Laboratorio de Fisiología de Estrés Abiótico en Plantas, Unidad de Biotecnología 1, INTECH-CONICET-UNSAM, Chascomús, Argentina.
Laboratorio de Biotecnología Vegetal, INTECH-CONICET-UNSAM, Chascomús, Argentina.
Plant Sci. 2020 Jul;296:110488. doi: 10.1016/j.plantsci.2020.110488. Epub 2020 Apr 9.
The results of the present work suggested a relationship between the growth stability and functional/structural parameters associated to the primary photochemistry and oxygen evolving complex (OEC) in tolerant rice plants under suboptimal low temperatures (SLT) stress. This was concluded from the absence of changes in net photosynthetic rate and in fraction of reaction centers to reduce quinone A, and very small changes in P680 efficiency to trap and donate electrons to quinone A and in fraction of active OEC in tolerant plants under cold stress but not in sensitive plants. The SLT stress also induced OEC activity limitations in both genotypes, but in a greater extent in sensitive plants. However, an assay using an artificial electron donor to replace OEC indicated that the P680 capacity to accept electrons was not altered in both genotypes under SLT stress from the beginning of the stress treatment, suggesting that the OEC structure stability is related to rice SLT tolerance to sustain the photosynthesis. This hypothesis was also supported by the fact that tolerant plants but not sensitive plants did not alter the gene expression and protein content of PsbP under SLT stress, an OEC subunit with a role in stabilizing of OEC structure.
本研究结果表明,在亚最优低温(SLT)胁迫下,生长稳定性与与初级光化学和氧释放复合物(OEC)相关的功能/结构参数之间存在关系。这是从净光合速率和还原醌 A 的反应中心分数没有变化,以及 P680 效率变化很小来捕获和向醌 A 和活性 OEC 分数供电子得出的,在冷胁迫下耐受植物中没有变化,但在敏感植物中则没有。SLT 胁迫也诱导了两种基因型的 OEC 活性限制,但在敏感植物中更为严重。然而,使用人工电子供体进行的测定表明,在 SLT 胁迫下,从胁迫处理开始,两种基因型的 P680 接受电子的能力都没有改变,这表明 OEC 结构的稳定性与水稻对 SLT 的耐受性有关,以维持光合作用。这一假设也得到了以下事实的支持,即耐受植物但不是敏感植物在 SLT 胁迫下没有改变 PsbP 的基因表达和蛋白含量,PsbP 是一种 OEC 亚基,在稳定 OEC 结构中起作用。