Key Laboratory of Marine Ecosystem and Biogeochemistry, State Oceanic Administration, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou 310012, China; State Key Laboratory of Satellite Ocean Environment Dynamics, Hangzhou 310012, China.
Key Laboratory of Marine Ecosystem and Biogeochemistry, State Oceanic Administration, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou 310012, China.
Mar Pollut Bull. 2019 May;142:475-483. doi: 10.1016/j.marpolbul.2019.03.065. Epub 2019 Apr 7.
The impacts of fish cage culture and suspended oyster culture on macrobenthic communities were investigated in Xiangshan Bay, China, on a seasonal basis from January to October of 2015. Samples were collected from a fish cage farm, a suspended oyster farm, and two corresponding reference sites. Two-way ANOVA results showed that species richness, abundance, biomass, and Shannon-Wiener diversity differed significantly between the four different investigated areas, and different seasons as well. Cluster analysis showed that macrobenthic community composition in the fish and oyster culture areas significantly differed from that in the reference sites, respectively. Trophic structure of macrobenthos in the fish and oyster culture areas mostly clustered together owing to higher abundance and biomass of surface-deposit feeders and carnivores. The macrobenthic communities and feeding guilds correlated highly with environmental factors, such as bottom water chlorophyll a and nutrients, as well as sediment total organic carbon. Although integrated multi-trophic aquaculture is regarded as a suitable approach to coordinate desirable economic, social, and environmentally sustainable outcomes, coastal ecosystems may suffer from large-scale nutrient enrichment due to aquaculture and other human activities, which should not be considered in isolation.
2015 年 1 月至 10 月,以季节性为基础,在中国象山湾调查了鱼类养殖笼和悬浮式牡蛎养殖对大型底栖动物群落的影响。从鱼类养殖笼场、悬浮式牡蛎养殖场和两个相应的对照点采集样本。双因素方差分析结果表明,物种丰富度、丰度、生物量和香农-威纳多样性在四个不同的调查区域之间以及不同季节均有显著差异。聚类分析表明,鱼类和牡蛎养殖区的大型底栖动物群落组成与对照点显著不同。由于表层沉积物食者和肉食者的丰度和生物量较高,鱼类和牡蛎养殖区的底栖动物营养结构大多聚集在一起。大型底栖动物群落和摄食类群与环境因素密切相关,如底层水叶绿素 a 和营养物质以及沉积物总有机碳。尽管综合多营养水产养殖被认为是协调理想的经济、社会和环境可持续成果的一种合适方法,但由于水产养殖和其他人类活动,沿海生态系统可能会受到大规模营养盐富集的影响,而不能孤立地考虑这些因素。