Aix Marseille Univ, CEA, CNRS, BIAM, UMR 7265, Photosynthesis and Environment, F-13108 Saint Paul-Lez-Durance, France.
Groupe Biomasse 3G, CEA Tech, CEA Cadarache, F-13108 Saint-Paul-Lez-Durance, France.
J Exp Bot. 2021 Sep 30;72(18):6467-6473. doi: 10.1093/jxb/erab261.
The absorbance shift of pigments is proportional to the membrane potential (Δψ) in plants, green algae, and many photosynthetic bacteria. It is currently denoted as ElectroChromic Shift (ECS) at 515-520 nm for plant carotenoids. It is increasingly being used for phenotyping plants for traits related to photosynthesis or chloroplast metabolism because it is a non-invasive technique and also because more instruments are now commercially available from various manufacturers. The ECS technique is currently used to monitor the post-illumination decay of the proton-motive force (pmf), but it has a more general use for quantitative studies on photosynthetic energy transduction. Here we briefly summarize the basic knowledge on ECS, emphasize the full potential of this technique, and propose a quantitative analysis of the photosynthetic performance with the definition of a transmission coefficient for electrons along the photosynthetic chain.
色素的吸收位移与植物、绿藻和许多光合细菌的膜电位(Δψ)成正比。目前,植物类胡萝卜素的 515-520nm 处的吸收位移被表示为电致变色位移(ECS)。由于它是非侵入性技术,而且现在有更多的仪器可供各种制造商商业化,因此它越来越被用于对与光合作用或叶绿体代谢相关的性状进行植物表型分析。该 ECS 技术目前用于监测质子动力势(pmf)的光照后衰减,但它在光合作用能量传递的定量研究中有更广泛的用途。在这里,我们简要总结了 ECS 的基本知识,强调了该技术的全部潜力,并通过定义电子沿光合链的传递系数,对光合性能进行了定量分析。