School of Environmental Science and Engineering, Guangzhou University, Guangzhou 510006, China.
J Environ Sci (China). 2009;21(11):1569-74. doi: 10.1016/s1001-0742(08)62457-2.
Acute toxicity of excess Cu on the photosynthetic performance of Chlorella pyrenoidosa was examined by using chlorophyll a fluorescence transients and JIP-test after exposure to elevated Cu concentrations for a short time period. High Cu concentration resulted in a significant suppression in photosynthesis and respiration. The absorption flux (ABS/RC) per PSII reaction center increased with increasing Cu concentration, but the electron transport flux (ET0/RC) decreased. Excess Cu had an insignificant effect on the trapping flux (TR0/RC). The decline in the efficiency, with which a trapped exciton can move an electron into the electron transport chain further than Q(A)-(Psi0), the maximal quantum yield of primary photochemistry (Phi0), and the quantum yield of electron transport (Phi(E)0) were also observed. The amount of active PSII reaction centers per excited cross section (RC/CS) was also in consistency with the change of photosynthesis when cells were exposed to excess Cu concentration. JIP-test parameters had a good linear relationship with photosynthetic O2 evolution. These results suggested that the decrease of photosynthesis in exposure to excess Cu may be a result of the inactivation of PSII reaction centers and the inhibition of electron transport in the acceptor side.
采用叶绿素荧光瞬变和 JIP 测试技术,研究了短期高浓度铜暴露对蛋白核小球藻光合作用性能的急性毒性。结果表明,高浓度铜显著抑制了光合作用和呼吸作用。随着铜浓度的增加,单位 PSII 反应中心的吸收通量(ABS/RC)增加,而电子传递通量(ET0/RC)降低。过量的铜对捕获通量(TR0/RC)没有显著影响。电子传递链中,激子向电子传递链进一步移动的效率下降,即光系统 II 最大光化学量子产量(Phi0)和电子传递量子产量(Phi(E)0)也随之下降。当细胞暴露在过量铜浓度下时,每个激发截面的有效 PSII 反应中心数量(RC/CS)也与光合作用的变化一致。JIP 测试参数与光合作用 O2 释放呈良好的线性关系。这些结果表明,暴露于过量铜可能导致 PSII 反应中心失活和受体侧电子传递抑制,从而导致光合作用的降低。