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海面温度决定了沿海峡湾系统中大西洋鳕鱼的移动和栖息地连通性。

Sea surface temperature dictates movement and habitat connectivity of Atlantic cod in a coastal fjord system.

作者信息

Staveley Thomas A B, Jacoby David M P, Perry Diana, van der Meijs Felix, Lagenfelt Ingvar, Cremle Mikael, Gullström Martin

机构信息

Department of Ecology, Environment and Plant Sciences Stockholm University Stockholm Sweden.

AquaBiota Water Research Stockholm Sweden.

出版信息

Ecol Evol. 2019 Jul 21;9(16):9076-9086. doi: 10.1002/ece3.5453. eCollection 2019 Aug.

Abstract

While movements of organisms have been studied across a myriad of environments, information is often lacking regarding spatio-seasonal patterning in complex temperate coastal systems. Highly mobile fish form an integral part of marine food webs providing linkages within and among habitats, between patches of habitats, and at different life stages. We investigated how movement, activity, and connectivity patterns of Atlantic cod () are influenced by dynamic environmental conditions. Movement patterns of 39 juvenile and subadult Atlantic cod were assessed in two coastal sites in the Swedish Skagerrak for 5 months. We used passive acoustic telemetry and network analysis to assess seasonal and spatial movement patterns of cod and their relationships to different environmental factors, using statistical correlations, analysis of recurrent spatial motifs, and generalized linear mixed models. Temperature, in combination with physical barriers, precludes significant connectivity (complex motifs) within the system. Sea surface temperature had a strong influence on connectivity (node strength, degree, and motif frequency), where changes from warmer summer waters to colder winter waters significantly reduced movement activity of fish. As the seasons changed, movement of fish gradually decreased from large-scale (km) linkages in the summer to more localized movement patterns in the winter (limited to 100s m). Certain localized areas, however, were identified as important for connectivity throughout the whole study period, likely due to these multiple-habitat areas fulfilling functions required for foraging and shelter. This study provides new knowledge regarding inshore movement dynamics of juvenile and subadult Atlantic cod that use complex, coastal fjord systems. The findings show that connectivity, seasonal patterns in particular, should be carefully considered when selecting conservation areas to promote marine stewardship.

摘要

虽然已经在无数环境中研究了生物的运动,但在复杂的温带沿海系统中,关于时空季节性模式的信息往往匮乏。高度洄游的鱼类是海洋食物网的重要组成部分,它们在栖息地内部和之间、不同栖息地斑块之间以及不同生命阶段提供了联系。我们研究了大西洋鳕鱼()的运动、活动和连通性模式是如何受到动态环境条件影响的。在瑞典斯卡格拉克海峡的两个沿海地点,对39条幼年和亚成年大西洋鳕鱼的运动模式进行了为期5个月的评估。我们使用被动声学遥测和网络分析,通过统计相关性、循环空间模式分析和广义线性混合模型,评估鳕鱼的季节性和空间运动模式及其与不同环境因素的关系。温度与物理屏障共同作用,限制了系统内的显著连通性(复杂模式)。海表面温度对连通性(节点强度、度和模式频率)有强烈影响,从温暖的夏季海水到寒冷的冬季海水的变化显著降低了鱼类的运动活动。随着季节变化,鱼类的运动逐渐从夏季的大规模(千米)联系减少到冬季更局部的运动模式(限于几百米)。然而,某些局部区域在整个研究期间被确定为对连通性很重要,这可能是因为这些多栖息地区域满足了觅食和庇护所需的功能。这项研究提供了关于利用复杂沿海峡湾系统的幼年和亚成年大西洋鳕鱼近岸运动动态的新知识。研究结果表明,在选择保护区以促进海洋管理时,应仔细考虑连通性,特别是季节性模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef9d/6706200/4397defca9f1/ECE3-9-9076-g001.jpg

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