Spatial distribution and habitat relationship of sea urchin assemblages (Echinodermata: Echinoidea) in Hong Kong waters

IF 2.1 3区 地球科学 Q2 OCEANOGRAPHY Continental Shelf Research Pub Date : 2023-12-29 DOI:10.1016/j.csr.2023.105170
Sam King Fung Yiu , Sheena Suet-Wah Chung
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Abstract

Sea urchins are important components of marine ecosystems and can act as bioindicators, reflecting the health of reefs. The spatial patterns of sea urchins are largely shaped by the type of habitat. In Hong Kong, coral communities are divided into two distinct types: reef-building coral habitats and non-reef-building coral habitats. In summer 2020, a qualitative survey was conducted using SCUBA at 56 sites across eastern and western waters, recording a total of 11 species from 6 families of sea urchins. Out of these 56 sites, 14 were selected for a quantitative survey to investigate the relationship between sea urchin assemblages and the two types of coral habitat. We found that the species composition of sea urchins differed significantly between the two habitats, and the presence of sand was a critical factor influencing the species composition of sea urchins. Sand coverage had a positive effect on Salmasic sphaeroides abundance but a negative effect on the abundance of Diadema setosum and Heliocidaris crassispina. The distribution of sea urchins across different degrees of sand coverage may be associated with food availability or species-specific adaptive behaviour, likely due to niche preferences.

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香港水域海胆群(棘皮动物门:棘皮动物纲)的空间分布和生境关系
海胆是海洋生态系统的重要组成部分,可作为生物指标反映珊瑚礁的健康状况。海胆的空间分布模式主要取决于栖息地的类型。在香港,珊瑚群落分為造礁珊瑚生境和非造礁珊瑚生境兩種。在 2020 年夏季,我們在東部和西部水域的 56 個地點,利用水肺潛水儀器進行定性調查,共錄得 6 科 11 種海膽。在这 56 个地点中,我们选择了 14 个地点进行定量调查,以研究海胆群与两种珊瑚生境之间的关系。我们发现,两种栖息地的海胆物种组成差异显著,而沙子的存在是影响海胆物种组成的关键因素。沙子覆盖率对 Salmasic sphaeroides 有积极影响,但对 Diadema setosum 和 Heliocidaris crassispina 的数量有消极影响。海胆在不同沙覆盖度下的分布可能与食物的可获得性或物种特有的适应行为有关,很可能是由于生态位偏好造成的。
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来源期刊
Continental Shelf Research
Continental Shelf Research 地学-海洋学
CiteScore
4.30
自引率
4.30%
发文量
136
审稿时长
6.1 months
期刊介绍: Continental Shelf Research publishes articles dealing with the biological, chemical, geological and physical oceanography of the shallow marine environment, from coastal and estuarine waters out to the shelf break. The continental shelf is a critical environment within the land-ocean continuum, and many processes, functions and problems in the continental shelf are driven by terrestrial inputs transported through the rivers and estuaries to the coastal and continental shelf areas. Manuscripts that deal with these topics must make a clear link to the continental shelf. Examples of research areas include: Physical sedimentology and geomorphology Geochemistry of the coastal ocean (inorganic and organic) Marine environment and anthropogenic effects Interaction of physical dynamics with natural and manmade shoreline features Benthic, phytoplankton and zooplankton ecology Coastal water and sediment quality, and ecosystem health Benthic-pelagic coupling (physical and biogeochemical) Interactions between physical dynamics (waves, currents, mixing, etc.) and biogeochemical cycles Estuarine, coastal and shelf sea modelling and process studies.
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