首页> 美国卫生研究院文献>Plant Physiology >Changes in the Xanthophyll Cycle and Fluorescence Quenching Indicate Light-Dependent Early Events in the Action of Paraquat and the Mechanism of Resistance to Paraquat in Erigeron canadensis (L.) Cronq
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Changes in the Xanthophyll Cycle and Fluorescence Quenching Indicate Light-Dependent Early Events in the Action of Paraquat and the Mechanism of Resistance to Paraquat in Erigeron canadensis (L.) Cronq

机译:叶黄素循环的变化和荧光猝灭指示百草枯中的百草枯作用和百草枯抗性机制中的光依赖性早期事件。

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摘要

Violaxanthin de-epoxidation, chlorophyll fluorescence quenching, and photosynthetic O2 evolution in the presence of paraquat (Pq) were studied in intact attached leaves of Pq-susceptible, and Pq-resistant (PqR) biotypes of Erigeron canadensis under different light conditions. Initially, similar changes were induced in the two biotypes, but the effects relaxed only in the PqR plants, indicating a Pq elimination process. The penetration of Pq into the chloroplasts of PqR plants proved to be somewhat restricted and highly light-dependent, as revealed by both the light response curves of violaxanthin de-epoxidation and fluorescence quenching and the short-term high-light pre-illumination experiments. An irregular down-regulation of the non-photochemical fluorescence quenching processes was observed, reflected by lower steady-state zeaxanthin and non-photochemical fluorescence quenching levels as compared with the corresponding non-treated high-light controls. It is concluded that light is essential not only for the initiation of the mechanism of resistance to Pq, but also for the penetration of Pq into the chloroplasts in the PqR E. canadensis. Also, the Pq elimination process may cause a modification to the regulation of the non-radiative energy dissipation in PqR plants in the presence of Pq.
机译:研究了百日草(Pq)存在下完整完整的附着Pq敏感叶片和加拿大Prig耐药(PqR)生物型在不同光照条件下的紫草黄素的脱环氧化作用,叶绿素荧光猝灭和光合O2的演化。最初,在两种生物型中诱导了类似的变化,但是作用仅在PqR植物中有所缓解,表明Pq消除过程。紫黄嘌呤脱环氧化和荧光猝灭的光响应曲线以及短期高光预照明实验均表明,Pq渗透到PqR植物的叶绿体中受到一定程度的限制和高度光依赖性。观察到非光化学荧光猝灭过程的不规则下调,反映出与相应的未处理的高光对照相比,较低的稳态玉米黄质和非光化学荧光猝灭水平。结论是,光不仅对于启动对Pq的抗性机制至关重要,而且对于Pq进入加拿大PqR。E.的叶绿体中的渗透也是必不可少的。同样,Pq消除过程可能会导致在存在Pq的情况下对PqR工厂中非辐射能量耗散的调节进行修改。

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