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N-glycosylation regulates photosynthetic efficiency of Arabidopsis thaliana

机译:N-糖基化调控拟南芥的光合效率

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摘要

N-glycosylation is one of the most important protein modifications in eukaryotes. It has been well established that N-glycosylation plays multiple roles in regulating stress tolerance of plants. However, the effects and mechanism of N-glycosylation on photosynthesis have not been well understood. In the present study, an obvious decrease in photosynthetic capacity and dry mass were detected in alg3-3 and cgl1-1 , two typical mutants in N-glycosylation process. The maximal photochemical efficiency of PSII decreased significantly in cgl1-1 . The values of effective quantum yield of PSII photochemistry, rate of photosynthetic electron transport through PSII, and photochemical quenching coefficient, which reflected the photochemical efficiency of plants, decreased as well, while the values of quantum yield of nonregulated energy dissipation of PSII showed obvious enhancement, the similar tendency was also observed in alg3-3 . Furthermore, we found that N-glycosylation was also required to maintain the stability of a chloroplast-located protein CAH1, which was closely related to photosynthesis. These results suggest that N-glycosylation plays crucial roles in maintaining photosynthetic efficiency.
机译:N-糖基化是真核生物中最重要的蛋白质修饰之一。N-糖基化在调节植物抗逆性中起着多种作用。然而,N-糖基化对光合作用的影响和机制尚未得到很好的了解。本研究发现,N-糖基化过程中典型的突变体alg3-3和cgl1-1的光合能力和干质量明显下降。PSII的最大光化学效率在cgl1-1中显著降低。反映植物光化学效率的PSII光化学有效量子产率、光合电子传递速率和光化学猝灭系数也有所下降,而PSII非调控耗能量子产率值明显增强,在alg3-3中也观察到类似的趋势。此外,我们发现 N-糖基化也是维持叶绿体定位蛋白 CAH1 稳定性所必需的,该蛋白与光合作用密切相关。这些结果表明,N-糖基化在维持光合效率方面起着至关重要的作用。

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