叶面喷施芸苔素内酯会影响冷应激茶树的叶片质量和次生代谢物特征

Yue Wen, An-Qi Lei, A. Hashem, Elsayed Fathi Abd_Allah, Qiangsheng Wu, Xiu-Bing Gao
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摘要

冷胁迫是影响春茶品质的一个重要限制因素。本研究分析了叶面喷施浓度为0.05、0.1、0.5和1 mg/L的黄铜内酯(BR)对4 ℃条件下生长48 h的福鼎大白茶叶片叶绿素指数、氮平衡指数、品质、抗氧化防御系统和次生代谢物谱的影响。在冷胁迫下,BR 处理明显提高了茶多酚、儿茶素、氨基酸和咖啡因的含量,其中 0.1 mg BR/L 的效果最好。叶面喷施BR对冷胁迫下CsGOGAT的表达没有影响,但对CsHMGR、CsGDH和CsGs的表达有不同程度的调节作用,在0.1毫克BR/升的处理条件下,CsHMGR、CsGDH和CsGs的表达上调。根据丙二醛的水平,BR处理的植物在冷胁迫下表现出较低的氧化损伤水平,而在BR浓度为0.05毫克/升和0.1毫克/升时,谷胱甘肽水平以及CsCAT和CsSOD基因表达水平较高。非靶向代谢组学共发现了 26 175 个代谢物,其中大部分是脂类和类脂分子(8.97%)以及有机杂环化合物(8.97%)。0.05、0.1、0.5 和 1 mg/L 的 BR 处理分别引发了 1181、1997、2414 和 1455 个差异代谢物,并伴随着更多差异代谢物的上调。其中,18 个差异代谢物与茶叶品质相关。差异代谢物的富集途径主要是咖啡碱代谢、氨基酸合成代谢、生物碱合成代谢和黄酮类化合物合成,具体取决于所使用的 BR 浓度。咖啡因代谢是 BR 诱导的差异代谢途径。综上所述,叶面喷施 BR(0.1 mg/L)可提高叶片的抗氧化能力和品质,并调节冷应激茶叶的次生代谢物及其途径。
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Foliar Spraying of Brassinolide Affects Leaf Quality and Secondary Metabolite Profiles of Cold-Stressed Tea Plants
Cold stress is an important limiting factor affecting spring tea quality. This study analyzed the effects of foliar spraying of brassinolide (BR) at concentrations of 0.05, 0.1, 0.5, and 1 mg/L on the chlorophyll index, nitrogen balance index, quality, antioxidant defense system, and secondary metabolite profiles in leaves of Camellia sinensis cv. Fuding-dabaicha grown at 4 °C for 48 h. All exogenous BR treatments significantly increased leaf nitrogen balance index, with the highest effect at 0.1 mg/L, which also significantly increased leaf chlorophyll index. BR treatments distinctly increased tea polyphenol, catechin, amino acid, and caffeine levels at cold stress, with the greatest effect at 0.1 mg BR/L. Foliar spraying of BR showed no effect on the expression of CsGOGAT at cold stress, but it differentially regulated the expression of CsHMGR, CsGDH, and CsGs, accompanied by their expression being up-regulated under 0.1 mg BR/L treatment. BR-treated plants exhibited a low level of oxidative damage at cold stress based on malondialdehyde levels, which was associated with higher glutathione levels and CsCAT and CsSOD gene expression levels under BR concentrations of 0.05 mg/L and 0.1 mg/L. Non-targeted metabolomics found a total of 26,175 metabolites, the majority of which were lipids and lipid-like molecules (8.97%) and organic heterocyclic compounds (8.97%). BR treatments with 0.05, 0.1, 0.5, and 1 mg/L triggered 1181, 1997, 2414, and 1455 differential metabolites, respectively, accompanied by more differential metabolites being up-regulated. Among them, 18 differential metabolites were associated with tea quality. The enriched pathways of differential metabolites were mainly caffeine metabolism, amino acid synthesis and metabolism, alkaloid synthesis and metabolism, and flavonoid synthesis, depending on the BR concentrations used. Caffeine metabolism was an BR-inducible differential metabolite pathway. Taken together, foliar spraying of BR (0.1 mg/L) improved leaf antioxidant capacity and quality as well as modulated secondary metabolites and their pathways in cold-stressed tea.
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