马鱼被暴露于热波动(22-32°C)或具有相同热均值的静态最佳温度(27°C)下。我们发现,体型、大小和身体状况受热变异性影响,但这些可塑性介导的变化取决于个体发育暴露的时间。值得注意的是,在早期个体发育期间经历温度波动后,雌性腹部更深,而雄性尾柄区域更长。此外,雄性在终身温度波动暴露下表现出身体状况的有益适应,而雌性则没有。本研究使用生态现实的热环境,深入了解了在斑马鱼中产生表型变异的环境经历的时间。

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