globalchange  > 过去全球变化的重建
DOI: 10.1016/j.marpolbul.2016.10.003
Scopus记录号: 2-s2.0-85009062635
论文题名:
Eutrophication and warming-driven green tides (Ulva rigida) are predicted to increase under future climate change scenarios
作者: Gao G.; Clare A.S.; Rose C.; Caldwell G.S.
刊名: Marine Pollution Bulletin
ISSN: 0025-326X
EISSN: 1879-3363
出版年: 2017
卷: 114, 期:1
起始页码: 439
结束页码: 447
语种: 英语
英文关键词: Eutrophication ; Germination ; Ocean acidification ; Ocean warming ; Reproduction ; Settlement
Scopus关键词: Acidification ; Biosynthesis ; Cultivation ; Eutrophication ; Nitrates ; Tides ; Germination ; Ocean acidifications ; Ocean warming ; Reproduction ; Settlement ; Climate change ; carbon dioxide ; carbonic acid ; nitrate ; nitric acid derivative ; protein ; climate change ; climate effect ; eutrophication ; germination ; green alga ; ocean acidification ; reproduction ; warming ; acidification ; adult plant ; algal bloom ; Article ; carbohydrate analysis ; climate change ; eutrophication ; fat content ; germination ; juvenile plant ; life history ; nonhuman ; ocean acidification ; ocean warming ; pH ; plant growth ; protein content ; reproductive success ; Ulva ; Ulva rigida ; water temperature ; climate change ; growth, development and aging ; lipid metabolism ; metabolism ; physiology ; reproduction ; seaweed ; temperature ; Ulva ; United Kingdom ; Ulva rigida ; Climate Change ; Eutrophication ; Germination ; Hydrogen-Ion Concentration ; Lipid Metabolism ; Nitrates ; Proteins ; Reproduction ; Seaweed ; Temperature ; Ulva ; United Kingdom
Scopus学科分类: Agricultural and Biological Sciences: Aquatic Science ; Earth and Planetary Sciences: Oceanography ; Environmental Science: Pollution
英文摘要: The incidence and severity of extraordinary macroalgae blooms (green tides) are increasing. Here, climate change (ocean warming and acidification) impacts on life history and biochemical responses of a causative green tide species, Ulva rigida, were investigated under combinations of pH (7.95, 7.55, corresponding to lower and higher pCO2), temperature (14, 18��C) and nitrate availability (6 and 150�μmol�L−�1). The higher temperature accelerated the onset and magnitude of gamete settlement. Any two factor combination promoted germination and accelerated growth in young plants. The higher temperature increased reproduction, which increased further in combination with elevated pCO2or nitrate. Reproductive success was highest (64.4���5.1%) when the upper limits of all three variables were combined. Biochemically, more protein and lipid but less carbohydrate were synthesized under higher temperature and nitrate conditions. These results suggest that climate change may cause more severe green tides, particularly when eutrophication cannot be effectively controlled. � 2016 Elsevier Ltd
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/87968
Appears in Collections:过去全球变化的重建
全球变化的国际研究计划

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作者单位: School of Marine Science and Technology, Newcastle University, Ridley Building, Newcastle upon Tyne, England, United Kingdom; Seaweed & Co. Ltd., Office 2.3 North Tyneside Business Centre, 54a Saville Street, North Tyneside, England, United Kingdom

Recommended Citation:
Gao G.,Clare A.S.,Rose C.,et al. Eutrophication and warming-driven green tides (Ulva rigida) are predicted to increase under future climate change scenarios[J]. Marine Pollution Bulletin,2017-01-01,114(1)
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