Department of Biological Sciences, Smith College, Northampton, Massachusetts, United States of America.
Department of Biology, Wake Forest University, Winston-Salem, North Carolina United States of America.
PLoS One. 2024 Jan 30;19(1):e0291393. doi: 10.1371/journal.pone.0291393. eCollection 2024.
Thermal performance curves (TPCs) depict variation in vital rates in response to temperature and have been an important tool to understand ecological and evolutionary constraints on the thermal sensitivity of ectotherms. TPCs allow for the calculation of indicators of thermal tolerance, such as minimum, optimum, and maximum temperatures that allow for a given metabolic function. However, these indicators are computed using only responses from surviving individuals, which can lead to underestimation of deleterious effects of thermal stress, particularly at high temperatures. Here, we advocate for an integrative framework for assessing thermal sensitivity, which combines both vital rates and survival probabilities, and focuses on the temperature interval that allows for population persistence. Using a collated data set of Lepidopteran development rate and survival measured on the same individuals, we show that development rate is generally limiting at low temperatures, while survival is limiting at high temperatures. We also uncover differences between life stages and across latitudes, with extended survival at lower temperatures in temperate regions. Our combined performance metric demonstrates similar thermal breadth in temperate and tropical individuals, an effect that only emerges from integration of both development and survival trends. We discuss the benefits of using this framework in future predictive and management contexts.
热性能曲线(TPC)描绘了关键生活参数随温度的变化,是理解变温动物对温度敏感性的生态和进化限制的重要工具。TPC 允许计算热耐受指标,例如允许特定代谢功能的最小、最适和最高温度。然而,这些指标仅使用存活个体的反应进行计算,这可能导致对热应激有害影响的低估,特别是在高温下。在这里,我们提倡一种综合的热敏感性评估框架,该框架结合了关键生活参数和生存概率,并关注允许种群持续存在的温度区间。使用我们在同一批个体上测量的鳞翅目发育率和存活率的综合数据集,我们表明在低温下通常是发育率限制,而在高温下则是存活率限制。我们还揭示了不同生命阶段和跨纬度之间的差异,在温带地区,较低的温度下生存时间延长。我们的综合性能指标表明,温带和热带个体的热宽幅相似,这种效果仅在整合发育和生存趋势后才会出现。我们讨论了在未来预测和管理背景下使用这种框架的好处。