海草床生态系统中微塑料的检测方法、赋存特征及毒理效应研究进展
Advances in Detection Methods, Fate Characteristics and Toxicological Effects of Microplastics in Seagrass Ecosystems
-
摘要: 微塑料作为一种新污染物,在海洋环境中被频繁检出,对海洋生物和环境的生态风险受到越来越广泛的关注。海草床作为一个重要的海洋“蓝碳”生态系统,正受着微塑料污染的潜在威胁。本文梳理了海草床生态系统中微塑料的分离提取与定性定量检测方法,系统总结了海草床中微塑料的赋存特征,归纳了其对海草床生态系统的毒理效应。在此基础上,提出现有研究存在的问题以及未来的研究方向,以期为海草床生态系统中微塑料的风险评估和污染防控提供支撑。Abstract: Microplastics, as a type of emerging contaminant, are frequently detected in the marine environment, and the ecological risks to marine life and the environment have received more and more widespread attention. As an important marine "blue carbon" ecosystem, seagrass beds are also under the potential threat of microplastic pollution. This paper reviewed the separation, extraction, and qualitative and quantitative detection methods of microplastics in seagrass bed ecosystems, and systematically summarized the occurrence characteristics of microplastics, as well as the toxicological effects in seagrass bed ecosystems. On this basis, the existing problems and future research directions are proposed to provide support for the risk assessment and pollution prevention and control of microplastics in seagrass bed ecosystems.
-
-
Filho W L, Havea P H, Balogun A L, et al. Plastic debris on Pacific Islands:Ecological and health implications [J]. The Science of the Total Environment, 2019, 670:181-187 Paletta A, Leal Filho W, Balogun A L, et al. Barriers and challenges to plastics valorisation in the context of a circular economy:Case studies from Italy [J]. Journal of Cleaner Production, 2019, 241:118149 Cózar A, Echevarría F, González-Gordillo J I, et al. Plastic debris in the open ocean [J]. Proceedings of the National Academy of Sciences of the United States of America, 2014, 111(28):10239-10244 Luo H W, Liu C Y, He D Q, et al. Environmental behaviors of microplastics in aquatic systems:A systematic review on degradation, adsorption, toxicity and biofilm under aging conditions [J]. Journal of Hazardous Materials, 2022, 423(Pt A):126915 Sun Y Z, Duan C X, Cao N, et al. Biodegradable and conventional microplastics exhibit distinct microbiome, functionality, and metabolome changes in soil [J]. Journal of Hazardous Materials, 2022, 424(Pt A):127282 Law K L, Thompson R C. Oceans. microplastics in the seas [J]. Science, 2014, 345(6193):144-145 李道季, 董旭日. 海洋环境中的微塑料及其附着生物研究进展[J]. 华东师范大学学报(自然科学版), 2022(3):1-7 Li D J, Dong X R. Research progress of microplastics and attached organisms in marine environment [J]. Journal of East China Normal University (Natural Science), 2022(3):1-7(in Chinese) Short F T, Polidoro B, Livingstone S R, et al. Extinction risk assessment of the world's seagrass species [J]. Biological Conservation, 2011, 144:1961-1971 Les D H, Cleland M A, Waycott M. Phylogenetic studies in Alismatidae Ⅱ. Evolution of marine angiosperms (seagrasses) and hydrophily [J]. Systematic Botany, 1997, 22:443-463 Short F, Carruthers T, Dennison W, et al. Global seagrass distribution and diversity:A bioregional model [J]. Journal of Experimental Marine Biology and Ecology, 2007, 350(1-2):3-20 Unsworth R K F, McKenzie L J, Collier C J, et al. Global challenges for seagrass conservation [J]. Ambio, 2019, 48(8):801-815 郑凤英, 邱广龙, 范航清, 等. 中国海草的多样性、分布及保护[J]. 生物多样性, 2013, 21(5):517-526 Zheng F Y, Qiu G L, Fan H Q, et al. Diversity, distribution and conservation of Chinese seagrass species [J]. Biodiversity Science, 2013, 21(5):517-526(in Chinese)
Den H C, Yang Z D. A catalogue of the seagrasses of China [J]. Chinese Journal of Oceanology and Limnology, 1990, 8:74-91 黄小平, 江志坚, 范航清, 等. 中国海草的"藻"名更改[J]. 海洋与湖沼, 2016, 47(1):290-294 Huang X P, Jiang Z J, Fan H Q, et al. The nomenclature of the "algae" name of seagrasses in China [J]. Oceanologia et Limnologia Sinica, 2016, 47(1):290-294(in Chinese)
蔡泽富, 陈石泉, 吴钟解, 等. 海南岛海湾与潟湖中海草的分布差异及影响分析[J]. 海洋湖沼通报, 2017(3):74-84 Cai Z F, Chen S Q, Wu Z J, et al. Distribution differences and environmental effects of seagrasses between bays and lagoons of Hainan Island [J]. Transactions of Oceanology and Limnology, 2017 (3):74-84(in Chinese)
Lamb J B, van de Water J A, Bourne D G, et al. Seagrass ecosystems reduce exposure to bacterial pathogens of humans, fishes, and invertebrates [J]. Science, 2017, 355(6326):731-733 Fourqurean J W, Duarte C M, Kennedy H, et al. Seagrass ecosystems as a globally significant carbon stock [J]. Nature Geoscience, 2012, 5(7):505-509 Macreadie P I, Baird M E, Trevathan-Tackett S M, et al. Quantifying and modelling the carbon sequestration capacity of seagrass meadows:A critical assessment [J]. Marine Pollution Bulletin, 2014, 83(2):430-439 Nordlund L M, Jackson E L, Nakaoka M, et al. Seagrass ecosystem services:What's next? [J]. Marine Pollution Bulletin, 2018, 134:145-151 Orth R J, Carruthers T J B, Dennison W C, et al. A global crisis for seagrass ecosystems [J]. BioScience, 2006, 56(12):987-996 Waycott M, Duarte C M, Carruthers T J, et al. Accelerating loss of seagrasses across the globe threatens coastal ecosystems [J]. Proceedings of the National Academy of Sciences of the United States of America, 2009, 106(30):12377-12381 Yang D T, Yang C Y. Detection of seagrass distribution changes from 1991 to 2006 in Xincun Bay, Hainan, with satellite remote sensing [J]. Sensors, 2009, 9:830-844 陈石泉, 王道儒, 吴钟解, 等. 海南岛东海岸海草床近10a变化趋势探讨[J]. 海洋环境科学, 2015, 34(1):48-53 Chen S Q, Wang D R, Wu Z J, et al. Discussion of the change trend of the seagrass beds in the east coast of Hainan Island in nearly a decade [J]. Marine Environmental Science, 2015, 34(1):48-53(in Chinese)
王帅. 陵水新村潟湖及其周边生态系统微塑料分布特征与表面微生物膜的形成与演替[D]. 三亚:海南热带海洋学院, 2022:11 Wang S. Distribution of microplastics and its biofilm formation and succession characteristics in Xincun lagoon and surrounding ecosystems [D]. Sanya:Hainan Tropical Ocean College, 2022:11(in Chinese) 陈石泉, 吴钟解, 陈晓慧, 等. 海南岛南部海草资源分布现状调查分析[J]. 海洋学报, 2015, 37(6):106-113 Chen S Q, Wu Z J, Chen X H, et al. Investigation and analysis of the distribution status of seagrass resources in the southern part of Hainan Island [J]. Acta Oceanologica Sinica, 2015, 37(6):106-113(in Chinese)
Goss H, Jaskiel J, Rotjan R. Thalassia testudinum as a potential vector for incorporating microplastics into benthic marine food webs [J]. Marine Pollution Bulletin, 2018, 135:1085-1089 Jones K L, Hartl M G J, Bell M C, et al. Microplastic accumulation in a Zostera marina L. bed at Deerness Sound, Orkney, Scotland [J]. Marine Pollution Bulletin, 2020, 152:110883 Menicagli V, Balestri E, Vallerini F, et al. Plastics and sedimentation foster the spread of a non-native macroalga in seagrass meadows [J]. The Science of the Total Environment, 2021, 757:143812 Chae Y, An Y J. Effects of micro- and nanoplastics on aquatic ecosystems:Current research trends and perspectives [J]. Marine Pollution Bulletin, 2017, 124(2):624-632 de los Santos C B, Krång A S, Infantes E. Microplastic retention by marine vegetated canopies:Simulations with seagrass meadows in a hydraulic flume [J]. Environmental Pollution, 2021, 269:116050 Menicagli V, Castiglione M R, Balestri E, et al. Early evidence of the impacts of microplastic and nanoplastic pollution on the growth and physiology of the seagrass Cymodocea nodosa [J]. Science of the Total Environment, 2022, 838:156514 Zhao L C, Ru S G, He J L, et al. Eelgrass (Zostera marina) and its epiphytic bacteria facilitate the sinking of microplastics in the seawater [J]. Environmental Pollution, 2022, 292:118337 Huang Y Z, Xiao X, Xu C C, et al. Seagrass beds acting as a trap of microplastics:Emerging hotspot in the coastal region? [J]. Environmental Pollution, 2020, 257:113450 Zhao S Y, Danley M, Ward J E, et al. An approach for extraction, characterization and quantitation of microplastic in natural marine snow using Raman microscopy [J]. Analytical Methods, 2017, 9(9):1470-1478 Coppock R L, Cole M, Lindeque P K, et al. A small-scale, portable method for extracting microplastics from marine sediments [J]. Environmental Pollution, 2017, 230:829-837 Unsworth R K F, Higgs A, Walter B, et al. Canopy accumulation:Are seagrass meadows a sink of microplastics? [J]. Oceans, 2021, 2(1):162-178 Sridhar A, Kannan D, Kapoor A, et al. Extraction and detection methods of microplastics in food and marine systems:A critical review [J]. Chemosphere, 2022, 286(Pt 1):131653 Nuelle M T, Dekiff J H, Remy D, et al. A new analytical approach for monitoring microplastics in marine sediments [J]. Environmental Pollution, 2014, 184:161-169 Imhof H K, Schmid J, Niessner R, et al. A novel, highly efficient method for the separation and quantification of plastic particles in sediments of aquatic environments [J]. Limnology and Oceanography:Methods, 2012, 10(7):524-537 Claessens M, van Cauwenberghe L, Vandegehuchte M B, et al. New techniques for the detection of microplastics in sediments and field collected organisms [J]. Marine Pollution Bulletin, 2013, 70(1-2):227-233 Nguyen B, Claveau-Mallet D, Hernandez L M, et al. Separation and analysis of microplastics and nanoplastics in complex environmental samples [J]. Accounts of Chemical Research, 2019, 52(4):858-866 Imhof H K, Laforsch C, Wiesheu A C, et al. Pigments and plastic in limnetic ecosystems:A qualitative and quantitative study on microparticles of different size classes [J]. Water Research, 2016, 98:64-74 La Nasa J, Biale G, Fabbri D, et al. A review on challenges and developments of analytical pyrolysis and other thermoanalytical techniques for the quali-quantitative determination of microplastics [J]. Journal of Analytical and Applied Pyrolysis, 2020, 149:104841 Fendall L S, Sewell M A. Contributing to marine pollution by washing your face:Microplastics in facial cleansers [J]. Marine Pollution Bulletin, 2009, 58(8):1225-1228 Hinojosa I A, Thiel M. Floating marine debris in fjords, gulfs and channels of southern Chile [J]. Marine Pollution Bulletin, 2009, 58(3):341-350 王江涛, 赵婷, 谭丽菊, 等. 海洋微塑料来源、分布及生态效应研究进展[J]. 海洋科学, 2020, 44(7):79-85 Wang J T, Zhao T, Tan L J, et al. Research progress in sources, distributions, and ecological effects of marine microplastics [J]. Marine Sciences, 2020, 44(7):79-85(in Chinese)
Eriksen M, Lebreton L C M, Carson H S, et al. Plastic pollution in the world's oceans:More than 5 trillion plastic pieces weighing over 250, 000 tons afloat at sea [J]. PLoS One, 2014, 9(12):e111913 Thompson R, Moore C, Andrady A, et al. New directions in plastic debris [J]. Science, 2005, 310(5751):1117 Cozzolino L, Nicastro K R, Zardi G I, et al. Species-specific plastic accumulation in the sediment and canopy of coastal vegetated habitats [J]. Science of the Total Environment, 2020, 723:138018 Dahl M, Bergman S, Björk M, et al. A temporal record of microplastic pollution in Mediterranean seagrass soils [J]. Environmental Pollution, 2021, 273:116451 Ramili Y, Umasangaji H. An assessment of microplastics (MPs) sedimentary accumulation in seagrass meadows of mare island conservation area, North Maluku, Indonesia [J]. Omni-Akuatika, 2022, 18(S1):48 Kreitsberg R, Raudna-Kristoffersen M, Heinlaan M, et al. Seagrass beds reveal high abundance of microplastic in sediments:A case study in the Baltic Sea [J]. Marine Pollution Bulletin, 2021, 168:112417 Plee T A, Pomory C M. Microplastics in sandy environments in the Florida Keys and the panhandle of Florida, and the ingestion by sea cucumbers (Echinodermata:Holothuroidea) and sand dollars (Echinodermata:Echinoidea) [J]. Marine Pollution Bulletin, 2020, 158:111437 Hartline N L, Bruce N J, Karba S N, et al. Microfiber masses recovered from conventional machine washing of new or aged garments [J]. Environmental Science & Technology, 2016, 50(21):11532-11538 Gerstenbacher C M, Finzi A C, Rotjan R D, et al. A review of microplastic impacts on seagrasses, epiphytes, and associated sediment communities [J]. Environmental Pollution, 2022, 303:119108 Seeley M E, Song B, Passie R, et al. Microplastics affect sedimentary microbial communities and nitrogen cycling [J]. Nature Communications, 2020, 11:2372 van Cauwenberghe L, Devriese L, Galgani F, et al. Microplastics in sediments:A review of techniques, occurrence and effects [J]. Marine Environmental Research, 2015, 111:5-17 张辉, 彭宇琼, 邹贤妮, 等. 南亚热带特大型水库浮游植物群落特征及其与环境因子的关系:以新丰江水库为例[J]. 湖泊科学, 2022, 34(2):404-417 Zhang H, Peng Y Q, Zou X N, et al. The characteristics of phytoplankton community structure and its relationship with environmental factors of a large reservoir in subtropic of Southern China:A case study of Xinfengjiang Reservoir [J]. Journal of Lake Sciences, 2022, 34(2):404-417(in Chinese)
Wu Y M, Guo P Y, Zhang X Y, et al. Effect of microplastics exposure on the photosynthesis system of freshwater algae [J]. Journal of Hazardous Materials, 2019, 374:219-227 Buwono N R, Risjani Y, Soegianto A. Spatio-temporal patterns of occurrence of microplastics in the freshwater fish Gambusia affinis from the Brantas River, Indonesia [J]. Environmental Pollution, 2022, 311:119958 Chagnon C, Thiel M, Antunes J, et al. Plastic ingestion and trophic transfer between Easter Island flying fish (Cheilopogon rapanouiensis) and yellowfin tuna (Thunnus albacares) from Rapa Nui (Easter Island) [J]. Environmental Pollution, 2018, 243:127-133 Foekema E M, De Gruijter C, Mergia M T, et al. Plastic in north sea fish [J]. Environmental Science & Technology, 2013, 47(15):8818-8824 Suhrhoff T J, Scholz-Böttcher B M. Qualitative impact of salinity, UV radiation and turbulence on leaching of organic plastic additives from four common plastics:A lab experiment [J]. Marine Pollution Bulletin, 2016, 102(1):84-94 Luo H W, Liu C Y, He D Q, et al. Effects of aging on environmental behavior of plastic additives:Migration, leaching, and ecotoxicity [J]. The Science of the Total Environment, 2022, 849:157951 刘强, 徐旭丹, 黄伟, 等. 海洋微塑料污染的生态效应研究进展[J]. 生态学报, 2017, 37(22):7397-7409 Liu Q, Xu X D, Huang W, et al. Research advances on the ecological effects of microplastic pollution in the marine environment [J]. Acta Ecologica Sinica, 2017, 37(22):7397-7409(in Chinese)
孙晓霞. 海洋微塑料生态风险研究进展与展望[J]. 地球科学进展, 2016, 31(6):560-566 Sun X X. Progress and prospect on the study of the ecological risk of microplastics in the ocean [J]. Advances in Earth Science, 2016, 31(6):560-566(in Chinese)
杨秉倬, 黄河. 微塑料对红鲫鱼幼鱼抗氧化酶系统的影响[J]. 环境科学与技术, 2019, 42(12):23-27 Yang B Z, Huang H. Effect of microplastics on antioxidant enzyme system in juvenile red crucian carp [J]. Environmental Science & Technology, 2019, 42(12):23-27(in Chinese)
Ferreira G V B, Barletta M, Lima A R A. Use of estuarine resources by top predator fishes. How do ecological patterns affect rates of contamination by microplastics? [J]. The Science of the Total Environment, 2019, 655:292-304 -

计量
- 文章访问数: 1508
- HTML全文浏览数: 1508
- PDF下载数: 122
- 施引文献: 0