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同时分析铬胁迫下铜绿微囊藻的光系统响应。

Simultaneous analysis of photosystem responses of Microcystis aeruginoga under chromium stress.

机构信息

State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China.

出版信息

Ecotoxicol Environ Saf. 2013 Feb;88:163-8. doi: 10.1016/j.ecoenv.2012.11.009. Epub 2012 Dec 8.

Abstract

Chromium (Cr) is a toxic metal that poses a great threat to aquatic ecosystems. Information is limited on coinstantaneous responses of photosystems I (PSI) and II (PSII) to Cr(VI) stress due to lack of instruments that can simultaneously measure PSI and PSII activities. In the present study, responses of quantum yields of energy conversion and electron transport rates of PSI and PSII in Microcystis aeruginosa cells to Cr(VI) stress were simultaneously analyzed by a DUAL-PAM-100 system. Quantum yield of cyclic electron flow (CEF) under Cr(VI) stress and its physiological role in alleviating toxicity of Cr(VI) were also analyzed. At 5 mg L(-1) Cr(VI), quantum yield and electron transport rate of PSII decreased significantly, and light-induced non-photochemical fluorescence quenching lost. Cr(VI) also inhibited efficiency of PSII to use energy under high light more than of PSI. PSII showed lower maximal electron transport rate and light adaptability than PSI. Electron transport rate of PSI was higher and decreased less than that of PSII, implying less sensitivity of PSI to high light and Cr(VI). Energy dissipation through non-light-induced non-photochemical fluorescence quenching increased with increasing Cr(VI) concentration. CEF was stimulated under Cr(VI) treatment and made a significant contribution to quantum yield and electron transport of PSI, which was essential for protection of PSI from stresses of Cr(VI) and high light.

摘要

铬(Cr)是一种有毒金属,对水生生态系统构成巨大威胁。由于缺乏能够同时测量 PSI 和 PSII 活性的仪器,因此对于 Cr(VI)胁迫下 PSI 和 PSII 同时发生的反应的信息有限。本研究通过 DUAL-PAM-100 系统同时分析了 Cr(VI)胁迫下铜绿微囊藻细胞中 PSI 和 PSII 的能量转化量子产率和电子传递速率的响应。还分析了 Cr(VI)胁迫下循环电子流(CEF)的量子产率及其缓解 Cr(VI)毒性的生理作用。在 5 mg L(-1) Cr(VI)下,PSII 的量子产率和电子传递速率显着降低,并且光诱导的非光化学荧光猝灭消失。Cr(VI)还抑制了 PSII 在高光下利用能量的效率,超过了 PSI。PSII 的最大电子传递速率和光适应性均低于 PSI。PSI 的电子传递速率较高,下降幅度小于 PSII,表明 PSI 对高光和 Cr(VI)的敏感性较低。通过非光诱导的非光化学荧光猝灭的能量耗散随着 Cr(VI)浓度的增加而增加。在 Cr(VI)处理下,CEF 受到刺激,对 PSI 的量子产率和电子传递产生重大贡献,这对于保护 PSI 免受 Cr(VI)和高光的压力至关重要。

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