Microalgal assemblages response to water quality remediation in coastal waters of Perth, Australia

被引:0
作者
Zhou, Chongran [1 ]
Liu, Dongyan [1 ]
Keesing, John [2 ,3 ]
Zhao, Ning [1 ]
Serrano, Oscar [4 ]
Masque, Pere [5 ,6 ]
Yuan, Zineng [7 ]
Jia, Yonghao [1 ]
Wang, Yujue [1 ]
机构
[1] East China Normal Univ, Inst Ecochongming, State Key Lab Estuarine & Coastal Res, Shanghai 200241, Peoples R China
[2] CSIRO Oceans & Atmosphere, Indian Ocean Marine Res Ctr, Crawley, WA, Australia
[3] Curtin Univ, Sch Mol & Life Sci, Perth, WA, Australia
[4] Consejo Super Invest Cient CEAB CSIC, Ctr Estudios Avanzados Blanes, Blanes, Spain
[5] Edith Cowan Univ, Sch Sci, Joondalup, WA, Australia
[6] Edith Cowan Univ, Ctr Marine Ecosyst Res, Joondalup, WA, Australia
[7] Laoshan Lab, Qingdao 266237, Peoples R China
基金
澳大利亚研究理事会; 中国国家自然科学基金;
关键词
Eutrophication; Nutrient reduction; Microalgal biomarker; Salinity; Sea -surface temperature; FRESH-WATER; CONTROLLING EUTROPHICATION; GEOCHEMICAL RECORDS; COMMUNITY STRUCTURE; NUTRIENT REDUCTION; WESTERN-AUSTRALIA; MARINE ECOSYSTEMS; COCKBURN SOUND; NORTH-ATLANTIC; PHYTOPLANKTON;
D O I
10.1016/j.envpol.2024.124017
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Nutrient reduction is an essential environmental policy for water quality remediation, but climate change can offset the ecological benefits of nutrient reduction and lead to the difficulty of environmental evaluation. Here, based on the records of three lipid microalgal biomarkers and stable isotopes of carbon and nitrogen in two sediment cores from the embayment of Perth, Australia, we reconstructed the microalgal biomasses (diatoms, dinoflagellates and coccolithophores) over the past century and evaluated the ecological effects of nutrient reduction on them, using Change Point Modeling (CPM) and redundancy analysis (RDA). The CPM result showed that total microalgal biomarkers increased by 25% and 51% in deep and shallow areas, respectively, due to nutrient enrichment caused by industrial wastewater in the 1950s and the causeway construction in the 1970s, and dinoflagellates were beneficiaries of eutrophication. The nutrient reduction policy since the 1980s had not decreased total microalgal biomass, and diatoms were beneficiaries of this period. RDA based on time series of sediment cores and water monitoring data revealed that the increase of sea -surface temperature and the decrease of rainfall since the 1980s may be important factors sustaining the high total microalgal biomass and increasing the degree of diatom dominance. The result also indicated that the variations of microalgal assemblages may better explain the effect of nutrient reduction rather than total microalgal biomass.
引用
收藏
页数:10
相关论文
共 84 条
[31]   Regional nitrogen budgets and riverine N&P fluxes for the drainages to the North Atlantic Ocean: Natural and human influences [J].
Howarth, RW ;
Billen, G ;
Swaney, D ;
Townsend, A ;
Jaworski, N ;
Lajtha, K ;
Downing, JA ;
Elmgren, R ;
Caraco, N ;
Jordan, T ;
Berendse, F ;
Freney, J ;
Kudeyarov, V ;
Murdoch, P ;
Zhu, ZL .
BIOGEOCHEMISTRY, 1996, 35 (01) :75-139
[32]   Relationship between biomass and enzymatic activity of a bloom-forming dinoflagellate (Dinophyceae) in southern Chile (41° S):: a field approach [J].
Iriarte, JL ;
Quiñones, RA ;
González, RR .
JOURNAL OF PLANKTON RESEARCH, 2005, 27 (02) :159-166
[33]  
Keesing J., 2016, Report to the Cockburn Sound Management Council and the West Australian Department of Water
[34]   Positive responses of a seagrass ecosystem to experimental nutrient enrichment [J].
Kelaher, Brendan P. ;
Van Den Broek, James ;
York, Paul H. ;
Bishop, Melanie J. ;
Booth, David J. .
MARINE ECOLOGY PROGRESS SERIES, 2013, 487 :15-25
[35]   Changes in seagrass coverage in Cockburn Sound, Western Australia between 1967 and 1999 [J].
Kendrick, GA ;
Aylward, MJ ;
Hegge, BJ ;
Cambridge, ML ;
Hillman, K ;
Wyllie, A ;
Lord, DA .
AQUATIC BOTANY, 2002, 73 (01) :75-87
[36]   Spring phytoplankton assemblages in the Southern Ocean between Australia and Antarctica [J].
Kopczynska, Elzbieta E. ;
Savoye, Nicolas ;
Dehairs, Frank ;
Cardinal, Damien ;
Elskens, Marc .
POLAR BIOLOGY, 2007, 31 (01) :77-88
[37]   GEOCHRONOLOGY OF LAKE SEDIMENTS [J].
KRISHNAS.S ;
LAL, D ;
MARTIN, JM ;
MEYBECK, M .
EARTH AND PLANETARY SCIENCE LETTERS, 1971, 11 (05) :407-&
[38]   Coccolithophore growth and calcification in a changing ocean [J].
Krumhardt, Kristen M. ;
Lovenduski, Nicole S. ;
Iglesias-Rodriguez, M. Debora ;
Kleypas, Joan A. .
PROGRESS IN OCEANOGRAPHY, 2017, 159 :276-295
[39]   The short-term combined effects of temperature and organic matter enrichment on permeable coral reef carbonate sediment metabolism and dissolution [J].
Lantz, Coulson A. ;
Schulz, Kai G. ;
Stoltenberg, Laura ;
Eyre, Bradley D. .
BIOGEOSCIENCES, 2017, 14 (23) :5377-5391
[40]   Predicting the consequences of nutrient reduction on the eutrophication status of the North Sea [J].
Lenhart, Hermann-J. ;
Mills, David K. ;
Baretta-Bekker, Hanneke ;
van Leeuwen, Sonja M. ;
van der Molen, Johan ;
Baretta, Job W. ;
Blaas, Meinte ;
Desmit, Xavier ;
Kuehn, Wilfried ;
Lacroix, Genevieve ;
Los, Hans J. ;
Menesguen, Alain ;
Neves, Ramiro ;
Proctor, Roger ;
Ruardij, Piet ;
Skogen, Morten D. ;
Vanhoutte-Brunier, Alice ;
Villars, Monique T. ;
Wakelin, Sarah L. .
JOURNAL OF MARINE SYSTEMS, 2010, 81 (1-2) :148-170