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对保护和渔业管理至关重要的运动特征:以红鲷鱼为例。

Movement traits important to conservation and fisheries management: an example with red snapper.

作者信息

Lowerre-Barbieri Susan K, Wall Kara, Friess Claudia, Keenan Sean, Lembke Chad, Tarnecki Joseph, Williams-Grove Laura Jay, Patterson William F

机构信息

Fisheries and Aquatic Sciences, University of Florida, 7922 NW 71st Street, Gainesville, FL, 32653, USA.

Florida Fish and Wildlife Research Institute, 100 8th Avenue SE, St. Petersburg, FL, 33701, USA.

出版信息

Sci Rep. 2025 Feb 7;15(1):4614. doi: 10.1038/s41598-025-86892-1.

Abstract

Site fidelity, space use, and dispersal are commonly estimated with acoustic telemetry (AT) to help inform management and conservation. These behaviors can change with age, habitat and environmental conditions and our ability to accurately estimate them is affected by a study's inference power (design components that affect how accurately detection data represents a species' movements). Red snapper (Lutjanus campechanus) have been extensively studied with AT over a range of time periods and regions, although primarily at artificial reefs (AR). Here, we use large (> 12 km) acoustic positioning arrays to monitor a study area with low-relief hard bottom, a reef ledge, and an AR. Annual fidelity to the study area was estimated to be 54%, but estimates were affected by fate uncertainty and model choice. Emigration increased with storms and in early summer. Abundance was greatest at small habitat patches but space use did not scale with patch size. Although uncommon, long-distance movements and connectivity between habitats occurred, with a maximum dispersal of 206 km. Previous red snapper AT studies varied greatly in array size, study duration, and number of fish tracked, impacting inference power. This made it difficult to compare results and highlights the need for greater standardization in AT methods.

摘要

地点保真度、空间利用和扩散通常通过声学遥测(AT)来估计,以辅助管理和保护决策。这些行为会随年龄、栖息地和环境条件而变化,而我们准确估计它们的能力会受到研究的推断力(影响检测数据准确反映物种移动程度的设计要素)的影响。红鲷(Lutjanus campechanus)在多个时间段和区域都已通过声学遥测进行了广泛研究,不过主要是在人工鱼礁(AR)区域。在此,我们使用大型(> 12公里)声学定位阵列来监测一个具有低起伏硬底质、礁架和人工鱼礁的研究区域。对该研究区域的年度保真度估计为54%,但估计值受到命运不确定性和模型选择的影响。随着风暴和初夏的到来,迁出率增加。在小栖息地斑块处丰度最高,但空间利用与斑块大小无关。尽管不常见,但仍出现了长距离移动以及不同栖息地之间的连通性,最大扩散距离为206公里。此前关于红鲷的声学遥测研究在阵列大小、研究持续时间和跟踪的鱼数量方面差异很大,影响了推断力。这使得结果难以比较,并凸显了声学遥测方法需要更大程度标准化的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f90c/11805965/f827bbdfa299/41598_2025_86892_Fig1_HTML.jpg

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