Macrobenthic assemblage characteristics under stressed waters and ecological health assessment using AMBI and M-AMBI:a case study at the Xin'an River Estuary, Yantai, China

ZHOU Zhengquan LI Xiaojing CHEN Linlin LI Baoquan LIU Tiantian AI Binghua YANG Lufei LIU Bo CHEN Qiao

周政权, 李晓静, 陈琳琳, 李宝泉, 刘甜甜, 艾冰花, 杨陆飞, 刘博, 陈桥. 受扰动海域大型底栖动物群落特征及基于AMBI和M-AMBI指数的生态健康评价:以山东烟台辛安河口为例[J]. 海洋学报英文版, 2018, 37(5): 77-86. doi: 10.1007/s13131-018-1180-x
引用本文: 周政权, 李晓静, 陈琳琳, 李宝泉, 刘甜甜, 艾冰花, 杨陆飞, 刘博, 陈桥. 受扰动海域大型底栖动物群落特征及基于AMBI和M-AMBI指数的生态健康评价:以山东烟台辛安河口为例[J]. 海洋学报英文版, 2018, 37(5): 77-86. doi: 10.1007/s13131-018-1180-x
ZHOU Zhengquan, LI Xiaojing, CHEN Linlin, LI Baoquan, LIU Tiantian, AI Binghua, YANG Lufei, LIU Bo, CHEN Qiao. Macrobenthic assemblage characteristics under stressed waters and ecological health assessment using AMBI and M-AMBI:a case study at the Xin'an River Estuary, Yantai, China[J]. Acta Oceanologica Sinica, 2018, 37(5): 77-86. doi: 10.1007/s13131-018-1180-x
Citation: ZHOU Zhengquan, LI Xiaojing, CHEN Linlin, LI Baoquan, LIU Tiantian, AI Binghua, YANG Lufei, LIU Bo, CHEN Qiao. Macrobenthic assemblage characteristics under stressed waters and ecological health assessment using AMBI and M-AMBI:a case study at the Xin'an River Estuary, Yantai, China[J]. Acta Oceanologica Sinica, 2018, 37(5): 77-86. doi: 10.1007/s13131-018-1180-x

受扰动海域大型底栖动物群落特征及基于AMBI和M-AMBI指数的生态健康评价:以山东烟台辛安河口为例

doi: 10.1007/s13131-018-1180-x
基金项目: The Strategic Priority Research Program of the Chinese Academy of Sciences under contract Nos XDA11020403 and XDA1102702; the Key Research Program of the Chinese Academy of Sciences under contract No. KZZD-EW-14; the NSFC-NOW "Water Ways, Harbours, Estuaries and Coastal Engineering" Scheme co-supported by the National Natural Science Foundation of China under contract No. NSFC41061130543; the Netherlands Organization for Scientific Research under contract No. 843.10.003; the International Cooperation, CAS, Chinese-Foreign Cooperation in Key Projects under contract No. 133337KYSB20160002.

Macrobenthic assemblage characteristics under stressed waters and ecological health assessment using AMBI and M-AMBI:a case study at the Xin'an River Estuary, Yantai, China

  • 摘要: 根据2012年9月对山东烟台辛安河口海域大型底栖动物调查资料,采用优势度指数、物种多样性指数、Cluster聚类和MDS排序、AMBI和M-AMBI等方法,结合单因子标准指数等非生物因素指标研究该海域底栖群落结构和生态状况。调查结果表明,水体无机氮和活性磷酸盐属于一类或二类海水水质标准,但调查海域溶解氧和pH均属于或超出四类海水水质标准,说明调查海域受到海洋酸化和缺氧的干扰。该海域共采集大型底栖动物62种,总平均丰度为577.50 ind./m2,总平均生物量为6.01g/m2,多毛动物是主要优势类群。污染指示种小头虫在Y1站位大量出现,结合环境数据分析表明该处底栖环境受到海洋酸化和缺氧的严重干扰。与2009-2011年历史数据比较,辛安河口及其邻近海域的底栖生物群落状况变化不大。AMBI和M-AMBI评价结果与环境因子评价较一致,该海域底栖生态环境受到轻度干扰,环境质量介于较差到高等之间。海洋酸化和缺氧对底栖生物群落结构产生影响,尤其是Y1,Y2和Y5站位,底栖环境评价结果均较差。
  • Ahmed A A M. 2014. Prediction of dissolved oxygen in Surma River by biochemical oxygen demand and chemical oxygen demand using the artificial neural networks (ANNs). Journal of King Saud University—Engineering Sciences, 29(2):151-158
    Anderson M J. 2008. Animal-sediment relationships re-visited:Characterising species' distributions along an environmental gradient using canonical analysis and quantile regression splines. Journal of Experimental Marine Biology and Ecology, 366(1-2):16-27
    Borja A, Dauer D M, Díaz R, et al. 2008. Assessing estuarine benthic quality conditions in Chesapeake Bay:A comparison of three indices. Ecological Indicators, 8(4):395-403
    Borja Á, Dauer D M, Grémare A. 2012. The importance of setting targets and reference conditions in assessing marine ecosystem quality. Ecological Indicators, 12(1):1-7
    Borja A, Franco J, Perez V. 2000. A marine biotic index to establish the ecological quality of soft-bottom benthos within European estuarine and coastal environments. Marine Pollution Bulletin, 40(12):1100-1114
    Borja Á, Franco J, Valencia V, et al. 2004. Implementation of the European water framework directive from the Basque country (northern Spain):a methodological approach. Marine Pollution Bulletin, 48(3-4):209-218
    Borja A, Muxika H. 2005. Guidelines for the use of AMBI (AZTI's Marine Biotic Index) in the assessment of the benthic ecological quality. Marine Pollution Bulletin, 50(7):787-789
    Borja A, Tunberg B G. 2011. Assessing benthic health in stressed subtropical estuaries, eastern Florida, USA using AMBI and M-AMBI. Ecological Indicators, 11(2):295-303
    Briggs K B, Craig J K, Shivarudrappa S, et al. 2017. Macrobenthos and megabenthos responses to long-term, large-scale hypoxia on the Louisiana continental shelf. Marine Environmental Research, 123:38-52
    Cai Wenqian, Borja A, Lin Kuixuan, et al. 2015. Assessing the benthic quality status of the Bohai Bay (China) with proposed modifications of M-AMBI. Acta Oceanologica Sinica, 34(10):111-121
    Cai Minggang, Liu Yan, Chen Kai, et al. 2016. Quantitative analysis of anthropogenic influences on coastal water—A new perspective. Ecological Indicators, 67:673-683
    Cai Wenqian, Liu Lusan, Qiao Fei, et al. 2012. Study on the changes of macrobenthos communities and their causes in Bohai Bay. Environmental Science (in Chinese), 33(9):3104-3109
    Cai Wenqian, Meng Wei, Liu Lusan, et al. 2013. Long-term trends of the dominant macrozoobenthos in Bohai Bay. Acta Scientiae Circumstantiae (in Chinese), 34(8):2332-2340
    Chen Yaqu, Xu Zhaoli, Wang Yunlong, et al. 1995. An ecologicl study on zooplankton in plume front zone of Changjiang (Yangtze) River estuarine area:I. Biomass distribution of dominant species. Journal of Fishery Sciences of China (in Chinese), 2(1):49-58
    Dauvin J C, Bellan G, Bellan-Santini D. 2010. Benthic indicators:From subjectivity to objectivity—Where is the line?.. Marine Pollution Bulletin, 60(7):947-953
    Dolbeth M, Cardoso P G, Grilo T F, et al. 2011. Long-term changes in the production by estuarine macrobenthos affected by multiple stressors. Estuarine, Coastal and Shelf Science, 92(1):10-18
    Dolbeth M, Cardoso P G, Ferreira S M, et al. 2007. Anthropogenic and natural disturbance effects on a macrobenthic estuarine community over a 10-year period. Marine Pollution Bulletin, 54(5):576-585
    Dumbauld B R, Ruesink J L, Rumrill S S. 2009. The ecological role of bivalve shellfish aquaculture in the estuarine environment:A review with application to oyster and clam culture in West Coast (USA) estuaries. Aquaculture, 290(3-4):196-223
    Ekeroth N, Blomqvist S, Hall P O J. 2016. Nutrient fluxes from reduced Baltic Sea sediment:effects of oxygenation and macrobenthos. Marine Ecology Progress Series, 544:77-92
    Fabry J V, Seibel B A, Feely R A, et al. 2008. Impacts of ocean acidification on marine fauna and ecosystem processes. ICES Journal of Marine Science, 65(3):414-432
    Forchino A, Borja A, Brambilla F, et al. 2011. Evaluating the influence of off-shore cage aquaculture on the benthic ecosystem in Alghero Bay (Sardinia, Italy) using AMBI and M-AMBI. Ecological Indicators, 11(5):1112-1122
    Ge Changzi, Chai Yanchao, Wang Haiqing, et al. 2017. Ocean acidification:One potential driver of phosphorus eutrophication. Marine Pollution Bulletin, 115(1-2):149-153
    Gusmao J B, Brauko K M, Eriksson B K, et al. 2016. Functional diversity of macrobenthic assemblages decreases in response to sewage discharges. Ecological Indicators, 66:65-75
    Herman P M J, Middelburg J J, Van De Koppel J, et al. 1999. Ecology of estuarine macrobenthos. Advances in Ecological Research, 29:195-240
    Hu Guikun, Zhang Qingtian. 2016. Seasonal variations in macrobenthic taxonomic diversity and the application of taxonomic distinctness indices in Bohai Bay, northern China. Ecological Indicators, 71:181-190
    James C J, Gibson R. 1980. The distribution of the polychaete Capitella capitata (Fabricius) in dock sediments. Estuarine and Coastal Marine Science, 10(6):671-683
    Jia Yiran, Sun Yinglan, Sun Changqing. 2007. Argumentation of sewage discharge mixing zone's area of Xin'an River sewage plant of Yantai. Transactions of Oceanology and Limnology,(S1):131-136
    Jin Shaofei, Wang Yongli, Xia Jiangjiang, et al. 2015. Decline in the species richness contribution of Echinodermata to the macrobenthos in the shelf seas of China. Physics and Chemistry of the Earth, Parts A/B/C, 87-88:43-49
    Kawai M, Nagao N, Kawasaki N, et al. 2016. Improvement of COD removal by controlling the substrate degradability during the anaerobic digestion of recalcitrant wastewater. Journal of Environmental Management, 181:838-846
    Leng Yu, Liu Yiting, Zhao Sheng, et al. 2013. Analysis on the characteristics of macrobenthos community during autumn in the Yangma Island. The Administration and Technique of Environmental Monitoring (in Chinese), 25(3):17-20
    Li Xinzheng. 2011. An overview of studies on marine macrobenthic biodiversity from Chinese waters:principally from the Yellow Sea. Biodiversity Science (in Chinese), 19(6):676-684
    Li Baoquan, Wang Quanchao, Li Bingjun. 2013. Assessing the benthic ecological status in the stressed coastal waters of Yantai, Yellow Sea, using AMBI and M-AMBI. Marine Pollution Bulletin, 75(1-2):53-61
    Lillebø A I, Neto J M, Martins I, et al. 2005. Management of a shallow temperate estuary to control eutrophication:The effect of hydrodynamics on the system's nutrient loading. Estuarine, Coastal and Shelf Science, 65(4):697-707
    Liu Lusan, Li Baoquan, Lin Kuixuan, et al. 2014. Assessing benthic ecological status in coastal area near Changjiang River estuary using AMBI and M-AMBI. Chinese Journal of Oceanology and Limnology, 32(2):290-305
    Luo Xianxiang, Zhang Juan, Yang Jianqiang, et al. 2014. Assessing the benthic habitat quality in the Huanghe (Yellow River) Estuary and its adjacent areas using AMBI and M-AMBI. Acta Oceanologica Sinica, 33(9):117-124
    Ma Zhaohu, Wang Lei, Wang Dongliang, et al. 2012. Evaluation and analysis on the quality of the sea water adjacent to the Yantai Xin'an River Estuary. Ludong University Journal (Natural Science Edition) (in Chinese), 28(4):364-369
    Marques J C, Nielsen S N, Pardal M A, et al. 2003. Impact of eutrophication and river management within a framework of ecosystem theories. Ecological Modelling, 166(1-2):147-168
    Muxika I, Borja Á, Bald J. 2007. Using historical data, expert judgement and multivariate analysis in assessing reference conditions and benthic ecological status, according to the European Water Framework Directive. Marine Pollution Bulletin, 55(1-6):16-29
    Muxika I, Borja Á, Bonne W. 2005. The suitability of the marine biotic index (AMBI) to new impact sources along European coasts. Ecological Indicators, 5(1):19-31
    Paganelli D, Forni G, Marchini A, et al. 2011. Critical appraisal on the identification of reference conditions for the evaluation of ecological quality status along the Emilia-Romagna coast (Italy) using M-AMBI. Marine Pollution Bulletin, 62(8):1725-1735
    Peng Shitao, Zhou Ran, Qin Xuebo, et al. 2013. Application of macrobenthos functional groups to estimate the ecosystem health in a semi-enclosed bay. Marine Pollution Bulletin, 74(1):302-310
    Piló D, Ben-Hamadou R, Pereira F, et al. 2016. How functional traits of estuarine macrobenthic assemblages respond to metal contamination?.. Ecological Indicators, 71:645-659
    Rakocinski C F, Menke D P. 2016. Seasonal hypoxia regulates macrobenthic function and structure in the Mississippi Bight. Marine Pollution Bulletin, 105(1):299-309
    Rombouts I, Beaugrand G, Artigas L F, et al. 2013. Evaluating marine ecosystem health:Case studies of indicators using direct observations and modelling methods. Ecological Indicators, 24:353-365
    Serrano L, Reina M, Quintana X D, et al. 2017. A new tool for the assessment of severe anthropogenic eutrophication in small shallow water bodies. Ecological Indicators, 76:324-334
    Shen Hui, Thrush S F, Wan Xihe, et al. 2016. Optimization of hard clams, polychaetes, physical disturbance and denitrifying bacteria of removing nutrients in marine sediment. Marine Pollution Bulletin, 110(1):86-92
    Sigamani S, Perumal M, Arumugam S, et al. 2015. AMBI indices and multivariate approach to assess the ecological health of Vellar-Coleroon estuarine system undergoing various human activities. Marine Pollution Bulletin, 100(1):334-343
    Smith C R, Austen M C, Boucher G, et al. 2000. Global change and biodiversity linkages across the sediment-water interface:human activities, modulated through global climate change, coastal-zone eutrophication, species introductions, mariculture, and bottom fishing, are expected to substantially influence biodiversity linkages across the sediment-water interface. BioScience, 50(12):1108-1120
    Sun Daoyuan, Chen Mu. 1978. Research on Capitella capitata as the biological indicator for organic pollution. Environmental Science (in Chinese),(1):17-19
    Tang Xianchun. 2011. Study on ecological functions of macrobenthos in Yantai Sishili Bay (in Chinese)[dissertation]. Beijing:Graduate School of Chinese Academy of Agricultural Sciences
    Vaquer-Sunyer R, Duarte C M. 2008. Thresholds of hypoxia for marine biodiversity. Proc Natl Acad Sci USA, 105(40):15452-15457
    Volkenborn N, Hedtkamp S I C, Van Beusekom J E E, et al. 2007. Effects of bioturbation and bioirrigation by lugworms (Arenicola marina) on physical and chemical sediment properties and implications for intertidal habitat succession. Estuarine, Coastal and Shelf Science, 74(1-2):331-343
    Wallace R B, Baumann H, Grear J S, et al. 2014. Coastal ocean acidification:The other eutrophication problem. Estuarine, Coastal and Shelf Science, 148:1-13
    Wang Quanchao, Li Baoquan. 2013. Community structure of macrobenthos in coastal water off Yantai, East China. Oceanologia et Limnologia Sinica (in Chinese), 44(6):1667-1680
    Wang Xu'e, Xu Zongfa, Zhou Xuejia. 1995. Benthic animal survey in Yantai Inshores. Chinese Journal of Ecology (in Chinese), 14(1):6-10
    Webb A P, Eyre B D. 2004. Effect of natural populations of burrowing thalassinidean shrimp on sediment irrigation, benthic metabolism, nutrient fluxes and denitrification. Marine Ecology Progress Series, 268:205-220
    Wu Yaoquan, Zhang Bo. 1994. The characteristics of benthic environment in Zhifu Bay waters off Yantai, China. Marine Environmental Science (in Chinese), 13(3):1-6
    Xie Zhao, Zhang Jie, Cai Kun, et al. 2016. Temporal and spatial distribution of macrobenthos communities and their responses to environmental factors in Lake Taihu. Acta Ecologica Sinica, 36(1):16-22
    Zhang Wenqiang, Jin Xin, Zhu Xiaolei, et al. 2017. Do NH3 and chemical oxygen demand induce continuous release of phosphorus from sediment in heavily polluted rivers?.. Ecological Engineering, 102:24-30
    Zhang Jing, Xiao Tian, Huang Daji, et al. 2016a. Editorial:eutrophication and hypoxia and their impacts on the ecosystem of the Changjiang Estuary and adjacent coastal environment. Journal of Marine Systems, 154:1-4
    Zhang Anguo, Yuan Xiutang, Yang Xiaolong, et al. 2016b. Temporal and spatial distributions of intertidal macrobenthos in the sand flats of the Shuangtaizi Estuary, Bohai Sea in China. Acta Ecologica Sinica, 36(3):172-179
    Zhou H, Zhang Z N, Liu X S, et al. 2007. Changes in the shelf macrobenthic community over large temporal and spatial scales in the Bohai Sea, China. Journal of Marine Systems, 67(3-4):312-321
    Zhu Zhuoyi, Wu Ying, Zhang Jing, et al. 2014. Reconstruction of anthropogenic eutrophication in the region off the Changjiang Estuary and central Yellow Sea:From decades to centuries. Continental Shelf Research, 72:152-162
  • 加载中
计量
  • 文章访问数:  1047
  • HTML全文浏览量:  54
  • PDF下载量:  761
  • 被引次数: 0
出版历程
  • 收稿日期:  2017-03-11
  • 修回日期:  2017-07-30

目录

    /

    返回文章
    返回