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Report of epibenthic macrofauna found from Haima cold seeps and adjacent deep-sea habitats,South China Sea 被引量:4
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作者 Dong Dong Xinzheng Li +7 位作者 Mei Yang Lin Gong Yang Li Jixing Sui Zhibin Gan Qi Kou Ning Xiao Junlong Zhang 《Marine Life Science & Technology》 2021年第1期1-12,共12页
This work reports on a preliminary taxonomic study of epibenthic macroinvertebrates collected or observed by underwater video at the Haima cold seeps and in adjacent deep-sea habitats,including a mud volcano feld and ... This work reports on a preliminary taxonomic study of epibenthic macroinvertebrates collected or observed by underwater video at the Haima cold seeps and in adjacent deep-sea habitats,including a mud volcano feld and Ganquan Plateau,during an expedition in the South China Sea by the Chinese-manned submersible Shenhai Yongshi in May 2018.A total of 41 species belonging to 6 phyla were identifed,among which 34 species were collected from the Haima cold seeps.Mollusks and crustaceans that are specialized in reducing habitats were predominant in biotopes of the Haima cold seeps,whereas sponges and cold-water corals and their commensals were prominent in communities of the mud volcano feld and the slopes of Ganquan Plateau.The distribution and faunal composition of each taxonomic group are discussed. 展开更多
关键词 Cold seep Mud volcano Ganquan plateau epibenthic macroinvertebrates Faunal composition South China Sea
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Intensive use of an intertidal mudflat by foraging adult American horseshoe crabs Limulus polyphemus in the Great Bay estuary, New Hampshire 被引量:4
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作者 Wan-Jean LEE 《Current Zoology》 SCIE CAS CSCD 北大核心 2010年第5期611-617,共7页
Although concerns about harvesting levels of the American Horseshoe Crab, Limulus polyphemus have prompted increased research into its ecology, current understanding of the species' foraging ecology is mostly limited... Although concerns about harvesting levels of the American Horseshoe Crab, Limulus polyphemus have prompted increased research into its ecology, current understanding of the species' foraging ecology is mostly limited to mid-Atlantic populations. This study elucidates the spatial and temporal pattern of Limulus foraging on an intertidal mudflat of a northern New Eng- land estuary. A novel survey method was used to monitor Limulus foraging activity without disturbing the sediment. A fixed 50 mx2 m transect was monitored with monthly surveys of the number of Limulus feeding pits from June to October 2009, May and June 2010. Snorkelling surveys were also carried out to observe individual behavior and examine the spatial scale of activity of individual animals. Results showed frequent and intensive use of the mudflat by foraging Limulus. Limulus were actively foraging within the survey area during all months surveyed. Foraging patterns exhibited a seasonal pattern with activity levels peaking in August 2009 and increased significantly towards the end of the study in June 2010. It was also shown that Limulus intertidal foraging persisted and peaked after the spring breeding season. Observations of foraging Limulus revealed that individual predators dig multiple pits within a single high tide, with little disturbance to the sediment in between. In addition to altering the perception of Limulus as a subtidal predator outside of the breeding season, findings from this study suggests a segregation of spawning and feeding habitats, thus underscoring the need to consider a wider range of critical habitats in the management of Limulus populations 展开更多
关键词 FORAGING epibenthic predator INTERTIDAL ESTUARY Disturbance
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近海双壳类筏式养殖对大型底栖动物群落影响综述 被引量:5
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作者 韩庆喜 刘东艳 《海洋通报》 CAS CSCD 北大核心 2014年第3期352-359,共8页
近海的双壳类筏式养殖,通过对海域水文、物理、化学条件的改变,从在对海岸带水域的生态系统产生影响。滤食性双壳类能够摄食有机质颗粒和浮游植物,产生的粪便或假粪能够加剧生物沉降,造成有机质在海底表面的大量聚集,造成养殖海域的有... 近海的双壳类筏式养殖,通过对海域水文、物理、化学条件的改变,从在对海岸带水域的生态系统产生影响。滤食性双壳类能够摄食有机质颗粒和浮游植物,产生的粪便或假粪能够加剧生物沉降,造成有机质在海底表面的大量聚集,造成养殖海域的有机质污染。养殖设施也会引起当地水文状况和海流的改变。双壳类养殖筏架对大型底上动物来说,可起到人工鱼礁相似的作用,为众多生物提供了栖息场所和庇护场所,增加了大型无脊椎动物和底层鱼类可利用的饵料数量,保护底上动物免受渔业捕捞等强烈扰动的影响,提高底栖鱼类和大型无脊椎动物的丰度和生产力。而对于底内动物来说,双壳类养殖对底栖群落的结构和组成的影响与海流的强度呈负相关,当养殖海域的海流强度达到一定程度,大量有机质将会被带走,对底内群落的影响将可以忽略不计,但在海流能量较小的情况下,有机质的富集将会造成底栖群落多样性和丰度的降低。正确的养殖选址结合科学的生态容量评估,以及多营养层次的综合养殖是维持双壳类养殖健康可持续发展的重要保证。 展开更多
关键词 双壳类养殖 底上群落 底内群落
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