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长期雨水排除对地中海森林的影响:不同季节对栓皮栎生理和物理化学特性的响应。

Long-term rain exclusion in a Mediterranean forest: response of physiological and physico-chemical traits of Quercus pubescens across seasons.

机构信息

Aix Marseille Univ., Univ Avignon, CNRS, IRD, IMBE, Marseille, France.

Aix Marseille Univ., CEA, CNRS UMR 7265 BIAM, CEA/Cadarache, Saint-Paul-lès-Durance, France.

出版信息

Plant J. 2023 Dec;116(5):1293-1308. doi: 10.1111/tpj.16424. Epub 2023 Aug 19.

Abstract

With climate change, an aggravation in summer drought is expected in the Mediterranean region. To assess the impact of such a future scenario, we compared the response of Quercus pubescens, a drought-resistant deciduous oak species, to long-term amplified drought (AD) (partial rain exclusion in natura for 10 years) and natural drought (ND). We studied leaf physiological and physico-chemical trait responses to ND and AD over the seasonal cycle, with a focus on chemical traits including major groups of central (photosynthetic pigments and plastoquinones) and specialized (tocochromanols, phenolic compounds, and cuticular waxes) metabolites. Seasonality was the main driver of all leaf traits, including cuticular triterpenoids, which were highly concentrated in summer, suggesting their importance to cope with drought and thermal stress periods. Under AD, trees not only reduced CO assimilation (-42%) in summer and leaf concentrations of some phenolic compounds and photosynthetic pigments (carotenoids from the xanthophyll cycle) but also enhanced the levels of other photosynthetic pigments (chlorophylls, lutein, and neoxanthin) and plastochromanol-8, an antioxidant located in chloroplasts. Overall, the metabolomic adjustments across seasons and drought conditions reinforce the idea that Q. pubescens is highly resistant to drought although significant losses of antioxidant defenses and photoprotection were identified under AD.

摘要

随着气候变化,预计在地中海地区夏季干旱会加剧。为了评估这种未来情景的影响,我们比较了抗旱落叶栎(Quercus pubescens)对长期增强干旱(AD)(自然条件下 10 年的部分降雨排除)和自然干旱(ND)的响应。我们研究了叶片生理和物理化学特性对 ND 和 AD 的季节性响应,重点关注化学特性,包括中央(光合色素和质体醌)和特殊(生育酚、酚类化合物和角质层蜡)代谢物的主要类群。季节性是所有叶片特性的主要驱动因素,包括角质三萜,它们在夏季高度集中,表明它们在应对干旱和热应激期的重要性。在 AD 下,树木不仅在夏季减少了 CO 同化(-42%)和一些酚类化合物和光合色素(叶黄素循环中的类胡萝卜素)的叶片浓度,而且还增强了其他光合色素(叶绿素、叶黄素和新黄质)和质体醌-8 的水平,质体醌-8 是一种位于叶绿体中的抗氧化剂。总的来说,跨季节和干旱条件的代谢组学调整强化了这样一种观点,即 Q. pubescens 对干旱具有高度抗性,尽管在 AD 下发现抗氧化防御和光保护的显著损失。

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