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早期接触紫外线辐射会导致端粒缩短,从而导致晚年身体状况较差。

Early exposure to UV radiation causes telomere shortening and poorer condition later in life.

机构信息

School of Biological Sciences, The University of Queensland, Brisbane, QLD 4072, Australia.

出版信息

J Exp Biol. 2022 Sep 1;225(17). doi: 10.1242/jeb.243924. Epub 2022 Sep 2.

Abstract

Determining the contribution of elevated ultraviolet-B radiation (UVBR; 280-315 nm) to amphibian population declines is being hindered by a lack of knowledge about how different acute UVBR exposure regimes during early life-history stages might affect post-metamorphic stages via long-term carryover effects. We acutely exposed tadpoles of the Australian green tree frog (Litoria caerulea) to a combination of different UVBR irradiances and doses in a multi-factorial laboratory experiment, and then reared them to metamorphosis in the absence of UVBR to assess carryover effects in subsequent juvenile frogs. Dose and irradiance of acute UVBR exposure influenced carryover effects into metamorphosis in somewhat opposing manners. Higher doses of UVBR exposure in larvae yielded improved rates of metamorphosis. However, exposure at a high irradiance resulted in frogs metamorphosing smaller in size and in poorer condition than frogs exposed to low and medium irradiance UVBR as larvae. We also demonstrate some of the first empirical evidence of UVBR-induced telomere shortening in vivo, which is one possible mechanism for life-history trade-offs impacting condition post-metamorphosis. These findings contribute to our understanding of how acute UVBR exposure regimes in early life affect later life-history stages, which has implications for how this stressor may shape population dynamics.

摘要

确定升高的紫外线-B 辐射(UVBR;280-315nm)对两栖动物种群减少的贡献,受到缺乏知识的阻碍,即不知道在早期生活史阶段不同的急性 UVBR 暴露情况如何通过长期的代际效应影响变态后的阶段。我们在一项多因素实验室实验中急性暴露于澳大利亚绿蛙(Litoria caerulea)的蝌蚪于不同的 UVBR 辐照度和剂量的组合中,然后在没有 UVBR 的情况下将它们饲养到变态,以评估随后的幼蛙中的代际效应。急性 UVBR 暴露的剂量和辐照度以略有相反的方式影响变态的代际效应。幼虫中更高剂量的 UVBR 暴露导致变态率提高。然而,与幼虫期暴露于低和中辐照度 UVBR 的青蛙相比,高辐照度的暴露导致青蛙变态时体型较小且状况较差。我们还展示了一些体内 UVBR 诱导端粒缩短的第一个经验证据,这是影响变态后生活史阶段状况的生活史权衡的可能机制之一。这些发现有助于我们理解早期生活中的急性 UVBR 暴露情况如何影响后期的生活史阶段,这对这种应激源如何塑造种群动态具有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a63/9482364/3e2a45b4f54b/jexbio-225-243924-g1.jpg

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