海草栖息地作为珊瑚礁相关鱼类的苗圃:来自美国佛罗里达州干托图加斯国家公园最近建立的禁止捕捞海洋保护区及其附近鱼类群落的证据

IF 1.5 Q3 MARINE & FRESHWATER BIOLOGY
Kerry E. Flaherty-Walia, Brett Pittinger, T. Switzer, Sean F. Keenan
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引用次数: 2

摘要

世界各地的科学家和管理者越来越多地提倡使用海洋保护区(MPAs)来保护濒危鱼类资源。然而,大多数海洋保护区都是为了保护珊瑚礁而建立的,而非珊瑚礁栖息地,如海草,却很少得到考虑。2007年1月,在佛罗里达州的干托尔图加斯国家公园(DTNP)建立了一个名为研究自然区(RNA)的海洋保护区,作为一个禁止捕捞的海洋保护区,成为公园边界内第一个直接保护海草和珊瑚礁栖息地的海洋保护区。我们使用小网眼安的列斯z型陷阱进行了一项研究,以(1)表征海草和珊瑚礁栖息地的鱼类组合,(2)评估RNA与邻近开放使用区域之间是否存在群落结构差异。2009年秋季、2010年春季和2010年秋季3次采样,在129个站点共采集到38种3163只个体。不同采样事件和不同生境类型之间的鱼类组合差异显著,但RNA和开放利用区之间的差异不明显。与之前在DTNP中专注于大型鱼类的采样工作不同,z -陷阱针对的是小型礁石和海草相关鱼类。幼鱼Haemulon plumierii和Epinephelus morio对群落结构贡献较大,在海草生境中数量较多,可能是重要的育苗区。由于RNA在本研究进行前两年才建立起来,因此对幼鱼种群的好处可能还需要几年的时间才能显现出来,但本研究确定了在开发与珊瑚礁相关的禁捕海洋保护区时考虑海草栖息地的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seagrass Habitats as Nurseries for Reef-Associated Fish: Evidence from Fish Assemblages in and Adjacent to a Recently Established No-Take Marine Reserve in Dry Tortugas National Park, Florida, USA
Scientists and managers worldwide have increasingly advocated the use of marine protected areas (MPAs) to protect at—risk fish stocks. Most MPAs, however, have been established to protect reefs, while nonreef habitats, such as seagrasses, have received less consideration. In January 2007, an MPA called the Research Natural Area (RNA), was established as a no—take marine reserve in the Dry Tortugas National Park, Florida (DTNP), becoming the first MPA within the park boundaries to offer direct protection to seagrasses and reef habitat. We conducted a study using small— mesh Antillean Z—traps to (1) characterize fish assemblages in seagrass and reef habitats and (2) assess if differences in community structure existed between the RNA and adjacent open—use areas. Over 3 sampling events (Fall 2009, Spring 2010, Fall 2010), 3,163 individuals of 38 species were collected from 129 stations. Fish assemblages differed significantly among sampling events and between habitat types, but no differences were evident between the RNA and open—use areas. Unlike previous sampling efforts that focused on larger—bodied fish in the DTNP, Z—traps targeted small—bodied reef— and seagrass—associated fishes. Juvenile Haemulon plumierii and Epinephelus morio strongly contributed to community structure and were more abundant in seagrass habitats, which may serve as an important nursery area. Because the RNA was only established 2 years before this study was conducted, it could still be several years before benefits to the juvenile population become evident, but this study establishes the importance of considering seagrass habitats when developing a reef—associated no—take marine reserve.
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来源期刊
GULF AND CARIBBEAN RESEARCH
GULF AND CARIBBEAN RESEARCH Environmental Science-Water Science and Technology
CiteScore
1.60
自引率
0.00%
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5
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