Biodiversity and distribution of benthic shellfish in Qidong intertidal mudflats, Jiangsu Province
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    Abstract:

    In Qidong, Jiangsu Province, there used to be 440 km2 of mudflats, which is a crucial habitat for benthic shellfish—a significant and unique marine resource. However, human activities such as mudflat reclamation and coastal construction have reduced the suitable habitat for shellfish and altered the local ecological factors. Conversely, shellfish proliferation and release activities have also been performed frequently, which have impacted the resources, biodiversity, and overall equilibrium of benthic shellfish ecosystems. Presently, the lack of understanding regarding the distribution and community structure of shellfish resources has hindered the effective management of shellfish and the protection of germplasm resources. Conversely, there have been frequent shellfish proliferation and release initiatives. Here, we aimed to systematically understand the biodiversity and resource status of benthic shellfish, explore the main environmental factors affecting the community structure, and provide basic data for the shellfish resources protection and habitat restoration. For this, we surveyed 8 sections of Qidong intertidal mudflats in the spring and autumn of 2019 and analyzed the species composition, diversity, density, dominant species, and distribution of shellfish. A total of 30 species of benthic shellfish were recorded during the spring and autumn surveys, including 14 species of gastropods and 16 species of bivalves. Across the elevation gradient of the intertidal zone, the average density of benthic shellfish exhibited the following trend: high tide zone>medium tide zone>low tide zone. The dominant species of benthic shellfish in intertidal mudflats were Mactra veneriformis, Dosinia laminata, Meretrix meretrix, Moerella iridescens, and Bullacta exarate. The results of non-metric multidimensional scaling showed that the benthic shellfish could be divided into three groups. The first group comprised three tidal zones of the Q1 section (Lvsi harbour) housing M. iridescent and R. philippinarum; the second group included the three tidal zones of Q8 section (Qixingsha) and several middle and low tidal zones of central sections, with D. laminata and B. exarate being the predominant species. The remaining central sections formed the third group, with M. meretrix and M. veneriformis as the characteristic species. Canonical correlation analysis showed that the densities of both M. meretrix and M. veneriformis were positively correlated with sand content and D50, while being negatively correlated with clay content. The density of M. iridescens was positively correlated with clay content, while being negatively correlated with sand content. D. laminate was negatively correlated with total organic carbon. A clear differentiation was observed in shellfish composition in Qidong intertidal mudflats, owing to the significant differences in salinity and bottom plasmid diameter. Our results suggest that the northern mudflats must be developed into protection areas for small shellfish resources (such as M. iridescens and R. philippinarum). In contrast, the central coastal mudflat is suitable for large bivalve shellfish (such as M. veneriformis and M. meretrix). Sandbars are not conducive to the development of shellfish since they are susceptible to various factors such as channel fluctuations, strong tides, typhoons, and storm surges.

    Reference
    [1] Wang Y,Yu Z M.Biological strategies in controlling or mitigating marine harmful algal blooms(HABS)[J].Chinese Journal of Plant Ecology,2005,29(4):665-671.[王悠,俞志明.海洋有害赤潮的生物防治对策[J].植物生态学报,2005,29(4):665-671].
    [2] Zhang J H,Liu J H,Zhang Y Y,et al.Strategic approach for mariculture to practice “ocean negative carbon emission”[J].Bulletin of Chinese Academy of Sciences,2021,36(3):252-258.[张继红,刘纪化,张永雨,等.海水养殖践行“海洋负排放”的途径[J].中国科学院院刊,2021,36(3):252-258.]
    [3] Jiao N Z,Wang H,Xu G H,et al.Blue carbon on the rise:Challenges and opportunities[J].National Science Review,2018,5(4):464-468.
    [4] Nanjing Normal University.The embankment engineering sea area demonstration report in Nantong port Lvsi operation area[R].Nanjing:Nanjing Normal University,2021.[南京师范大学.南通港吕四作业区西港池西侧北围堤工程海域论证报告[R].南京:南京师范大学,2021.]
    [5] Ji X,Xu R,Liu C C,et al.Assessment of macrobenthic community health in the coastal waters of Qidong[J].Marine Fisheries,2016,38(4):348-363.[季晓,徐韧,刘材材,等.江苏启东近岸海域大型底栖动物群落健康评价[J].海洋渔业,2016,38(4):348-363.]
    [6] Zhang H,Tang X H,Guo Z R,et al.Temporal and spatial distribution of benthic macrofauna in intertidal mudflat of central and southern Jiangsu coast[J].Marine Fisheries,2014,36(3):208-215.[张虎,汤晓鸿,郭仲仁,等.江苏中南部潮间带大型底栖动物时空分布特征[J].海洋渔业,2014,36(3):208-215.]
    [7] Yuan J M,Zhang H,Xiao Y Y,et al.Impact of coastal reclamation project on macrobenthos in Qidong Yangtze River Estuary[J].Guangxi Sciences,2021,28(5):529-536.[袁健美,张虎,肖悦悦,等.启东长江口围填海工程对大型底栖动物的影响[J].广西科学,2021,28(5):529-536.]
    [8] Shepard F P.Nomenclature based on sand-silt-clay ratios[J].Journal of Sedimentary Research,1954,24(3):151-158.
    [9] Xu K D,Lu K,Lu Z H,et al.Ecological niche analysis of dominant shrimp species in the Jiushan Islands Marine Nature Reserve[J].Biodiversity Science,2018,26(6):601-610.
    [10] Yuan J M,Zhang H,Tang X H,et al.Macrozoobenthic functional groups in intertidal zone of southern Jiangsu Province[J].Marine Fisheries,2019,41(1):43-52.[袁健美,张虎,汤晓鸿,等.江苏南部潮间带大型底栖动物功能群研究[J].海洋渔业,2019,41(1):43-52.
    [11] Ouyang X Y,Ni T Z,Wu X H,et al.Distribution characteristics of Macrozoobenthos community in intertidal zone in Yancheng[J].Wetland Science,2022,20(3):427-434.[欧阳夏语,倪天泽,吴晓涵,等.盐城潮间带大型底栖动物群落分布特征[J].湿地科学,2022,20(3):427-434.]
    [12] Lu L Y,Zhang R S,Chen J.The eveloping and utilizong foreground of Jiangsu coastal radiate sandbands[J].Journal of Nanjing Normal University(Natural Science Edition),2002,25(3):18-24.[陆丽云,张忍顺,陈君.江苏沿海辐射沙洲开发利用的前景[J].南京师大学报(自然科学版),2002,25(3):18-24.]
    [13] Dong J B,Cheng J X,Chen D,et al.Assessment of restocking effect for Solen grandis in the Jiangjia and Zhugen shoals of Jiangsu Province[J].Fishery Information & Strategy.2016,31(1):59-64.[董建波,程建新,陈栋,等.江苏“两沙”海域大竹蛏(Solen grandis)增殖效果评估[J].渔业信息与战略,2016,31(1):59-64.]
    [14] Fan K Z,Sun G M,Chen A H,et al.A preliminary study on the relationship between the sulphuret and the COD in the substratum of the HARD clam(Meretrix meretrix)in the maritime reproductive—Culturalarea of southern Jiangsu Province[J].Journal of Nanjing Normal University(Natural Science Edition),2005,28(4):90-94.[范可章,孙国铭,陈爱华,等.江苏南部海域文蛤增养殖区底质中硫化物及其与COD的关系[J].南京师大学报(自然科学版),2005,28(4):90-94.]
    [15] Chen S Y,Wang L C,Liu R,et al.Study on the technology of calcium citrate prepared with the shell of Mactra veneriformis Reeve[J].Chinese Journal of Marine Drugs,2011,30(6):18-22.[陈士勇,王令充,刘睿,等.四角蛤蜊贝壳制备柠檬酸钙的工艺研究[J].中国海洋药物,2011,30(6):18-22.]
    [16] Ren S C,Peng H B,Jia Y F,et al.Distribution of mollusks and brachiopods in intertidal zone,Qidong city and their influence factors[J].Wetland Science,2021,19(3):366-374.[任思成,彭鹤博,贾亦飞,等.启东市潮间带软体动物和腕足动物分布及其影响因子分析[J].湿地科学,2021,19(3):366-374.]
    [17] You Z J,Wang Y N,Zhu L B.A preliminary observation on the ecology of Moerella iridescens(benson)[J].Journal of Zhejiang College of Fisheries,1990,9(2):113-120,4.[尤仲杰,王一农,朱龙斌.彩虹明樱蛤生态的初步观察[J].浙江水产学院学报,1990,9(2):113-120,4.]
    [18] Hu A K,Xue X H.The breeding technology of Moerella Iridescens in the intertidal zone[J].Agriculture and Technology,2013,33(2):326-326.[胡安宽,薛兴华.潮间带彩虹明樱蛤的养殖技术[J].农业与技术,2013,33(2):235-236.]
    [19] Xu Z D,Shi H H,Li N C,et al.Macrobenthic community structure and its relationship with environmental factors in the southern waters of the Miaodao archipelago[J].Research of Environmental Sciences,2015,28(5):704-712.[徐兆东,石洪华,李乃成,等.庙岛群岛南部海域大型底栖动物群落结构及其与环境因子的关系[J].环境科学研究,2015,28(5):704-712.]
    [20] Zhang A G,Yuan X T,Yang X L,et al.Temporal and spatial distributions of intertidal macrobenthos in the sand flats of the Shuangtaizi Estuary,Bohai Sea in China[J].Acta Ecologica Sinica,2016,36(3):172-179.
    [21] Nakamura Y,Hashizume K,Koyama K,et al.Effects of salinity on sand burrowing activity,feeding and growth of the clams Mactra veneriformis,Ruditapes philippinarum and Meretrix lusoria[J].Journal of Shellfish Research,2005,24(4):1053-1059.
    [22] Zhang A G,Yuan X T,Yang F Y,et al.Effects of temperature,salinity and sediment on the burrowing behavior of clam Meretrix meretrix[J].Chinese Journal of Ecology,2015,34(6):1595-1601.[张安国,袁秀堂,杨凤影,等.温度、盐度及底质对文蛤潜砂行为的影响[J].生态学杂志,2015,34(6):1595-1601.]
    [23] Tang B J,Liu B Z,Yang H S,et al.Oxygen consumption and ammonia-N excretion of Meretrix meretrix in different temperature and salinity[J].Chinese Journal of Oceanology and Limnology,2005,23(4):469-474.
    [24] Sun X M,Chen B J,Gao P,et al.Effect of high salinity stress on ingestion and growth of Mactra veneriformis in Yellow River estuary[J].Progress in Fishery Sciences,2012,33(5):85-90.[孙雪梅,陈碧鹃,高萍,等.高盐胁迫对黄河口四角蛤蜊摄食与生长的影响[J].渔业科学进展,2012,33(5):85-90.]
    [25] Wu W G,Leng Y,Zhang J H,et al.Preliminary study ondistribution characteristics and living environment of Bullacta exarata population in Yellow River Estuary,China[J].Progress in Fishery Sciences,2013,34(3):38-45.[吴文广,冷宇,张继红,等.黄河口泥螺种群夏季分布特性及其与底质环境的关系[J].渔业科学进展,2013,34(3):38-45.]
    [26] Li B Q,Bouma T J,Wang Q C,et al.Effects of key species mud snail Bullacta exarata(Gastropoda)on oxygen and nutrient fluxes at the sediment-water interface in the Huanghe River Delta,China[J].Acta Oceanologica Sinica,2019,38(8):48-55.
    [27] Wang J Y,Zhang A G,Li X D,et al.Spatial distribution of buried molluscs and their relationship with sediment factors in Geligang[J].Marine Sciences,2016,40(4):32-39.[王金叶,张安国,李晓东,等.蛤蜊岗滩涂贝类分布及其与环境因子的关系[J].海洋科学,2016,40(4):32-39.]
    [28] Ye S F,Lu J J.Analysis on the spatial distribution of Bullacta exarata(Mollusca:Gastropoda:Atyidae)Population in Yangtze River Estuary,China[J].Zoological Research,2001,22(2):131-136.[叶属峰,陆健健.长江口泥螺种群夏季的空间格局分析[J].动物学研究,2001,22(2):131-136]
    [29] Wang Y N,You Z J,Yu H,et al.Study on ecological habit of mud slug,Bullacta exarata[J].Journal of Ningbo University(Natural Science & Engineering Edition),2003,16(3):240-244.[王一农,尤仲杰,於宏,等.养殖泥螺生态习性研究 [J].宁波大学学报(理工版),2003,16(3):240-244.]
    [30] Zeon S R,Koo J H,Park J W,et al.Estimation of potential habitats for three species of bivalves using the habitat variables in Gomso Bay tidal flat,Korea[J].Ocean Science Journal,2022,57(4):607-617.
    [31] Zhang C S,Xue S Y,Li J Q,et al.Influences of substrate grain size on the burrowing behavior of Juvenile Meretrix meretrix[J].Animals,2022,12(16):2094.
    [32] Choi M,Lee I S,Kim C S,et al.Distributions of organic matter and trace metals in surface sediments around a Manila clam Ruditapes phillippinarum farming area in Gomso Bay,Korea[J].Korean Journal of Fisheries and Aquatic Sciences,2015,48(4):555-563.
    [33] Liu Y,Wang X M,Du Y Q,et al.Defense system of the manila clam Ruditapes philippinarum under high-temperature and hydrogen sulfide conditions[J].Biology,2023,12(2):278.
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李楠楠,范瑞良,陈渊戈,欧阳珑玲,姜伟行,全为民. 江苏启东潮间带滩涂底栖贝类生物多样性及分布格局[J]. Jounal of Fishery Sciences of China, 2023,[volume_no](11):1327-1336

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  • Received:September 27,2023
  • Revised:November 21,2023
  • Online: March 14,2024
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