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描述海洋鱼类的个体发育生境转变:推进海洋空间管理的新兴方法。

Characterizing ontogenetic habitat shifts in marine fishes: advancing nascent methods for marine spatial management.

机构信息

Department of Environment and Agriculture, Curtin University, Kent Street, Bentley, Western Australia, 6845, Australia.

Australian Institute of Marine Science, The University of Western Australia, 35 Stirling Highway, Crawley, Western Australia, 6009, Australia.

出版信息

Ecol Appl. 2017 Sep;27(6):1776-1788. doi: 10.1002/eap.1565. Epub 2017 Jul 7.

Abstract

Niche requirements and habitat resource partitioning by conspecific fishes of different sizes are significant knowledge gaps in the species distribution modelling domain. Management actions and operations are typically concentrated on static habitats, or specific areas of interest, without considering movement patterns of species associated with ontogenetic shifts in habitat usage. Generalized additive models were used to model the body-length-habitat relationships of six fish species. These models were used to identify subsets of environmental parameters that drive and explain the continuous length-habitat relationships for each of the study species, which vary in their degree of ecological and/or commercial importance. Continuous predictive maps of the length distributions for each of the six study species across approximately 200 km of the study area were created from these models. The spatial patterns in habitat partitioning by individuals of different body lengths for all six study species provide strong evidence for ontogenetic shifts. This highlights the importance of considering ontogenetic processes for marine spatial management. Importantly, predictive hotspot maps were created that identify potential areas that accumulate individuals of similar life stages of multiple species (e.g., multispecies nursery areas). In circumstances where limited resources are available for monitoring and management of fish resources, predictive modelling is a valuable tool for studying previously overlooked processes such as ontogenetic habitat shifts. Predictive modelling provides crucial information that elucidates spatial patterns in community composition across mosaics of benthic habitats. This novel technique can contribute to the spatial management of coastal fish and fisheries by identifying areas that are important for different life history stages of multiple fish species.

摘要

同种种群不同大小鱼类的小生境需求和栖息地资源分配是物种分布模型领域的重要知识空白。管理行动和作业通常集中在静态栖息地或特定的感兴趣区域,而不考虑与栖息地使用的阶段性变化相关联的物种的运动模式。广义加性模型被用于模拟 6 种鱼类的体长-栖息地关系。这些模型用于确定环境参数子集,这些参数驱动并解释了研究物种的连续长度-栖息地关系,这些关系在生态和/或商业重要性方面存在差异。从这些模型中为研究区域约 200 公里范围内的 6 种研究物种创建了体长分布的连续预测图。所有 6 种研究物种的个体体长的栖息地分割的空间模式为阶段性变化提供了有力的证据。这凸显了考虑海洋空间管理中的阶段性变化过程的重要性。重要的是,创建了预测热点图,以确定可能积累多个物种相似生命阶段个体的潜在区域(例如,多物种育苗区)。在监测和管理鱼类资源的资源有限的情况下,预测建模是研究先前被忽视的过程(如阶段性栖息地变化)的有价值的工具。预测建模提供了关键信息,阐明了底栖生境镶嵌体中群落组成的空间模式。这种新技术可以通过确定对多个鱼类物种不同生活史阶段重要的区域,为沿海鱼类和渔业的空间管理做出贡献。

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