Effects of artemisinin (derived from Artemisia annua) on the photosynthetic activity of Microcystis aeruginosa was investigated by using chlorophyll a (Chl a) fluorescence transient O-J-I-P and JIP-test after exposure to elevated artemisinin concentration. High artemisinin concentration resulted in a significant suppression in photosynthesis and respiration. Results showed that the OJIP curves flattened and the maximal fluorescence yield reached at the J step under artemisinin stress. The decreased values of the energy needed for the RCs' closure (Sm) and the number of oxidation and reduction (N) suggested that the reduction times of primary bound plastoquinone (Q(A)) was also decreased. The absorption flux (ABS/RC) per photosystem II (PSII) reaction center and the electron transport flux (ET(0)/RC) decreased with increasing artemisinin concentration. Excess artemisinin had little effect on the trapping flux (TR(0)/RC). The results showed that the decrease of photosynthesis in exposure to excess artemisinin may be a result of the inactivation of PSII reaction centers and the inhibition of electron transport in the acceptor side.

译文

采用叶绿素a (Chl a) 荧光瞬变O-J-I-P和JIP-试验,研究了青蒿素 (黄花蒿) 对铜绿微囊藻光合活性的影响。青蒿素浓度高导致光合作用和呼吸作用的显着抑制。结果表明,在青蒿素胁迫下,OJIP曲线变平,在J步达到最大荧光产率。RCs' 闭合 (Sm) 所需的能量值以及氧化和还原次数 (N) 的降低表明,伯结合的质体醌 (Q(A)) 的还原时间也降低了。随着青蒿素浓度的增加,每个光系统II (PSII) 反应中心的吸收通量 (ABS/RC) 和电子传输通量 (ET(0)/RC) 降低。过量青蒿素对捕集通量 (TR(0)/RC) 影响不大。结果表明,暴露于过量青蒿素的光合作用降低可能是PSII反应中心失活和受体侧电子传输受到抑制的结果。

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