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The effects of different cold‐temperature regimes on development, growth, and susceptibility to an abiotic and biotic stressor

机译:不同的低温方式对非生物和生物应激源的发育,生长和敏感性的影响

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Global climate change is expected to both increase average temperatures as well as temperature variability. Increased average temperatures have led to earlier breeding in many spring‐breeding organisms. However, individuals breeding earlier will also face increased temperature fluctuations, including exposure to potentially harmful cold‐temperature regimes during early developmental stages. Using a model spring‐breeding amphibian, we investigated how embryonic exposure to different cold‐temperature regimes (control, cold‐pulse, and cold‐press) affected (a) compensatory larval development and growth, (b) larval susceptibility to a common contaminant, and (c) larval susceptibility to parasites. We found: (a) no evidence of compensatory development or growth, (b) larvae exposed to the cold‐press treatment were more susceptible to NaCl at 4‐days post‐hatching but recovered by 17‐days post‐hatching, and (c) larvae exposed to both cold treatments were less susceptible to parasites. These results demonstrate that variation in cold‐temperature regimes can lead to unique direct and indirect effects on larval growth, development, and response to stressors. This underscores the importance of considering cold‐temperature variability and not just increased average temperatures when examining the impacts of climate disruption.
机译:预计全球气候变化将增加平均温度以及温度变化。平均温度升高导致许多春季育种生物较早繁殖。但是,较早繁殖的个体也将面临温度波动的增加,包括在发育早期暴露于潜在有害的低温环境中。我们使用模型春季两栖动物,研究了胚胎在不同的低温环境(控制,冷脉冲和冷压)下的暴露如何影响(a)代偿性幼体发育和生长,(b)幼虫对常见污染物的敏感性(c)幼虫对寄生虫的敏感性。我们发现:(a)没有代偿性发育或生长的证据,(b)接受冷压处理的幼虫在孵化后4天更易受到NaCl的影响,但在孵化后17天得以恢复,并且(c暴露于两种冷处理的幼虫对寄生虫的敏感性较低。这些结果表明,低温条件下的变化可以对幼虫的生长,发育以及对应激源的响应产生独特的直接和间接影响。这强调了在检查气候破坏的影响时,不仅要考虑低温变化,而且要考虑平均温度的升高。

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