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山地蝗虫的高海拔种群在对季节性线索的反应中表现出更大的发育可塑性。

High-Elevation Populations of Montane Grasshoppers Exhibit Greater Developmental Plasticity in Response to Seasonal Cues.

作者信息

Smith Julia M, Telemeco Rory S, Briones Ortiz Bryan A, Nufio César R, Buckley Lauren B

机构信息

Department of Biology, University of Washington, Seattle, WA, United States.

Department of Biology, California State University, Fresno, Fresno, CA, United States.

出版信息

Front Physiol. 2021 Nov 4;12:738992. doi: 10.3389/fphys.2021.738992. eCollection 2021.

Abstract

Populations of insects can differ in how sensitive their development, growth, and performance are to environmental conditions such as temperature and daylength. The environmental sensitivity of development can alter phenology (seasonal timing) and ecology. Warming accelerates development of most populations. However, high-elevation and season-limited populations can exhibit developmental plasticity to either advance or prolong development depending on conditions. We examine how diurnal temperature variation and daylength interact to shape growth, development, and performance of several populations of the montane grasshopper, , along an elevation gradient. We then compare these experimental results to observed patterns of development in the field. Although populations exhibited similar thermal sensitivities of development under long-day conditions, development of high-elevation populations was more sensitive to temperature under short-day conditions. This developmental plasticity resulted in rapid development of high elevation populations in short-day conditions with high temperature variability, consistent with their observed capacity for rapid development in the field when conditions are permissive early in the season. Notably, accelerated development generally did not decrease body size or alter body shape. Developmental conditions did not strongly influence thermal tolerance but altered the temperature dependence of performance in difficult-to-predict ways. In sum, the high-elevation and season-limited populations exhibited developmental plasticity that enables advancing or prolonging development consistent with field phenology. Our results suggest these patterns are driven by the thermal sensitivity of development increasing when days are short early in the season compared to when days are long later in the season. Developmental plasticity will shape phenological responses to climate change with potential implications for community and ecosystem structure.

摘要

昆虫种群在其发育、生长和表现对温度和日照长度等环境条件的敏感程度上可能存在差异。发育的环境敏感性会改变物候(季节性时间安排)和生态。变暖会加速大多数种群的发育。然而,高海拔和受季节限制的种群可能表现出发育可塑性,根据具体条件提前或延长发育。我们研究了昼夜温度变化和日照长度如何相互作用,以影响沿海拔梯度分布的几种山地蚱蜢种群的生长、发育和表现。然后,我们将这些实验结果与野外观察到的发育模式进行比较。尽管在长日照条件下,各蚱蜢种群的发育对温度的敏感性相似,但在短日照条件下,高海拔种群的发育对温度更为敏感。这种发育可塑性导致高海拔种群在短日照且温度变化较大的条件下迅速发育,这与它们在季节早期条件适宜时在野外迅速发育的能力一致。值得注意的是,发育加速通常不会减小体型或改变身体形状。发育条件对热耐受性的影响不大,但以难以预测的方式改变了表现对温度的依赖性。总之,高海拔和受季节限制的种群表现出发育可塑性,能够根据野外物候提前或延长发育。我们的研究结果表明,这些模式是由季节早期日照短与后期日照长相比发育对温度的敏感性增加所驱动的。发育可塑性将塑造对气候变化的物候响应,对群落和生态系统结构可能产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ca5/8600268/26613f53c315/fphys-12-738992-g001.jpg

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