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首页> 外文期刊>BMC Plant Biology >Photoinhibition and photoinhibition-like damage to the photosynthetic apparatus in tobacco leaves induced by pseudomonas syringae pv. Tabaci under light and dark conditions
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Photoinhibition and photoinhibition-like damage to the photosynthetic apparatus in tobacco leaves induced by pseudomonas syringae pv. Tabaci under light and dark conditions

机译:光合作用和烟叶叶片光合液的光合造成的烟雾造成的光素抑制损坏,由PseudomonasSyryring PV诱导。塔巴契在轻微和黑暗条件下

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Pseudomonas syringae pv. tabaci (Pst), which is the pathogen responsible for tobacco wildfire disease, has received considerable attention in recent years. The objective of this study was to clarify the responses of photosystem I (PSI) and photosystem II (PSII) to Pst infection in tobacco leaves. The net photosynthetic rate (Pn) and carboxylation efficiency (CE) were inhibited by Pst infection. The normalized relative variable fluorescence at the K step (W k) and the relative variable fluorescence at the J step (V J) increased while the maximal quantum yield of PSII (F v/F m) and the density of Q A-reducing PSII reaction centers per cross section (RC/CSm) decreased, indicating that the reaction centers, and the donor and acceptor sides of PSII were all severely damaged after Pst infection. The PSI activity decreased as the infection progressed. Furthermore, we observed a considerable overall degradation of PsbO, D1, PsaA proteins and an over-accumulation of reactive oxygen species (ROS). Photoinhibition and photoinhibition-like damage were observed under light and dark conditions, respectively, after Pst infection of tobacco leaves. The damage was greater in the dark. ROS over-accumulation was not the primary cause of the photoinhibition and photoinhibition-like damage. The PsbO, D1 and PsaA proteins appear to be the targets during Pst infection under light and dark conditions.
机译:假单胞菌皂苷PV。 Tabaci(PST)是近年来负责烟草野火疾病的病原体受到相当大的关注。本研究的目的是阐明烟草叶片中照相Ⅰ(PSI)和光系统II(PSII)对PST感染的反应。通过PST感染抑制了净光合速率(PN)和羧化效率(CE)。 K步骤(W k)的归一化相对可变荧光和J步骤(VJ)的相对可变荧光在PSII(F V / F M)的最大量子产率和Q a降低PSII反应的密度增加每个横截面(RC / CSM)的中心降低,表明在PST感染后PSII的反应中心和供体和受体侧都受到严重受损。随着感染的进展,PSI活性减少。此外,我们观察到PSBO,D1,PSAA蛋白的相当大的整体降解和反应性氧(ROS)的过度积累。在PST感染烟草叶片Pst感染后,在轻微和暗条件下观察到光滤网和光抑制的损伤。黑暗中的损坏更大。 ROS过度积累不是光滤网和光燃烧的损坏的主要原因。 PSBO,D1和PSAA蛋白似乎是在光线和黑暗条件下PST感染期间的靶标。

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