High-latitude ocean habitats are a crucible of fish body shape diversification

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Michael D Burns, S. T. Friedman, K. A. Corn, O. Larouche, Samantha A Price, Peter C. Wainwright, E. Burress
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引用次数: 0

Abstract

A decline in diversity from the equator to the poles is a common feature of Earth’s biodiversity. Here, we examine body shape diversity in marine fishes across latitudes and explore the role of time and evolutionary rate in explaining the diversity gradient. Marine fishes’ occupation of upper latitude environments has increased substantially over the last 80 million years. Fishes in the highest latitudes exhibit twice the rate of body shape evolution and one and a third times the disparity compared to equatorial latitudes. The faster evolution of body shape may be a response to increased ecological opportunity in polar and subpolar oceans due to (1) the evolution of antifreeze proteins allowing certain lineages to invade regions of cold water, (2) environmental disturbances driven by cyclical warming and cooling in high latitudes, and (3) rapid transitions across depth gradients. Our results add to growing evidence that evolutionary rates are often faster at temperate, not tropical, latitudes.
高纬度海洋栖息地是鱼类体形多样化的熔炉
从赤道到两极的多样性下降是地球生物多样性的一个共同特征。在这里,我们研究了不同纬度海洋鱼类的体形多样性,并探讨了时间和进化速度在解释多样性梯度中的作用。在过去的 8000 万年里,海洋鱼类对高纬度环境的占有率大幅增加。与赤道纬度的鱼类相比,最高纬度鱼类的体形进化速度是赤道纬度鱼类的两倍,差异是赤道纬度鱼类的三分之一。体形的快速进化可能是对极地和亚极地海洋生态机会增加的一种反应,其原因包括:(1)抗冻蛋白的进化使某些品系能够入侵冷水区域;(2)高纬度地区周期性升温和降温导致的环境干扰;以及(3)深度梯度的快速转换。我们的研究结果补充了越来越多的证据,即在温带而非热带地区,进化速度往往更快。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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