Department of Botany, Punjabi University, Patiala, India.
Department of Botany, Ravenshaw University, Cuttack, India.
J Basic Microbiol. 2020 Jun;60(6):532-542. doi: 10.1002/jobm.201900706. Epub 2020 Mar 11.
Interaction of pretilachlor with photosystem (PS)-II of the cyanobacterium Desmonostoc muscorum PUPCCC 405.10 has been studied in this paper. Pretilachlor negatively affected growth, chlorophyll a (Chl a), photosynthesis, and carbon dissimilation in a dose-dependent manner. Effects were also observed in PSs, especially PS-II (an 11-35% decrease), as well as the whole photosynthetic electron transport activity. The fluorescence emission spectrum of Chl a revealed a dose-dependent effect of pretilachlor on both the antenna and the core complex of PSs, with more severe effect on the former. Data of O-J-I-P fluorescence transient of Chl a revealed that pretilachlor interfered with electron flow between Q and Q sites of PS-II. It was further observed that pretilachlor decreased maximum fluorescence, variable and relative variable fluorescence, maximum quantum yield, quantum yield of electron transport, the rate of trapped exciton movement, quantum yield of electron transfer, and performance index of primary photochemistry; however, there was a progressive increase in the net rate of PS-II closure, quantum yield of energy dissipation, and effective antenna size per active reaction center. A decrease in photosynthetic activity leads to a decrease in carbon dissimilation, as evidenced by low activity of glucose-6-phosphate dehydrogenase and pyruvate kinase. Thus, pretilachlor, which is otherwise known to kill weeds by interfering with cell division, affected the growth of the cyanobacteria by interacting with PS-II.
本文研究了毒莠定与蓝藻地木耳 PUPCCC 405.10 光合系统 II(PS-II)的相互作用。毒莠定以剂量依赖的方式对生长、叶绿素 a(Chl a)、光合作用和碳分解产生负面影响。还观察到 PS 的作用,特别是 PS-II(减少 11-35%)以及整个光合作用电子传递活性。Chl a 的荧光发射光谱显示毒莠定对 PSs 的天线和核心复合物都有剂量依赖性的影响,对前者的影响更严重。Chl a 的 O-J-I-P 荧光瞬变数据表明,毒莠定干扰了 PS-II 中 Q 和 Q 位点之间的电子流。进一步观察到,毒莠定降低了最大荧光、可变荧光和相对可变荧光、最大量子产率、电子传递量子产率、受体激发能捕获效率、电子传递量子产率和原初光化学性能指数;然而,PS-II 关闭的净速率、能量耗散量子产率和每个活性反应中心的有效天线大小都呈递增趋势。光合作用活性的降低导致碳分解减少,这可以从葡萄糖-6-磷酸脱氢酶和丙酮酸激酶的低活性得到证明。因此,毒莠定通过与 PS-II 相互作用来杀死杂草,从而影响蓝藻的生长。