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环境温度是导致同域鲑科鱼类发育分歧的因素之一。

Ambient temperature as a factor contributing to the developmental divergence in sympatric salmonids.

机构信息

A.N. Severtsov Institute of Ecology and Evolution RAS, Moscow, Russian Federation.

Kronotsky Nature Biosphere Reserve, Yelizovo, Kamchatka region, Russian Federation.

出版信息

PLoS One. 2021 Oct 15;16(10):e0258536. doi: 10.1371/journal.pone.0258536. eCollection 2021.

Abstract

Factors and mechanisms promoting resource-based radiation in animals still represent a main challenge to evolutionary biology. The modifications of phenotype tied with adaptive diversification may result from an environmentally related shift having occurred at the early stage of development. Here, we study the role of temperature dynamics on the reproductive sites in the early-life divergence and adaptive radiation of the salmonid fish Salvelinus malma dwelling in the Lake Kronotskoe basin (North-East Asia). Local sympatric charr ecomorphs demonstrate strict homing behaviour guiding the preordained distribution along tributaries and, hence, further development under different temperatures. We thoroughly assessed the annual temperature dynamics at the spawning grounds of each morph as compared to an ancestral anadromous morph. Then we carried out an experimental rearing of both under naturally diverging and uniformed temperatures. To compare the morphs' development under the dynamically changing temperatures, we have designed a method based on calculating the accumulated heat by the Arrhenius equation. The proposed equation shows a strong predictive power and, at the same time, is not bias-susceptible when the developmental temperature approximates 0°C. The temperature was found to significantly affect the charrs' early ontogeny, which underlies the divergence of developmental and growth rates between the morphs, as well as morph-specific ontogenetic adaptations to the spawning site's temperatures. As opposed to the endemic morphs from Lake Kronotskoe, the anadromous S. malma, being unexposed to selection оn highly specific reproduction conditions, showed a wide temperature tolerance, Our findings demonstrate that the hatch, onset timing of external feeding, and size dissimilarities between the sympatric morphs reveal themselves during the development under contrast temperatures. As a result of the observed developmental disparities, the morphs occupy specific definitive foraging niches in the lake.

摘要

促进动物资源辐射的因素和机制仍然是进化生物学的主要挑战。与适应性多样化相关的表型修饰可能是由于在发育早期发生了与环境有关的转变。在这里,我们研究了温度动态在生活早期分歧和适应辐射中的作用鲑鱼居住在克罗诺茨基湖盆地(东北亚)。当地的共生鳟鱼生态型表现出严格的归巢行为,引导着沿着支流的预定分布,从而在不同的温度下进一步发展。我们彻底评估了每个形态的繁殖地的年温度动态与祖先溯河洄游形态相比。然后,我们在自然分化和统一的温度下对两者进行了实验饲养。为了比较形态在动态变化温度下的发育,我们设计了一种基于计算累积热的方法阿雷尼乌斯方程。所提出的方程显示出很强的预测能力,同时,当发育温度接近 0°C 时,它不易受到偏差的影响。温度显著影响了鳟鱼的早期胚胎发生,这是形态之间发育和生长速度差异的基础,也是形态对繁殖地温度的特定进化适应。与来自克罗诺茨基湖的特有形态相反,未经历高度特异性繁殖条件选择的溯河洄游 S. malma 表现出广泛的温度容忍度,我们的研究结果表明,孵化、外部摄食的开始时间以及共生形态之间的大小差异在对比温度下的发育过程中显现出来。由于观察到的发育差异,形态在湖中占据了特定的确定觅食生态位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29ab/8519426/88ee4d4371f2/pone.0258536.g001.jpg

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