首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Combined dynamics of the 500-600 nm leaf absorption and chlorophyll fluorescence changes in vivo: Evidence for the multifunctional energy quenching role of xanthophylls
【24h】

Combined dynamics of the 500-600 nm leaf absorption and chlorophyll fluorescence changes in vivo: Evidence for the multifunctional energy quenching role of xanthophylls

机译:体内500-600nm叶片吸收和叶绿素荧光变化的组合动力学:磷酸镧的多功能能量猝灭作用的证据

获取原文
获取原文并翻译 | 示例
           

摘要

Carotenoids (Cars) regulate the energy flow towards the reaction centres in a versatile way whereby the switch between energy harvesting and dissipation is strongly modulated by the operation of the xanthophyll cycles. However, the cascade of molecular mechanisms during the change from light harvesting to energy dissipation remains spectrally poorly understood. By characterizing the in vivo absorbance changes (Delta A) of leaves from four species in the 500-600 nm range through a Gaussian decomposition, while measuring passively simultaneous Chla fluorescence (F) changes, we present a direct observation of the quick antenna adjustments during a 3-min dark-to-high-light induction. Underlying spectral behaviours of the 500-600 nm Delta A feature can be characterized by a minimum set of three Gaussians distinguishing very quick dynamics during the first minute. Our results show the parallel trend of two Gaussian components and the prompt Chla F quenching. Further, we observe similar quick kinetics between the relative behaviour of these components and the in vivo formations of antheraxanthin (Ant) and zeaxanthin (Zea), in parallel with the dynamic quenching of singlet excited chlorophyll alpha ((1)Chl alpha*) states. After these simultaneous quick kinetical behaviours of Delta A and F during the first minute, the 500-600 nm feature continues to increase, indicating a further enhanced absorption driven by the centrally located Gaussian until 3 min after sudden light exposure. Observing these precise underlying kinetic trends of the spectral behaviour in the 500-600 nm region shows the large potential of in vivo leaf spectroscopy to bring new insights on the quick redistribution and relaxation of excitation energy, indicating a key role for both Ant and Zea.
机译:类胡萝卜素(汽车)以多功能的方式调节朝向反应中心的能量流动,从而通过叶黄素循环的操作强烈调节能量收集和耗散之间的开关。然而,在从光收集到能量耗散的变化过程中的分子机制级联仍然明确地理解。通过在通过高斯分解的500-600nm范围内的四种物种中的体内吸收变化(Delta A)从400-600nm范围内进行,同时测量被动同时的CHLA荧光(F)的变化,我们展示了在快速天线调整期间的直接观察3分钟黑暗到高光感应。 500-600nm delta的基础光谱行为可以通过在第一分钟内区分非常快速的动态的最小三个高斯的最小集合。我们的结果显示了两个高斯组件的平行趋势和提示Chla F淬火。此外,我们在这些组分的相对行为和Zeaxanthin(Zea)的相对行为之间观察到类似的快速动力学与单线术突发叶绿素α((1)CHLα*)状态的动态猝灭并行。在第一分钟同时同时快速的ΔA和F的快速动态行为之后,500-600nm的特征继续增加,表明在突然光曝光后3分钟的中心位于中心位于中心的高斯驱动的进一步增强的吸收。在500-600nm区域中观察这些精确的潜在动力学趋势,显示了体内叶光光谱的大潜力,以提高对励磁能量的快速再分配和放松的新见解,表明蚂蚁和颧骨的关键作用。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号