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DOIhttps://doi.pangaea.de/10.1594/PANGAEA.917678
Seawater carbonate chemistry and growth and enzyme activities of Nitzschia closterium
Li; Keqiang; Li; Min; He; Yunfeng; Gu; Xingyan; Pang; Kai; Ma; Yunpeng
发布日期2020-05-20
数据集类型dataset
英文关键词Bottles or small containers/Aquaria ( 20 L) ; Chromista ; Growth/Morphology ; Laboratory experiment ; Laboratory strains ; Macro-nutrients ; Nitzschia closterium ; Not applicable ; Ochrophyta ; Other metabolic rates ; Pelagos ; Phytoplankton ; Single species
英文简介In this study, Nitzschia closterium was incubated in seawater at different pH values (8.10, 7.71, and 7.45) and using different nitrogen forms (NO3–N and NH4–N) in the laboratory. The results showed that the growth of N. closterium was inhibited by ocean acidification, with individuals under lower pH levels showing lower growth rates and lower nitrogen uptake rates for both nitrogen forms. The Vmax/Ks ratio decreased with decreasing pH, indicating the inhibition of nitrogen uptake, whereas the ratios for NH4–N cultures were higher than those for NO3–N cultures, implying the highly competitive position of NH4–N. Acidification might induce reactive oxygen species based on the result that the maximum enzyme activities of SuperOxide Dismutase (SOD) and CATalase (CAT) increased under lower pH levels. The SOD and CAT activities for the NO3–N cultures were higher than those for NH4–N cultures at the low pH level, indicating that acidification might cause more oxidative stress for NO3–N cultures than for NH4–N cultures. Thus, ocean acidification might have a more detrimental effect on the growth of N. closterium under NO3–N conditions than NH4–N conditions, with a lower ratio (γ) of the maximum growth rate to the maximum nutrient uptake rate, and a drop in nitrate reductase activity under lower pH levels.
语种英语
国家国际
学科大类气候变化
学科子类气候变化
文献类型数据集
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/215562
推荐引用方式
GB/T 7714
Li,Keqiang,Li,et al. Seawater carbonate chemistry and growth and enzyme activities of Nitzschia closterium.2020-05-20.https://doi.pangaea.de/10.1594/PANGAEA.917678.
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