大型水蚤
微囊藻毒素
铜绿微囊藻
水蚤
微囊藻
生物
蓝毒素
蓝藻
淡水生态系统
枝角类
水华
水生生态系统
浮游动物
新陈代谢
蛋白质组学
生物化学
生态系统
毒性
生态学
营养物
化学
细菌
浮游植物
基因
遗传学
有机化学
作者
Kai Lyu,Qingguo Meng,Xuexia Zhu,Daoxin Dai,Lu Zhang,Yuan Huang,Zhou Yang
标识
DOI:10.1021/acs.est.6b00101
摘要
Global warming and increased nutrient fluxes cause cyanobacterial blooms in freshwater ecosystems. These phenomena have increased the concern for human health and ecosystem services. The mass occurrences of toxic cyanobacteria strongly affect freshwater zooplankton communities, especially the unselective filter feeder Daphnia. However, the molecular mechanisms of cyanobacterial toxicity remain poorly understood. This study is the first to combine the established body growth rate (BGR), which is an indicator of life-history fitness, with differential peptide labeling (iTRAQ)-based proteomics in Daphnia magna influenced by microcystin-producing (MP) and microcystin-free (MF) Microcystis aeruginosa. A significant decrease in BGR was detected when D. magna was exposed to MP or MF M. aeruginosa. Conducting iTRAQ proteomic analyses, we successfully identified and quantified 211 proteins with significant changes in expression. A cluster of orthologous groups revealed that M. aeruginosa-affected differential proteins were strongly associated with lipid, carbohydrate, amino acid, and energy metabolism. These parameters could potentially explain the reduced fitness based on the cost of the substance metabolism.
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