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Trawl ban in a heavily exploited marine environment: Responses in population dynamics of four stomatopod species

机译:在严重开发的海洋环境中禁止拖网:四种气孔足类物种的种群动态响应

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摘要

Intensive trawling activities in Hong Kong waters have seriously depleted fishery resources and damaged marine benthic habitats over the last four decades. To minimize further destruction and rehabilitate fishery resources, the Hong Kong Government implemented a permanent territory-wide trawling closure on 31 December 2012. Such a trawl ban creates a unique opportunity to investigate recoveries in ecosystem structure and function following a major shift in disturbance regime by removing impacts from a major gear. This study was designed to test the hypothesis that dominant predatory mantis shrimps, including Harpiosquilla harpax, Miyakella nepa, Oratosquillina interrupta, and Oratosquilla oratoria would show signs of recovery following the trawl ban. Their population dynamics were investigated before and after the trawl ban. The results showed that their mean weight, mean carapace length and proportion of large-sized individuals increased significantly 3.5 years after the trawl ban, whilst their abundance, biomass and maximum length remained unchanged. This study suggests that the stomatopod assemblage in the human-dominated Hong Kong waters shows some initial signs of possible recovery following the trawl ban but also highlights the complexity of implementing fishery management and detecting changes resulted from management measures in a heavily urbanized seascape where many biotic and abiotic factors can influence their population dynamics.
机译:在过去的40年中,在香港水域进行的密集拖网活动严重消耗了渔业资源,破坏了海洋底栖生境。为了最大程度地减少进一步的破坏和恢复渔业资源,香港政府于2012年12月31日实施了永久性的全网拖网捕捞禁令。在扰动制度发生重大变化之后,这种拖网禁令为调查生态系统结构和功能的恢复提供了独特的机会。消除主要设备的影响。这项研究旨在检验以下假设,即捕捞禁令后,占主导地位的捕食性螳螂虾(包括Harpiosquilla harpax,Miyakella nepa,Oratosquillina interrupta和Oratosquilla Oratoria)会显示出恢复迹象。在禁止拖网之前和之后调查了它们的种群动态。结果表明,拖网禁令后3.5年,它们的平均体重,平均甲壳长度和大型个体的比例显着增加,而其丰度,生物量和最大长度保持不变。这项研究表明,在以人类为主导的香港水域中,拟兽足类动物的集聚显示出一些初步迹象,表明在拖网捕捞后可能会恢复原状,但同时也突显了在高度城市化的海景中实施渔业管理和发现管理措施带来的变化的复杂性,其中许多生物非生物因素会影响其种群动态。

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