Lu C M, Chau C W, Zhang J H
Department of Biology, Hong Kong Baptist University, Kowloon Tong, People's Republic of China.
Chemosphere. 2000 Jul;41(1-2):191-6. doi: 10.1016/s0045-6535(99)00411-7.
Measurement of chlorophyll fluorescence has been shown to be a rapid, non-invasive, and reliable method to assess photosynthetic performance in a changing environment. In this study, acute toxicity of excess Hg on the photosynthetic performance of the cyanobacterium S. platensis, was investigated by use of chlorophyll fluorescence analysis after cells were exposed to excess Hg (up to 20 microM) for 2 h. The results determined from the fast fluorescence kinetics showed that Hg induced a significant increase in the proportion of the Q(B)-non-reducing PSII reaction centers. The fluorescence parameters measured under the steady state of photosynthesis demonstrated that the increase of Hg concentration led to a decrease in the maximal efficiency of PSII photochemistry, the efficiency of excitation energy capture by the open PSII reaction centers, and the quantum yield of PSII electron transport. Mercury also resulted in a decrease in the coefficients of photochemical and non-photochemical quenching. Mercury may have an acute toxicity on cyanobacteria by inhibiting the quantum yield of photosynthesis sensitively and rapidly. Such changes occurred before any other visible damages that may be evaluated by other conventional measurements. Our results also demonstrated that chlorophyll fluorescence analysis can be used as a useful physiological tool to assess early stages of change in photosynthetic performance of algae in response to heavy metal pollution.
叶绿素荧光测量已被证明是一种在不断变化的环境中评估光合性能的快速、非侵入性且可靠的方法。在本研究中,通过在细胞暴露于过量汞(高达20微摩尔)2小时后使用叶绿素荧光分析,研究了过量汞对蓝藻钝顶螺旋藻光合性能的急性毒性。从快速荧光动力学得出的结果表明,汞导致Q(B) - 非还原型PSII反应中心的比例显著增加。在光合作用稳态下测量的荧光参数表明,汞浓度的增加导致PSII光化学的最大效率、开放PSII反应中心捕获激发能的效率以及PSII电子传递的量子产率降低。汞还导致光化学猝灭和非光化学猝灭系数降低。汞可能通过敏感且快速地抑制光合作用的量子产率而对蓝藻产生急性毒性。这种变化发生在任何其他可通过其他传统测量评估的可见损伤之前。我们的结果还表明,叶绿素荧光分析可作为一种有用的生理工具,用于评估藻类光合性能因重金属污染而发生变化的早期阶段。