Metabolomics and Physiological Insights into the Ability of Exogenously Applied Chlorogenic Acid and Hesperidin to Modulate Salt Stress in Lettuce Distinctively

绿原酸 渗透调节剂 代谢组学 盐度 化学 拉图卡 代谢组 生物化学 食品科学 渗透性休克 橙皮苷 生物 植物 脯氨酸 氨基酸 色谱法 生态学 替代医学 病理 基因 医学
作者
Leilei Zhang,Begoña Miras‐Moreno,Evren Yıldıztugay,Ceyda Ozfidan‐Konakci,Busra Arikan,Fevzi Elbasan,Güneş Ak,Youssef Rouphael,Gökhan Zengin,Luigi Lucini
出处
期刊:Molecules [MDPI AG]
卷期号:26 (20): 6291-6291 被引量:13
标识
DOI:10.3390/molecules26206291
摘要

Recent studies in the agronomic field indicate that the exogenous application of polyphenols can provide tolerance against various stresses in plants. However, the molecular processes underlying stress mitigation remain unclear, and little is known about the impact of exogenously applied phenolics, especially in combination with salinity. In this work, the impacts of exogenously applied chlorogenic acid (CA), hesperidin (HES), and their combination (HES + CA) have been investigated in lettuce (Lactuca sativa L.) through untargeted metabolomics to evaluate mitigation effects against salinity. Growth parameters, physiological measurements, leaf relative water content, and osmotic potential as well as gas exchange parameters were also measured. As expected, salinity produced a significant decline in the physiological and biochemical parameters of lettuce. However, the treatments with exogenous phenolics, particularly HES and HES + CA, allowed lettuce to cope with salt stress condition. Interestingly, the treatments triggered a broad metabolic reprogramming that involved secondary metabolism and small molecules such as electron carriers, enzyme cofactors, and vitamins. Under salinity conditions, CA and HES + CA distinctively elicited secondary metabolism, nitrogen-containing compounds, osmoprotectants, and polyamines.
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