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光照周期适应解读调节大西洋鲑鱼的物候时机。

Adaptive photoperiod interpretation modulates phenological timing in Atlantic salmon.

机构信息

Institute of Marine Research (IMR), Matre Aquaculture Research Station, Matredal, Norway.

出版信息

Sci Rep. 2023 Feb 14;13(1):2618. doi: 10.1038/s41598-023-27583-7.

Abstract

Photoperiod, the portion of 24-h cycle during which an organism is exposed to illumination, is an important phenological cue in many animals. However, despite its influence on critical biological processes, there remain many unknowns regarding how variations in light intensity translate into perceived photoperiod. This experiment examined how light intensity variations affect perceived photoperiod in Atlantic salmon (Salmo salar) to determine whether photoperiod interpretation is, a) fixed such that anything above a minimum detection threshold is regarded as 'illumination', or b) adaptive and varies with recent light exposure. To do this we compared the frequency of smoltification and sexual maturation between groups of male parr which were exposed to one of eight light regimes on a 12:12 cycling regime (12-hour day/12-hour night). The eight regimes were divided into two treatments, four with 'High' daytime light intensity and four with 'Low' daytime light intensity. The 'High' and 'Low' intensity treatments were each sub-divided into four groups for which the subjective 'night' light intensity was 100%, 10%, 1% and 0% of the daytime light intensity, with four replicate tanks of each treatment. The results show that above a minimum detection threshold, Atlantic salmon have adaptive photoperiod interpretation which varies with recent light exposure, and that adaptive photoperiod interpretation modulates the timing of the parr-smolt transformation and sexual maturation. Further, we show that photoperiod interpretation varies between closely related families. Given the influence of phenological timing on species survival, our results reveal a critical role for integration of photoperiod interpretation in attempts to understand how geographically shifting thermal niches due to climate change will affect future populations.

摘要

光周期是指生物体暴露在光照下的 24 小时周期的一部分,是许多动物重要的物候线索。然而,尽管它对关键的生物过程有影响,但对于光强度的变化如何转化为感知的光周期,仍有许多未知之处。本实验研究了光强度变化如何影响大西洋鲑(Salmo salar)的感知光周期,以确定光周期的解释是 a)固定的,即任何高于最小检测阈值的光都被视为“光照”,还是 b)适应性的,并随最近的光照暴露而变化。为此,我们比较了暴露在 12:12 循环光照条件下的 8 种光照制度中的 8 种光照制度下的雄性幼鱼的变态和性成熟的频率。这 8 种制度分为两种处理,4 种白天光照强度高,4 种白天光照强度低。“高”和“低”强度处理各分为 4 组,主观“夜间”光照强度分别为白天光照强度的 100%、10%、1%和 0%,每种处理有 4 个重复水槽。结果表明,在最低检测阈值以上,大西洋鲑具有适应性的光周期解释,这种解释随最近的光照暴露而变化,适应性的光周期解释调节幼鱼-变态的时间和性成熟。此外,我们还表明,光周期的解释在密切相关的家族之间存在差异。鉴于物候时间对物种生存的影响,我们的研究结果揭示了光周期解释在试图理解由于气候变化而导致的地理上转移的热生态位将如何影响未来种群方面的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c2b/9929253/180f9c38ac33/41598_2023_27583_Fig1_HTML.jpg

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