中尺度海洋学特征驱动了共同发生的河口机会蟹连通性的不同模式

IF 1.9 2区 农林科学 Q2 FISHERIES
Daniel E. Hewitt, Hayden T. Schilling, Roshan Hanamseth, Jason D. Everett, Junde Li, Moninya Roughan, Daniel D. Johnson, Iain M. Suthers, Matthew D. Taylor
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引用次数: 7

摘要

幼虫的扩散和连通性对渔业管理具有重要意义,特别是对生命周期受海洋边界流影响的物种。巨型泥蟹(Scylla serrata)和蓝游泳蟹(Portunus armatus)是两种河口梭子蟹(梭子蟹科),在澳大利亚东部支持重要的商业和娱乐收获。巨型泥蟹迁移到沿海水域产卵,而蓝泳蟹主要在河口产卵,它们偶尔迁移到沿海水域产卵,随后幼虫在东澳大利亚海流(EAC)扩散。在这里,我们将高分辨率海洋学模型与拉格朗日粒子跟踪框架相结合,模拟了幼虫的扩散,并确定了该地区种群连通性的程度。我们的模拟表明,大尺度的连通性(~ 40-400 km),以河口间的高连通性为特征。总体而言,我们的研究结果表明,这两个物种的源汇结构都是由北向南的,来自北方的粒子的贡献在51%到99%之间。对某一河口的招募取决于是否接近东海的中尺度海洋学特征。最值得注意的是,东非共同体的分离在该地区北部/南部的产卵和定居之间充当了招募的障碍。这极大地限制了这些物种的跨管辖连通性,特别是蓝泳蟹,可能是由于比巨型泥蟹更短的远洋幼虫期。我们的研究结果为这些物种的评估和管理提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mesoscale oceanographic features drive divergent patterns in connectivity for co-occurring estuarine portunid crabs

Mesoscale oceanographic features drive divergent patterns in connectivity for co-occurring estuarine portunid crabs

Larval dispersal and connectivity have important implications for fisheries management, especially for species with life cycles influenced by ocean boundary currents. Giant Mud Crab (Scylla serrata) and Blue Swimmer Crab (Portunus armatus) are two estuarine portunid crabs (Family: Portunidae) that support significant commercial and recreational harvest in eastern Australia. Giant Mud Crab migrate to coastal waters to spawn, and while Blue Swimmer Crab spawn primarily within estuaries they occasionally migrate to coastal waters to spawn, followed by larval dispersal in the East Australian Current (EAC). Here, we coupled a high-resolution oceanographic model with a Lagrangian particle tracking framework to simulate larval dispersal and determine the extent of population connectivity in this region. Our simulations indicate broad-scale connectivity (~40–400 km), characterised by high inter-estuary connectivity. Overall, our results suggest a north-to-south source-sink structure for both species, with contributions of particles from the north ranging from 51% to 99%. Recruitment to a given estuary is dependent on the proximity of mesoscale oceanographic features of the EAC. Most notably, the EAC separation acts as a barrier to recruitment between spawning and settlement to the north/south of this region. This significantly limits interjurisdictional connectivity for these species, especially Blue Swimmer Crab, likely due to a shorter pelagic larval duration than Giant Mud Crab. Our results provide evidence to inform the assessment and management of these species.

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来源期刊
Fisheries Oceanography
Fisheries Oceanography 农林科学-海洋学
CiteScore
5.00
自引率
7.70%
发文量
50
审稿时长
>18 weeks
期刊介绍: The international journal of the Japanese Society for Fisheries Oceanography, Fisheries Oceanography is designed to present a forum for the exchange of information amongst fisheries scientists worldwide. Fisheries Oceanography: presents original research articles relating the production and dynamics of fish populations to the marine environment examines entire food chains - not just single species identifies mechanisms controlling abundance explores factors affecting the recruitment and abundance of fish species and all higher marine tropic levels
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