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Chlorophyll Fluorescence Imaging Analysis for Elucidating the Mechanism of Photosystem II Acclimation to Cadmium Exposure in the Hyperaccumulating Plant Noccaea caerulescens

机译:叶绿素荧光成像分析阐明超积累植物夜光藻中光系统II适应镉暴露的机理

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摘要

We provide new data on the mechanism of Noccaea caerulescens acclimation to Cd exposure by elucidating the process of photosystem II (PSII) acclimation by chlorophyll fluorescence imaging analysis. Seeds from the metallophyte N. caerulescens were grown in hydroponic culture for 12 weeks before exposure to 40 and 120 μM Cd for 3 and 4 days. At the beginning of exposure to 40 μM Cd, we observed a spatial leaf heterogeneity of decreased PSII photochemistry, that later recovered completely. This acclimation was achieved possibly through the reduced plastoquinone (PQ) pool signaling. Exposure to 120 μM Cd under the growth light did not affect PSII photochemistry, while under high light due to a photoprotective mechanism (regulated heat dissipation for protection) that down-regulated PSII quantum yield, the quantum yield of non-regulated energy loss in PSII (ΦNO) decreased even more than control values. Thus, N. caerulescens plants exposed to 120 μM Cd for 4 days exhibited lower reactive oxygen species (ROS) production as singlet oxygen (1O2). The response of N. caerulescens to Cd exposure fits the ‘Threshold for Tolerance Model’, with a lag time of 4 d and a threshold concentration of 40 μM Cd required for the induction of the acclimation mechanism.
机译:我们通过叶绿素荧光成像分析阐明了光系统II(PSII)驯化的过程,从而提供了关于Noccaea caerulescens适应Cd暴露机理的新数据。将来自金属藻的种子在水培培养中生长12周,然后暴露于40和120μMCd中3和4天。在暴露于40μMCd的开始时,我们观察到PSII光化学下降的空间叶异质性,后来其完全恢复。这种适应可能是通过减少的质体醌(PQ)库信号传递来实现的。在生长光下暴露于120μMCd不会影响PSII的光化学,而在强光下由于光保护机制(为了保护而调节散热)会下调PSII量子产率,PSII中非调控能量损失的量子产率(ΦNO)的下降幅度甚至超过控制值。因此,暴露于120μMCd下4天的蓝藻植物显示出较低的活性氧(ROS)生成单线态氧( 1 O2)。蓝藻对镉暴露的响应符合“耐受阈值模型”,滞后时间为4 d,诱导适应环境所需的阈值浓度为40μMCd。

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