Ecology, Evolution, and Behavior Program, Department of Fisheries and Wildlife, W. K. Kellogg Biological Station, Michigan State University, Hickory Corners, MI, United States.
Evolution. 2023 Apr 1;77(4):1091-1100. doi: 10.1093/evolut/qpad029.
Species with temperature-dependent sex determination (TSD) exhibit significant variation in the relationship between incubation temperatures and the sex ratios they produce, making this an ideal system for comparing processes producing variation above and below the species level. Furthermore, a deeper mechanistic understanding of TSD macro- and microevolution may help reveal the currently unknown adaptive significance of this variation or of TSD as a whole. Here, we probe these topics by examining the evolutionary dynamics of this sex-determining mechanism in turtles. Our ancestral state reconstructions of discrete patterns of TSD suggest that producing females at cool incubation temperatures is derived and potentially adaptive. However, the ecological irrelevance of these cool temperatures and a strong genetic correlation across the sex-ratio reaction norm in Chelydra serpentina both contradict this interpretation. We further find the phenotypic consequence of this genetic correlation in C. serpentina reflected across all turtle species, suggesting that a single genetic architecture underlies both intra- and interspecific variation in TSD in this clade. This correlated architecture can explain the macroevolutionary origin of discrete TSD patterns without assigning cool-temperature female production an adaptive value. However, this architecture may also constrain adaptive microevolutionary responses to ongoing climate change.
具有温度依赖型性别决定(TSD)的物种在孵化温度与产生的性别比例之间的关系上表现出显著的差异,这使得该系统成为比较物种水平以上和以下产生变异的过程的理想系统。此外,对 TSD 宏观和微观进化的更深入机制理解可能有助于揭示这种变异或 TSD 作为一个整体目前未知的适应意义。在这里,我们通过研究海龟中这种性别决定机制的进化动态来探究这些主题。我们对 TSD 离散模式的祖先状态重建表明,在低温孵化条件下产生雌性是衍生的,可能具有适应性。然而,这些低温的生态无关性以及 Chelydra serpentina 性别比例反应规范中的强烈遗传相关性都与这种解释相矛盾。我们进一步发现,C. serpentina 中这种遗传相关性的表型后果反映在所有海龟物种中,这表明在这个分支中,TSD 的种内和种间变异都基于单一的遗传结构。这种相关的结构可以解释离散 TSD 模式的宏观进化起源,而无需赋予低温雌性产生适应性价值。然而,这种结构也可能限制对正在发生的气候变化的适应性微观进化反应。