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响应无机磷限制时茶树中氨基酸和类黄酮的代谢变化。

Metabolic Changes of Amino Acids and Flavonoids in Tea Plants in Response to Inorganic Phosphate Limitation.

机构信息

Graduate School of the Chinese Academy of Agricultural Sciences (GSCAAS), Zhongguancun Nandajie, Haidian, Beijing 100081, China.

Tea Research Institute (TRICAAS), 9 Meiling South Road, Hangzhou 310008, China.

出版信息

Int J Mol Sci. 2018 Nov 21;19(11):3683. doi: 10.3390/ijms19113683.

Abstract

The qualities of tea () are not clearly understood in terms of integrated leading molecular regulatory network mechanisms behind inorganic phosphate (Pi) limitation. Thus, the present work aims to elucidate transcription factor-dependent responses of quality-related metabolites and the expression of genes to phosphate (P) starvation. The tea plant organs were subjected to metabolomics analysis by GC×GC-TOF/MS and UPLC-Q-TOF/MS along with transcription factors and 13 metabolic genes by qRT-PCR. We found P starvation upregulated and the change response of Pi is highly dependent on young shoots. This led to increased change in abundance of carbohydrates (fructose and glucose), amino acids in leaves (threonine and methionine), and root (phenylalanine, alanine, tryptophan, and tyrosine). Flavonoids and their glycosides accumulated in leaves and root exposed to P limitation was consistent with the upregulated expression of (EC 1.3.1.77), (EC 1.4.11.19) and (, and ). Despite the similar kinetics and high correlation response of Pi and in young shoots, predominating theanine and other amino acids (serine, threonine, glutamate, valine, methionine, phenylalanine) and catechin (EGC, EGCG and CG) content displayed opposite changes in response to Pi limitation between Fengqing and Longjing-43 tea cultivars.

摘要

在无机磷 (Pi) 限制下,茶叶品质的综合主导分子调控网络机制尚不清楚。因此,本研究旨在阐明与质量相关的代谢物和基因表达对磷酸盐 (P) 饥饿的转录因子依赖性响应。通过 GC×GC-TOF/MS 和 UPLC-Q-TOF/MS 对茶树器官进行代谢组学分析,并通过 qRT-PCR 对转录因子和 13 个代谢基因进行分析。我们发现 P 饥饿上调了,Pi 的变化反应高度依赖于嫩梢。这导致碳水化合物(果糖和葡萄糖)、叶片(苏氨酸和蛋氨酸)和根(苯丙氨酸、丙氨酸、色氨酸和酪氨酸)中氨基酸的含量增加。在 P 限制下,叶片和根中类黄酮及其糖苷的积累与 (EC 1.3.1.77)、 (EC 1.4.11.19)和 (、 和 )的上调表达一致。尽管 Pi 和 在嫩梢中具有相似的动力学和高相关性响应,但茶氨酸和其他氨基酸(丝氨酸、苏氨酸、谷氨酸、缬氨酸、蛋氨酸、苯丙氨酸)和儿茶素(EGC、EGCG 和 CG)含量在 Fengqing 和 Longjing-43 茶品种之间对 Pi 限制的响应表现出相反的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cabe/6274676/cfe87b069f2b/ijms-19-03683-g001.jpg

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