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Cyclic electron flow and light partitioning between the two photosystems in leaves of plants with different functional types

机译:具有不同功能类型的植物叶片两种光系统之间的循环电子流量和光分配

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Cyclic electron flow (CEF) around photosystem I (PSI) is essential for generating additional ATP and enhancing efficient photosynthesis. Accurate estimation of CEF requires knowledge of the fractions of absorbed light by PSI (f(I)) and PSII (f(II)), which are only known for a few model species such as spinach. No measures of f(I) are available for C-4 grasses under different irradiances. We developed a new method to estimate (1) f(II) in vivo by concurrently measuring linear electron flux through both photosystems LEFO2 in leaf using membrane inlet mass spectrometry (MIMS) and total electron flux through PSII (ETR2) using chlorophyll fluorescence by a Dual-PAM at low light and (2) CEF as ETR1-LEFO2For a C-3 grass, f(I) was 0.5 and 0.4 under control (high light) and shade conditions, respectively. C-4 species belonging to NADP-ME and NAD-ME subtypes had f(I) of 0.6 and PCK subtype had 0.5 under control. All shade-grown C-4 species had f(I) of 0.6 except for NADP-ME grass which had 0.7. It was also observed that f(I) ranged between 0.3 and 0.5 for gymnosperm, liverwort and fern species. CEF increased with irradiance and was induced at lower irradiances in C-4 grasses and fern relative to other species. CEF was greater in shade-grown plants relative to control plants except for C-4 NADP-ME species. Our study reveals a range of CEF and f(I) values in different plant functional groups. This variation must be taken into account for improved photosynthetic calculations and modelling.
机译:循环电子流量(CEF)在照相I(PSI)周围对于产生额外的ATP并增强有效的光合作用是必不可少的。 CEF的精确估计需要了解PSI(F(I))和PSII(F(II))的吸收光的分数,这对于诸如菠菜等少数模型物种仅为已知的。在不同的辐照下,不适用于C-4草的F(i)的措施。我们通过使用膜入口质谱法(MIMS)和通过PSII(ETR2)通过PSII(ETR2)通过PSII(ETR2)通过叶绿素荧光通过PSII(ETR2)中的光系统lefo2在叶片中估计(1)f(ii)在体内估计(1)f(ii)的新方法。低光和(2)CEF的双PAM作为C-3草的ETR1-LEFO2,F(i)分别在控制(高光)和阴影条件下为0.5和0.4。属于NADP-ME和NAD-ME亚型的C-4物种具有0.6和PCK亚型的F(I)在控制下具有0.5。除了NADP-ME草,均为0.6的所有遮阳性C-4物种都有0.6的F(i)。还观察到F(i)的范围在0.3和0.5之间,用于裸子植物,利物行和蕨类植物。 CEF随着辐照度的增加,相对于其他物种,在C-4草地和蕨类植物的较低辐照下诱导。除了C-4 NADP-ME物种之外,CEF在相对于对照植物中的遮蔽植物更大。我们的研究揭示了不同植物官能团中的一系列CEF和F(I)值。必须考虑这种变化,以改善光合计算和建模。

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