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Marine biorhythms: bridging chronobiology and ecology

机译:海洋生物节律:将年代生物学和生态学联系起来

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摘要

Marine organisms adapt to complex temporal environments that include daily, tidal, semi-lunar, lunar and seasonal cycles. However, our understanding of marine biological rhythms and their underlying molecular basis is mainly confined to a few model organisms in rather simplistic laboratory settings. Here, we use new empirical data and recent examples of marine biorhythms to highlight how field ecologists and laboratory chronobiologists can complement each other's efforts. First, with continuous tracking of intertidal shorebirds in the field, we reveal individual differences in tidal and circadian foraging rhythms. Second, we demonstrate that shorebird species that spend 8–10 months in tidal environments rarely maintain such tidal or circadian rhythms during breeding, likely because of other, more pertinent, temporally structured, local ecological pressures such as predation or social environment. Finally, we use examples of initial findings from invertebrates (arthropods and polychaete worms) that are being developed as model species to study the molecular bases of lunar-related rhythms. These examples indicate that canonical circadian clock genes (i.e. the homologous clock genes identified in many higher organisms) may not be involved in lunar/tidal phenotypes. Together, our results and the examples we describe emphasize that linking field and laboratory studies is likely to generate a better ecological appreciation of lunar-related rhythms in the wild.This article is part of the themed issue ‘Wild clocks: integrating chronobiology and ecology to understand timekeeping in free-living animals’.
机译:海洋生物适应复杂的时间环境,包括每日,潮汐,半月,月球和季节周期。但是,我们对海洋生物节律及其潜在分子基础的理解主要限于在相当简单的实验室环境中的一些模型生物。在这里,我们使用新的经验数据和海洋生物节律的最新例子来强调现场生态学家和实验室年代生物学家如何相互补充。首先,通过在田间不断跟踪潮间带水鸟,我们揭示了潮汐和昼夜觅食节律的个体差异。其次,我们证明,在潮汐环境中度过8-10个月的shore鸟物种在繁殖期间很少保持这种潮汐或昼夜节律,这可能是由于其他更相关,时间结构更强的局部生态压力(例如掠夺或社会环境)所致。最后,我们以无脊椎动物(节肢动物和多毛蠕虫)的初步发现为例,这些无脊椎动物正在被开发为模型物种,以研究与月球有关的节律的分子基础。这些例子表明规范的昼夜节律时钟基因(即在许多高级生物中鉴定出的同源时钟基因)可能不涉及月球/潮汐表型。总之,我们的结果和所描述的例子都强调,将野外研究与实验室研究联系起来可能会在野外更好地产生与月球有关的节律。本文是“野生时钟:将年代生物学与生态学融为一体”的主题部分。了解自由活动动物的计时。

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