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入侵性景天酸代谢植物心叶日中花光合机制中的干旱胁迫记忆

Drought stress memory in the photosynthetic mechanisms of an invasive CAM species, Aptenia cordifolia.

作者信息

Pintó-Marijuan Marta, Cotado Alba, Fleta-Soriano Eva, Munné-Bosch Sergi

机构信息

Departament de Biologia Vegetal, Facultat de Biologia, Universitat de Barcelona, Avinguda Diagonal 643, 08028, Barcelona, Spain.

出版信息

Photosynth Res. 2017 Mar;131(3):241-253. doi: 10.1007/s11120-016-0313-3. Epub 2016 Oct 18.

Abstract

Plants are known for their high capacity to acclimatise to fluctuating environmental conditions. A wide range of environmental conditions can lead to suboptimal physiological efficiency. However, recent studies have shown that plants can withstand repeated periods of stress. To find out how they do it, we studied photosynthetic adjustments to repeated water stress in Aptenia cordifolia: a facultative, invasive CAM species. Plants were subjected to three cycles of water deficit, and photosynthetic parameters and chloroplast antioxidants were quantified to gain an understanding of the mechanisms by which they cope with repeated stress periods. Significant modification of the photosystems' antenna and reaction centres was observed in plants subjected to previous water stress cycles, and this led to higher PSII efficiency than in plants challenged with drought for the first time. These findings underline the biological significance of stress memory and show how plants can adjust their photosynthetic apparatus to fluctuating environmental conditions and thus optimise photosynthesis and photoprotection under drought conditions.

摘要

植物以其适应波动环境条件的高能力而闻名。广泛的环境条件会导致生理效率次优。然而,最近的研究表明,植物能够承受反复的胁迫期。为了弄清楚它们是如何做到的,我们研究了心叶日中花(一种兼性入侵性景天酸代谢物种)对反复水分胁迫的光合调节。对植物进行了三个缺水周期处理,并对光合参数和叶绿体抗氧化剂进行了量化,以了解它们应对反复胁迫期的机制。在经历过先前水分胁迫周期的植物中,观察到光系统的天线和反应中心有显著改变,这导致其光系统II效率高于首次受到干旱挑战的植物。这些发现强调了胁迫记忆的生物学意义,并展示了植物如何根据波动的环境条件调整其光合装置,从而在干旱条件下优化光合作用和光保护。

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