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加剧的干旱和季节循环调节叶片代谢组。

Amplified Drought and Seasonal Cycle Modulate Leaf Metabolome.

作者信息

Saunier Amélie, Greff Stéphane, Blande James D, Lecareux Caroline, Baldy Virginie, Fernandez Catherine, Ormeño Elena

机构信息

Aix Marseille Univ., CNRS, IRD, Avignon Univ., IMBE, 13331 Marseille, France.

Department of Environmental and Biological Sciences, University of Eastern Finland, P.O. Box 1627, 70211 Kuopio, Finland.

出版信息

Metabolites. 2022 Mar 30;12(4):307. doi: 10.3390/metabo12040307.

Abstract

The intensification of summer drought expected with climate change can induce metabolism modifications in plants to face such constraints. In this experiment, we used both a targeted approach focused on flavonoids, as well as an untargeted approach, to study a broader fraction of the leaf metabolome of exposed to amplified drought. A forest site equipped with a rainfall exclusion device allowed reduction of natural rainfall by ~30% over the tree canopy. Leaves of natural drought (ND) and amplified drought (AD) plots were collected over three seasonal cycles (spring, summer, and autumn) in 2013 (the second year of rain exclusion), 2014, and 2015. As expected, metabolome followed a seasonal course. In the summer of 2015, the leaf metabolome presented a shifted and early autumnal pattern because of harsher conditions during this year. Despite low metabolic modification at the global scale, our results demonstrated that 75% of metabolites were upregulated in springs when trees were exposed to AD, whereas 60 to 73% of metabolites (93% in summer 2015), such as kaempferols and quercetins, were downregulated in summers/autumns. Juglanin, a kaempferol pentoside, as well as rhododendrin derivatives, were upregulated throughout the year, suggesting an antioxidant ability of these metabolites. Those changes in terms of phenology and leaf chemistry could, in the end, affect the ecosystem functioning.

摘要

气候变化预计会加剧夏季干旱,这可能会促使植物发生代谢变化以应对此类限制。在本实验中,我们采用了聚焦于黄酮类化合物的靶向方法以及非靶向方法,来研究暴露于加剧干旱条件下的叶片代谢组中更广泛的部分。一个配备了降雨排除装置的森林场地能够使树冠上方的自然降雨量减少约30%。在2013年(降雨排除的第二年)、2014年和2015年的三个季节周期(春季、夏季和秋季)收集了自然干旱(ND)和加剧干旱(AD)地块的叶片。正如预期的那样,代谢组遵循季节性变化。在2015年夏季,由于该年条件更为恶劣,叶片代谢组呈现出一种提前的秋季模式。尽管在全球尺度上代谢变化较小,但我们的结果表明,当树木暴露于加剧干旱时,75%的代谢物在春季上调,而在夏季/秋季,60%至73%的代谢物(2015年夏季为93%),如山奈酚和槲皮素,下调。胡桃苷(一种山奈酚戊糖苷)以及杜鹃醇衍生物全年上调,表明这些代谢物具有抗氧化能力。这些物候和叶片化学方面的变化最终可能会影响生态系统功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d28/9026387/5e88fd971701/metabolites-12-00307-g001.jpg

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