Salinity decline promotes growth and harmful blooms of a toxic alga by diverting carbon flow

盐度 水华 海湾 环境科学 海洋学 温盐度图 生态学 环境化学 生物 化学 浮游植物 地质学 营养物
作者
Xinguo Shi,Yazhen Zou,Yingjiao Zhang,Guangmao Ding,Yuchun Xiao,Senjie Lin,Jianfeng Chen
出处
期刊:Global Change Biology [Wiley]
卷期号:30 (6): e17348-e17348 被引量:9
标识
DOI:10.1111/gcb.17348
摘要

Global climate change intensifies the water cycle and makes freshest waters become fresher and vice-versa. But how this change impacts phytoplankton in coastal, particularly harmful algal blooms (HABs), remains poorly understood. Here, we monitored a coastal bay for a decade and found a significant correlation between salinity decline and the increase of Karenia mikimotoi blooms. To examine the physiological linkage between salinity decreases and K. mikimotoi blooms, we compare chemical, physiological and multi-omic profiles of this species in laboratory cultures under high (33) and low (25) salinities. Under low salinity, photosynthetic efficiency and capacity as well as growth rate and cellular protein content were significantly higher than that under high salinity. More strikingly, the omics data show that low salinity activated the glyoxylate shunt to bypass the decarboxylation reaction in the tricarboxylic acid cycle, hence redirecting carbon from CO2 release to biosynthesis. Furthermore, the enhanced glyoxylate cycle could promote hydrogen peroxide metabolism, consistent with the detected decrease in reactive oxygen species. These findings suggest that salinity declines can reprogram metabolism to enhance cell proliferation, thus promoting bloom formation in HAB species like K. mikimotoi, which has important ecological implications for future climate-driven salinity declines in the coastal ocean with respect to HAB outbreaks.
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