Shift in algal blooms from micro‐ to macroalgae around China with increasing eutrophication and climate change

赤潮 富营养化 水华 海洋学 环境科学 布鲁姆 气候变化 中国 放牧压力 放牧 藻类 生态学 生物 营养物 浮游植物 地理 地质学 考古
作者
Yuan Feng,Yonglong Xiong,Jason M. Hall‐Spencer,Kailin Liu,John Beardall,Kunshan Gao,Jingke Ge,Juntian Xu,Guang Gao
出处
期刊:Global Change Biology [Wiley]
卷期号:30 (1): e17018-e17018 被引量:107
标识
DOI:10.1111/gcb.17018
摘要

Abstract Blooms of microalgal red tides and macroalgae (e.g., green and golden tides caused by Ulva and Sargassum ) have caused widespread problems around China in recent years, but there is uncertainty around what triggers these blooms and how they interact. Here, we use 30 years of monitoring data to help answer these questions, focusing on the four main species of microalgae Prorocentrum donghaiense , Karenia mikimotoi , Noctiluca scintillans , and Skeletonema costatum ) associated with red tides in the region. The frequency of red tides increased from 1991 to 2003 and then decreased until 2020, with S. costatum red tides exhibiting the highest rate of decrease. Green tides started to occur around China in 1999 and the frequency of green tides has since been on the increase. Golden tides were first reported to occur around China in 2012. The frequency of macroalgal blooms has a negative linear relationship with the frequency and coverage of red tides around China, and a positive correlation with total nitrogen and phosphorus loads as well as with atmospheric CO 2 and sea surface temperature (SST). Increased outbreaks of macroalgal blooms are very likely due to worsening levels of eutrophication, combined with rising CO 2 and SST, which contribute to the reduced frequency of red tides. The increasing grazing rate of microzooplankton also results in the decline in areas affected by red tides. This study shows a clear shift of algal blooms from microalgae to macroalgae around China over the past 30 years driven by the combination of eutrophication, climate change, and grazing stress, indicating a fundamental change in coastal systems in the region.
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