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发育过程中的热可塑性和冷可塑性的可逆性是不对称的,并且对成体热耐受性具有长期影响。

Reversibility of developmental heat and cold plasticity is asymmetric and has long-lasting consequences for adult thermal tolerance.

作者信息

Slotsbo Stine, Schou Mads F, Kristensen Torsten N, Loeschcke Volker, Sørensen Jesper G

机构信息

Department of Bioscience, Aarhus University, Ny Munkegade 116, Aarhus DK-8000, Denmark

Department of Bioscience, Aarhus University, Ny Munkegade 116, Aarhus DK-8000, Denmark.

出版信息

J Exp Biol. 2016 Sep 1;219(Pt 17):2726-32. doi: 10.1242/jeb.143750. Epub 2016 Jun 27.

Abstract

The ability of insects to cope with stressful temperatures through adaptive plasticity has allowed them to thrive under a wide range of thermal conditions. Developmental plasticity is generally considered to be a non-reversible phenotypic change, e.g. in morphological traits, while adult acclimation responses are often considered to be reversible physiological responses. However, physiologically mediated thermal acclimation might not follow this general prediction. We investigated the magnitude and rate of reversibility of developmental thermal plasticity responses in heat and cold tolerance of adult flies, using a full factorial design with two developmental and two adult temperatures (15 and 25°C). We show that cold tolerance attained during development is readily adjusted to the prevailing conditions during adult acclimation, with a symmetric rate of decrease or increase. In contrast, heat tolerance is only partly reversible during acclimation and is thus constrained by the temperature during development. The effect of adult acclimation on heat tolerance was asymmetrical, with a general loss of heat tolerance with age. Surprisingly, the decline in adult heat tolerance at 25°C was decelerated in flies developed at low temperatures. This result was supported by correlated responses in two senescence-associated traits and in accordance with a lower rate of ageing after low temperature development, suggesting that physiological age is not reset at eclosion. The results have profound ecological consequences for populations, as optimal developmental temperatures will be dependent on the thermal conditions faced in the adult stage and the age at which they occur.

摘要

昆虫通过适应性可塑性来应对压力温度的能力,使它们能够在广泛的热条件下繁衍生息。发育可塑性通常被认为是一种不可逆的表型变化,例如在形态特征方面,而成年期的适应性反应通常被认为是可逆的生理反应。然而,生理介导的热适应可能并不遵循这一普遍预测。我们采用了一个完全析因设计,其中包括两个发育温度和两个成年温度(15°C和25°C),研究了成年果蝇在耐热性和耐寒性方面发育热可塑性反应的可逆程度和速率。我们发现,发育过程中获得的耐寒性在成年适应期间能够迅速根据当前条件进行调整,下降或上升的速率是对称的。相比之下,耐热性在适应过程中仅部分可逆,因此受到发育期间温度的限制。成年适应对耐热性的影响是不对称的,随着年龄增长,耐热性普遍丧失。令人惊讶的是,在低温下发育的果蝇,在25°C时成年耐热性的下降速度减缓。这一结果得到了两个与衰老相关的性状的相关反应的支持,并且与低温发育后较低的衰老速率一致,表明生理年龄在羽化时并未重置。这些结果对种群具有深远的生态影响,因为最佳发育温度将取决于成年阶段所面临的热条件以及这些条件出现时的年龄。

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