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鲷科鱼类时间生态位分隔的年节律与不同环境变量相关。

Annual rhythms of temporal niche partitioning in the Sparidae family are correlated to different environmental variables.

机构信息

Institute for Environmental Protection and Research (ISPRA), Via del Cedro 38, 57122, Livorno, Italy.

Department of Biology and Ecology of Fishes, Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Müggelseedamm 310, Berlin, Germany.

出版信息

Sci Rep. 2019 Feb 8;9(1):1708. doi: 10.1038/s41598-018-37954-0.

Abstract

The seasonal timing of recurring biological processes is essential for organisms living in temperate regions. While ample knowledge of these processes exists for terrestrial environments, seasonal timing in the marine environment is relatively understudied. Here, we characterized the annual rhythm of habitat use in six fish species belonging to the Sparidae family, highlighting the main environmental variables that correlate to such rhythms. The study was conducted at a coastal artificial reef through a cabled observatory system, which allowed gathering underwater time-lapse images every 30 minutes consecutively over 3 years. Rhythms of fish counts had a significant annual periodicity in four out of the six studied species. Species-specific temporal patterns were found, demonstrating a clear annual temporal niche partitioning within the studied family. Temperature was the most important environmental variable correlated with fish counts in the proximity of the artificial reef, while daily photoperiod and salinity were not important. In a scenario of human-induced rapid environmental change, tracking phenological shifts may provide key indications about the effects of climate change at both species and ecosystem level. Our study reinforces the efficacy of underwater cabled video-observatories as a reliable tool for long-term monitoring of phenological events.

摘要

生物周期性的季节性时间安排对生活在温带地区的生物至关重要。虽然人们对陆地环境中的这些过程有了充分的了解,但对海洋环境中的季节性时间安排的研究相对较少。在这里,我们描述了属于鲷科的六种鱼类的栖息地使用的年度节律,重点介绍了与这些节律相关的主要环境变量。该研究是通过一个有缆观测系统在沿海人工鱼礁上进行的,该系统允许在三年内连续每 30 分钟采集一次水下延时图像。在研究的六种鱼类中有四种鱼类的计数存在明显的年度周期性。发现了物种特异性的时间模式,表明在所研究的鱼类科内存在明显的年度时间生态位分化。在人工鱼礁附近,温度是与鱼类计数最相关的最重要环境变量,而每日光周期和盐度则不重要。在人为引起的快速环境变化的情况下,跟踪物候变化可能会提供关于气候变化对物种和生态系统水平影响的关键指示。我们的研究证实了水下有缆视频观测站作为长期监测物候事件的可靠工具的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5f5/6368640/4591a67906e2/41598_2018_37954_Fig1_HTML.jpg

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