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在光合作用代谢可塑性的边缘——盐胁迫诱导 CAM 光合作用退出时伴随的变化速度和幅度。

At the Edges of Photosynthetic Metabolic Plasticity-On the Rapidity and Extent of Changes Accompanying Salinity Stress-Induced CAM Photosynthesis Withdrawal.

机构信息

Institute of Biology, Pedagogical University of Krakow, Podchorążych 2, 30-084 Kraków, Poland.

Małopolska Centre of Biotechnology, Jagiellonian University in Kraków, Gronostajowa 7a, 30-387 Kraków, Poland.

出版信息

Int J Mol Sci. 2021 Aug 5;22(16):8426. doi: 10.3390/ijms22168426.

Abstract

The common ice plant ( L.) is a facultative crassulacean acid metabolism (CAM) plant, and its ability to recover from stress-induced CAM has been confirmed. We analysed the photosynthetic metabolism of this plant during the 72-h response period following salinity stress removal from three perspectives. In plants under salinity stress (CAM) we found a decline of the quantum efficiencies of PSII (Y(II)) and PSI (Y(I)) by 17% and 15%, respectively, and an increase in nonphotochemical quenching (NPQ) by almost 25% in comparison to untreated control. However, 48 h after salinity stress removal, the PSII and PSI efficiencies, specifically Y(II) and Y(I), elevated nonphotochemical quenching (NPQ) and donor side limitation of PSI (Y), were restored to the level observed in control (C plants). Swelling of the thylakoid membranes, as well as changes in starch grain quantity and size, have been found to be components of the salinity stress response in CAM plants. Salinity stress induced an over 3-fold increase in average starch area and over 50% decline of average seed number in comparison to untreated control. However, in plants withdrawn from salinity stress, during the first 24 h of recovery, we observed chloroplast ultrastructures closely resembling those found in intact (control) ice plants. Rapid changes in photosystem functionality and chloroplast ultrastructure were accompanied by the induction of the expression (within 24 h) of structural genes related to the PSI and PSII reaction centres, including , , (D), (D) and . Our findings describe one of the most flexible photosynthetic metabolic pathways among facultative CAM plants and reveal the extent of the plasticity of the photosynthetic metabolism and related structures in the common ice plant.

摘要

普通冰草(L.)是一种兼性景天酸代谢(CAM)植物,其从胁迫诱导的 CAM 中恢复的能力已得到证实。我们从三个方面分析了盐分胁迫去除后 72 小时响应期内该植物的光合作用代谢。在盐胁迫下的植物(CAM)中,我们发现 PSII(Y(II))和 PSI(Y(I))的量子效率分别下降了 17%和 15%,非光化学猝灭(NPQ)增加了近 25%,与未处理的对照相比。然而,在盐分胁迫去除后的 48 小时,PSII 和 PSI 的效率,特别是 Y(II)和 Y(I),非光化学猝灭(NPQ)和 PSI 的供体侧限制(Y)升高,恢复到对照(C 植物)中观察到的水平。发现类囊体膜的肿胀以及淀粉粒数量和大小的变化是 CAM 植物盐分胁迫响应的组成部分。与未处理的对照相比,盐胁迫导致平均淀粉面积增加了 3 倍以上,平均种子数量减少了 50%以上。然而,在从盐分胁迫中撤出的植物中,在恢复的头 24 小时内,我们观察到叶绿体超微结构与完整(对照)冰草中发现的超微结构非常相似。光合作用功能和叶绿体超微结构的快速变化伴随着与 PSI 和 PSII 反应中心相关的结构基因表达的诱导(在 24 小时内),包括 、 、 (D)、 (D)和 。我们的研究结果描述了兼性 CAM 植物中最灵活的光合作用代谢途径之一,并揭示了普通冰草光合作用代谢和相关结构的可塑性程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b062/8395101/4de10eca8bd3/ijms-22-08426-g001.jpg

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