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在幼年时耐冷性迅速下降与黑腹果蝇中应激基因的表达有关。

Rapid decline of cold tolerance at young age is associated with expression of stress genes in Drosophila melanogaster.

机构信息

Earth and Life Institute ELI, Biodiversity Research Centre BDIV, Catholic University of Louvain, Croix du Sud 4-5, B-1348 Louvain-la-Neuve, Belgium.

出版信息

J Exp Biol. 2013 Jan 15;216(Pt 2):253-9. doi: 10.1242/jeb.076216. Epub 2012 Sep 20.

Abstract

Many endogenous factors influence thermal tolerance of insects. Among these, age contributes an important source of variation. Heat tolerance is typically high in newly eclosed insects, before declining dramatically. It is not known whether this phenomenon relates to cold tolerance also. In addition, the underlying mechanisms of this variation are unresolved. In this study, we tested whether cold tolerance declines in Drosophila melanogaster females aged from 0 to 5 days. We also assessed whether expression (basal and induced) of eight stress genes (hsp22, hsp23, hsp40, hsp68, hsp70Aa, hsp83, Starvin and Frost) varied post-eclosion in correspondence with changes found in cold tolerance. We report that cold tolerance was very high at eclosion and then it rapidly declined in young flies. hsp23 and hsp68 showed a dramatic age-related variation of basal expression that was associated with cold tolerance proxies. Significant age-related plasticity of cold-induced expression was also found for hsp22, hsp23, hsp68, hsp70Aa, Frost and Starvin. Induced expression of hsp22 and hsp70Aa was high in newly enclosed phenotypes before declining dramatically, whilst opposite age-related patterns were found for hsp23, hsp68, Starvin and Frost. This study shows a marked within-stage variation in cold tolerance. The involvement of the stress genes in setting basal thermal tolerance is discussed.

摘要

许多内源性因素影响昆虫的热耐受性。其中,年龄是一个重要的变异来源。刚羽化的昆虫热耐受性通常较高,然后急剧下降。目前还不清楚这种现象是否与耐寒性有关。此外,这种变异的潜在机制尚未解决。在这项研究中,我们测试了 0 至 5 天龄的黑腹果蝇雌性的耐寒性是否下降。我们还评估了八个应激基因(hsp22、hsp23、hsp40、hsp68、hsp70Aa、hsp83、Starvin 和 Frost)的表达(基础表达和诱导表达)是否在羽化后随耐寒性的变化而变化。我们报告说,刚羽化时的耐寒性非常高,然后在年轻的果蝇中迅速下降。hsp23 和 hsp68 的基础表达与耐寒性指标呈显著的年龄相关变化。hsp22、hsp23、hsp68、hsp70Aa、Frost 和 Starvin 的冷诱导表达也存在显著的年龄相关可塑性。刚羽化的表型中 hsp22 和 hsp70Aa 的诱导表达较高,然后急剧下降,而 hsp23、hsp68、Starvin 和 Frost 则呈现相反的年龄相关模式。本研究表明,在同一阶段耐寒性有明显的变化。还讨论了应激基因在设定基础热耐受性方面的作用。

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