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首页> 外文期刊>Acta Physiologiae Plantarum >The acceptor side of photosystem II is damaged more severely than the donor side of photosystem II in ‘Honeycrisp’ apple leaves with zonal chlorosis
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The acceptor side of photosystem II is damaged more severely than the donor side of photosystem II in ‘Honeycrisp’ apple leaves with zonal chlorosis

机译:在带状黄斑病的“蜜酥”苹果叶片中,光系统II的受主侧比光系统II的供体侧受到的破坏更严重

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摘要

To investigate the photoinhibition of photosynthesis in ‘Honeycrisp’ apple (Malus domestica Borkh. cv. Gala) leaves with zonal chlorosis, we compared pigments, CO2 assimilation and chlorophyll (Chl) a fluorescence (OJIP) transient between chlorotic leaves and normal ones. Chl and carotenoids (Car) contents, Chl a/b ratio, and absorptance were lower in chlorotic leaves than in normal ones, whereas Car/Chl ratio was higher in the former. Although CO2 assimilation and stomatal conductance were lower in chlorotic leaves, intercellular CO2 concentration did not differ significantly between the two leaf types. Compared with normal leaves, chlorotic ones had increased deactivation of oxygen-evolving complexes (OEC), minimum fluorescence (F o), dissipated energy, relative variable fluorescence at L-, W-, J- and I-steps, and decreased maximum fluorescence (F m), maximum quantum yield for primary photochemistry (F v /F m or TRo/ABS), quantum yield for electron transport (ETo/ABS), quantum yield for the reduction of end acceptors of photosystem I (PSI) (φRo and REo/ABS), maximum amplitude of IP phase, amount of active photosystem II (PSII) reaction centers (RCs) per cross section (CS) and total performance index (PItot,abs). In conclusion, photoinhibition occurs at both the donor (i.e., the OEC) and the acceptor sides of PSII in chlorotic leaves. The acceptor side is damaged more severely than the donor side, which possibly is the consequence of over-reduction of PSII due to the slowdown of Calvin cycle. In addition to decreasing light absorptance by lowering Chl level, energy dissipation is enhanced to protect chlorotic leaves from photo-oxidative damage.
机译:为了研究带状黄化的'蜜酥'苹果(Malus domestica Borkh。cv。Gala)叶片中光合作用的光抑制作用,我们比较了色素,CO 2 同化作用和叶绿素(Chl)a荧光(OJIP)瞬时变化在褪绿叶和正常叶之间。褪绿叶中的Chl和类胡萝卜素(Car)含量,Chl a / b比和吸收率均低于正常叶片,而Car / Chl比在前者中较高。尽管褪绿叶中的CO 2 同化和气孔导度较低,但两种叶片之间的细胞间CO 2 浓度没有显着差异。与正常叶片相比,绿叶叶片具有更高的去氧复合物(OEC)失活,最小荧光(F o ),耗散能量,在L-,W-,J-和I处相对可变的荧光步骤,最大荧光(F m )减小,初级光化学的最大量子产率(F v / F m 或TR o / ABS),电子传输的量子产率(ET o / ABS),光系统I(PSI)的末端受体还原的量子产率(φ Ro 和RE o / ABS),IP相的最大振幅,每个横截面(CS)的活性光系统II(PSII)反应中心(RCs)的数量以及总性能指标(PI tot,abs )。总之,光抑制作用发生在褪绿叶的PSII的供体(即OEC)和受体侧。受体侧比供体侧受到更严重的破坏,这可能是由于卡尔文循环的减慢导致PSII过度减少的结果。除了通过降低Chl含量降低吸光度外,还增强了能量消散能力,以保护绿藻叶片免受光氧化损伤。

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