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上官明珠,等                                                                水产学报, 2025, 49(8): 089309

                    Chinese).                                       Songbirds  and  noise  in  urban  parks  as  a  case  study[J].  Land-
              [28]   祝琳, 李少月, 王智, 等. 黄海秋季大型底栖甲壳类多样性及                scape and Urban Planning, 2012, 104(1): 9-18.
                    群落结构的初步研究     [J]. 海洋科学, 2022, 46(9): 98-108.  [37]   斯幸峰, 赵郁豪, 陈传武, 等. Beta 多样性分解: 方法、应用与
                    Zhu L, Li S Y, Wang Z, et al. Primary study on the diversity  展望  [J]. 生物多样性, 2017, 25(5): 464-480.
                    and  community  structure  of  macrobenthic  crustaceans  in  the  Si X F, Zhao Y H, Chen C W, et al. Beta-diversity partitioning:
                    Yellow Sea during autumn[J]. Marine Sciences, 2022, 46(9): 98-  methods, applications and perspectives[J]. Biodiversity Science,
                    108 (in Chinese).                               2017, 25(5): 464-480 (in Chinese).
              [29]   何明海. 利用底栖生物监测与评价海洋环境质量        [J]. 海洋环   [38]   Kristiansen  T,  Svenning  J  C,  Eiserhardt  W  L,  et  al.  Environ-
                    境科学, 1989, 8(4): 49-54.                         ment  versus  dispersal  in  the  assembly  of  western  Amazonian
                    He M H. Using benthic organisms to monitor and evaluate the  palm  communities[J].  Journal  of  Biogeography,  2012,  39(7):
                    quality  of  marine  environment[J].  Marine Environmental   Sci-  1318-1332.
                    ence, 1989, 8(4): 49-54 (in Chinese).     [39]   Nasi F, Nordström M C, Bonsdorff E, et al. Functional biod-
              [30]   袁一鸣, 秦玉涛, 刘材材, 等. 长江口海域夏季大型底栖动物                iversity of marine soft-sediment polychaetes from two Mediter-
                    群落结构分析   [J]. 水产学报, 2015, 39(8): 1107-1121.     ranean coastal areas in relation to environmental stress[J]. Mar-

                    Yuan Y M, Qin Y T, Liu C C, et al. Analysis of summer macro-  ine Environmental Research, 2018, 137: 121-132.
                    zoobenthos  community  structure  in  the  Yangtze  River  [40]   Hu C Y, Dong J Y, Gao L J, et al. Macrobenthos functional trait
                    Estuary[J].  Journal  of  Fisheries  of  China,  2015,  39(8):  1107-  responses  to  heavy  metal  pollution  gradients  in  a  temperate
                    1121 (in Chinese).                              lagoon[J]. Environmental Pollution, 2019, 253: 1107-1116.
              [31]   Baselga A. Partitioning abundance‐based multiple‐site dis-  [41]   Koch E W. Beyond light: physical, geological, and geochem-
                    similarity  into  components:  balanced  variation  in  abundance  ical parameters as possible submersed aquatic vegetation hab-
                    and abundance gradients[J]. Methods in Ecology and Evolution,  itat requirements[J]. Estuaries, 2001, 24(1): 1-17.
                    2017, 8(7): 799-808.                      [42]   陆昕雨, 彭模, 周超凡, 等. 江苏近岸海域富营养化特征研究
              [32]   Bevilacqua  S,  Terlizzi  A.  Nestedness  and  turnover  unveil  [J]. 海洋环境科学, 2022, 41(5): 745-752.
                    inverse  spatial  patterns  of  compositional  and  functional  β‐  Lu X Y, Peng M, Zhou C F, et al. Eutrophication characterist-
                    diversity at varying depth in marine benthos[J]. Diversity and  ics in the Jiangsu coastal waters[J]. Marine Environmental Sci-
                    Distributions, 2020, 26(6): 743-757.            ence, 2022, 41(5): 745-752 (in Chinese).
              [33]   董建宇, 孙昕, 詹启鹏, 等. 莱州湾东岸潮下带大型底栖动物          [43]   姚扬, 金相灿, 姜霞, 等. 光照对湖泊沉积物磷释放及磷形态
                    群落  beta 多样性格局及其驱动因素    [J]. 生物多样性, 2022,       变化的影响研究    [J]. 环境科学研究, 2004, 17(S1): 30-33.
                    30(3): 21388.                                   Yao  Y,  Jin  X  C,  Jiang  X,  et  al.  Study  on  effects  of  light  on
                    Dong J Y, Sun X, Zhan Q P, et al. Patterns and drivers of beta  phosphorus release and phosphorus form change in lake sedi-
                    diversity  of  subtidal  macrobenthos  community  on  the  eastern  ments[J].  Research  of  Environmental  Sciences,  2004,  17(S1):
                    coast  of  Laizhou  Bay[J].  Biodiversity  Science,  2022,  30(3):  30-33 (in Chinese).
                    21388 (in Chinese).                       [44]   李艳, 刘苗, 余业鑫, 等. 氨氮对软体动物生长的影响: 以铜锈
              [34]   Barros F, Blanchet H, Hammerstrom K, et al. A framework for  环棱螺为例  [J]. 水生生物学报, 2023, 47(1): 45-54.
                    investigating general patterns of benthic β-diversity along estu-  Li Y, Liu M, Yu Y X, et al. Ammonia on the growth of mol-
                    aries[J]. Estuarine, Coastal and Shelf Science, 2014, 149: 223-  lusc: a case study of Bellamya aeruginosa[J]. Acta Hydrobiolo-
                    231.                                            gica Sinica, 2023, 47(1): 45-54 (in Chinese).
              [35]   Saracho Bottero M A, Jaubet M L, Llanos E N, et al. Spatial-  [45]   Yu R L, Yuan X, Zhao Y H, et al. Heavy metal pollution in
                    temporal variations of a SW Atlantic macrobenthic community  intertidal sediments from Quanzhou Bay, China[J]. Journal of
                    affected by a chronic anthropogenic disturbance[J]. Marine Pol-  Environmental Sciences, 2008, 20(6): 664-669.
                    lution Bulletin, 2020, 156: 111189.       [46]   唐得昊, 刘兴健, 邹欣庆. 海湾表层沉积物重金属污染与潜在
              [36]   González-Oreja J A, De La Fuente-Díaz-Ordaz A A, Hernández-  生态危害评价——以深圳湾为例  [J]. 环境化学, 2014, 33(8):
                    Santín  L,  et  al.  Can  human  disturbance  promote  nestedness?  1294-1300.

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