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Research Articles

Accumulation, subcellular distribution, and ecological risk assessment of Pb and Cd in Bellamya aeruginosa from the Xiangjiang River, China

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Pages 327-341 | Received 23 Oct 2019, Accepted 23 Jan 2020, Published online: 03 Feb 2020

References

  • Bai JK, Li CL, Kang SC, et al. Chemical speciation and risk assessment of heavy metals in the middle part of Yarlung Zangbo surface sediments. Environ Sci. 2014;35(09):3346–3351.
  • Bi CJ, Chen ZL, Xu SY, et al. Heavy metals accumulation in macrobenthos in intertidal flat of Yangtze Estuary. Chin J Appl Ecol. 2006;17(02):309–314.
  • Wu Y, Zhou YH, Qiu YL, et al. Occurrence and risk assessment of trace metals and metalloids in sediments and benthic invertebrates from Dianshan Lake, China. Environ Sci Pollut Res. 2017;24(17):14847–14856.
  • Kong M, Hang XS, Wang LM, et al. Accumulation and risk assessment of heavy metals in sediments and zoobenthos (Bellamya aeruginosa and Corbicula fluminea) from Lake Taihu. Environ Sci Technol. 2016;73(1):203–214.
  • Wu J, Tan J, Huang SF, et al. Content and risk dynamic of the total petroleum hydrocarbon in the body of benthic invertebrate in the intertidal zone polluted by oil spill. Acta Scientiae Circumstantiae. 2017;37(1):381–387.
  • Li DL, Pi J, Zhang T, et al. Evaluating a 5-year metal contamination remediation and the biomonitoring potential of a freshwater foot along the Xiangjiang River, China. Environ Sci Pollut R. 2018;25(21):21127–21137.
  • Liu J, Hu ZQ. The species composition and diversity of mollusca in the middle reaches of Xiang River. Acta Ecologica Sinica. 2007;27(03):1153–1160.
  • Liu J, Wu YQ, Li J, et al. Investigation of the diversity of mollusca and evaluation of water quality in Hengyang reach of Xiangjiang River. Environ Monit China. 2011;27(02):97–101.
  • Liu J, Zhu YH, Hu JS, et al. Characteristics and potential ecological risk assessment of heavy metal pollution in the sediments of middle reaches of Xiangjiang River. J Ecol Rural Environ. 2017;33(02):135–141.
  • Wang MY, Zhang L, Qin YW, et al. Speciation of heavy metals in sediments from Xiang River and analysis of their environmental factors. Acta Scientiae Circumstantiae. 2011;31(11):2447–2458.
  • Chai L, Li H, Yang Z, et al. Heavy metals and metalloids in the surface sediments of the Xiangjiang River, Hunan, China: distribution, contamination, and ecological risk assessment. Environ Sci Pollut Res Int. 2017;24(1):874–885.
  • Liu J, Xu Y, Cheng Y, et al. Occurrence and risk assessment of heavy metals in sediments of the Xiangjiang River, China. Environ Sci Pollut Res Int. 2017;24(3):2711–2723.
  • Ye SJ, Zeng GM, Wu HP, et al. The effects of activated biochar addition on remediation efficiency of co-composting with contaminated wetland soil. Resour Conserv Recy. 2019;140:278–285.
  • Ye S, Zeng G, Wu H, et al. Biological technologies for the remediation of co-contaminated soil. Crit Rev Biotechnol. 2017;37(8):1062–1076.
  • Ma TW, Zhu C, Zhou K, et al. Effects of Cd, Pb and combined contaminated sediments on hepatopancreatic SOD and MT in Bellamya aeruginosa. J Agro-Environ Sci. 2010;29(1):30–37.
  • Ma T, Zhu C, Zhou K, et al. The reproductive reaction and oxidative stress responses sensitivity of Bellamya aeruginosa to the chronic exposure of lead -contaminated sediments. Acta Ecologica Sinica. 2009;29(10):5350–5357.
  • Xu L, Wang XZ, Kong LJ, et al. Accumulation of heavy metal of Zn and Pb in snail Bellamya aeruginosa. J Nanchang Univ (Nat Sci). 2013;37(01):67–71.
  • Ma T, Zhu C, Wang GY, et al. Bioaccumulation of sediment heavy metals in Bellamya aeruginosa and its relations with the metals geochemical fractions. Chin J Appl Ecol. 2010;21(03):734–742.
  • Hawkins CA, Sokolova IM. Effects of elevated CO2 levels on subcellular distribution of trace metals (Cd and Cu) in marine bivalves. Aquat Toxicol. 2017;192:251–264.
  • Chen CY, Zhang PQ, Chai ZF. Distribution of several heavy metal elements in subcellular components isolated from human liver. Chin Sci Bull. 2004;49(20):2049–2052.
  • Chen XB, Su YP, Liu HB, et al. Biomonitoring of heavy metal pollution in Wulihu Bay of Taihu Lake by transplanting “standardized” Anodonta woodiana. China Environ Sci. 2014;34(01):225–231.
  • Xie WP, Zhu XP, Ma LS, et al. Residues and safety evaluation of heavy metals in four species freshwater fish from fish pond of Pearl River Delta. Asian J Ecotoxicol. 2017;12(5):294–303.
  • Usero J, Morillo J, Gracia I. Heavy metal concentrations in molluscs from the Atlantic coast of southern Spain. Chemosphere. 2005;59(8):1175–1181.
  • Chen XB, Su YP, Sun L, et al. Bioaccumulation characteristics of heavy metals in Bivalve anodonta woodiana from different habitats with different pollution backgrounds. J Agro-Environ Sci. 2013;32(05):1060–1067.
  • Xu XB, Lv JS, Xu RR. Source spatial distribution and risk assessment of heavy metals in Yiyuan county of Shandong province. Trans Chin Soc Agric Eng. 2018;34(9):216–223.
  • Wang F, Shan RY, Chen YZ, et al. Concentrations and health risk assessment of heavy metals in tea garden soil and tea-leaf from a mine county in central Fujian province. China Environ Sci. 2018;38(3):1064–1072.
  • Pekel AY, Calik A, Alatas MS, et al. Evaluation of correlations between nutrients, fatty acids, heavy metals, and deoxynivalenol in corn (Zea mays L.). J Appl Poult Res. 2019;28(1):94–107.
  • Weng HX. Bioaccumulation of heavy metals in Oyater (Crassoetrea Virginica). Acta Scientiae Circumstantiae. 1996;16(01):51–58.
  • Shen YL, Ma JZ, Ping XY, et al. The kinetic characteristics of bioconcentration of heavy metals in Crassostrea plicatula. J Agro-Environ Sci. 2009;28(04):783–788.
  • Zhang SN, Sun Y, Song YL, et al. Kinetic features of four heavy metals bioaccumulation of mussel Mytilus Edulis. Oceanol Limnol Sin. 2004;35(05):438–445.
  • Bustamante P, Miramand P. Interspecific and geographical variations of trace element concentrations in Pectinidae from European waters. Chemosphere. 2004;57(10):1355–1362.
  • Liu WG, Yu ZH, Huang XD, et al. Effect of ocean acidification on growth, calcification, and gene expression in the pearl oyster, Pinctada fucata. Mar Environ Res. 2017;130:174–180.
  • Marin F, Luquet G, Marie B, et al. Molluscan shell proteins: primary structure, origin, and evolution. Curr Top Dev Biol. 2008;80:209–276.
  • Zhao CP, Wang Y, Niu RY, et al. Effects of calcium supplementation on the contents of Ca, Zn, Fe, Mn, Mg, Cu in blood and organs of rats exposed to lead. Acta Nutr Sin. 2018;40(05):465–469.
  • Jia Q, Hu M, Zhang YY, et al. Effect of silicon-calcium fertilizer on Pb and Cd absorption by rice in heavy metal polluted farmland. Environ Sci Technol. 2017;40(6):24–30.
  • Min K, Kobayashi K, Onosaka S, et al. Tissue distribution of cadmium and nephropathy after administration of cadmium in several chemical forms. Toxicol Appl Pharmacol. 1986;86(2):262–270.
  • Suwazono Y, Kobayashi E, Okubo Y, et al. Renal effects of cadmium exposure in cadmium nonpolluted areas in Japan. Environ Res. 2000;84(1):44–55.
  • Ren YJ, Liu MN, Wang L, et al. Effect of cadmium on the content of metallothionein in the tissues of the freshwater mussel, Anodonta woodiana. J Shanxi Agric Sci. 2017;45(02):211–214.
  • Wang LL, Xia B, Chen BJ, et al. Cadmium bioaccumulation and bioelimination in Patinopecten yessoensis. Marine Environ Sci. 2012;31(02):159–162.
  • Wang XL, Zhang B, Shi ZR, et al. Bio-accumulation and release characteristic of Cd in Mytilus Edulis. Sci Technol Food Ind. 2015;36(19):101–106.
  • Fang L, Ma HX, Li LH, et al. Investigation and assessment on heavy metals in Ostrea rivularis from the coast of South China Sea. Food Ferment Ind. 2018;44(5):237–243.
  • Zhai ML Z, Zhai YX, et al. Effects of zinc on the accumulation and subcellular distribution of cadmium in the bay scallop, Argopecten irradias. J Fishery Sci China. 2017;24(01):165–172.
  • Chai X, Li YJ, Jing WX, et al. Effects of zinc exposure on the bioaccumulation of cadmium in the subcellular fractions of freshwater crab Sinopotamon henanense gills. Acta Scientiae Circumstantiae. 2014;34(6):1628–1634.
  • Peng Q, Li T, Xu WH, et al. Differences in the cadmium- enrichment capacity and subcellular distribution and chemical form of cadmium in different varieties of pepper. Environ Sci. 2019;40(07):1–14.
  • Hemelraad J, Kleinveld HA, de Roos AM, et al. Cadmium kinetics in freshwater clams. III. Effects of zinc on uptake and distribution of cadmium in Anodonta cygnea. Arch Environ Contam Toxicol. 1987;16(1):95–101.
  • Goto D, Wallace WG. Interaction of Cd and Zn during uptake and loss in the polychaete Capitella capitata: Whole body and subcellular perspectives. J Exp Mar Biol Ecol. 2007;352(1):65–77.
  • Li SL, Wang HX, Wu YS. Antagonistic effects of zinc on cadmium in waterhyacinth. Acta Scientiae Circumstantiae. 1990;10(02):249–254.
  • Viarengo A, Moore MN, Mancinelli G, et al. Metallothioneins and lysosomes in metal toxicity and accumulation in marine mussels: the effect of cadmium in the presence and absence of phenanthrene. Mar Biol. 1987;94(2):251–257.
  • Wang JX, Zu YQ, Li Y. The interaction of cadmium and zinc and its ecological effects. J Agro-Environ Sci. 2010;29(S1):256–260.
  • Zamzami N, Marchetti P, Castedo M, et al. Sequential reduction of mitochondrial transmembrane potential and generation of reactive oxygen species in early programmed cell death. J Exp Med. 1995;182(2):367–377.
  • Jin FF, Wang L. Effects of cadmium on hepatopancreas mitochondrial free radical metabolism in freshwater crab Sinopotamon henanense. Acta Scientiae Circumstantiae. 2012;32(2):457–464.
  • Guan K, Xu ZF. Research progress on the mechanism of mitochondrial damage induced by cadmium. J Toxicol. 2009;23(02):156–158.
  • Xiao Y, Peng B, Yang ZX, et al. Speciation of heavy metals in riverbed sediments of heavy pollution section of the lowermost of the Xiangjiang River. Environ Chem. 2017;36(9):1977–1986.
  • Liu J, Li J, Zhao YL, et al. Pollution characteristics and potential ecological risk assessment of Cd, Pb in the sediments of Dayuandu Hydropower Station of Xiangjiang River. Environ Monit China. 2011;27(06):9–13.
  • Zeng LY, Li WL, Li Y. Analysis and evaluation of heavy metal pollution of fishes in Changsha section of Xiangjiang River. Light Ind Sci Technol. 2012;166(9):94–95.
  • Li J, Peng FL, Ding DB, et al. Characteristics of phytoplankton community and bioaccumulation of heavy metals during algae bloom in Xiangjiang River (Hunan, China). Scientia Sinica Vitae. 2011;41(8):669–677.
  • Wu Z. Nutritional value of snail. Rural Culture Technol. 1998;10:12.
  • Lu HF, Zheng SJ, Fang MJ, et al. Identification of species and nutritional analysis of alpine thin-shelled Cipangopaludina from Qingyuan County, Zhejiang Province. Food Sci. 2013;34(17):309–312.
  • Xu MJ, Zhao RQ. Effect of snail meat shell powder feeding on laying hens. Chin Feed. 1997;22:41–44.
  • He JZ, Zhao PC, Yang K, et al. Determination of 27 microelements in 11 shellfishes. Spectrosc Spect Anal. 2006;26(09):1720–1723.

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