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内生细菌在茶树( )介导的叶片氮素再转运中的作用 。 你提供的原文中“ L.”部分信息不完整,请补充完整以便我能给出更准确的译文。

Role of Endophytic Bacteria in the Remobilization of Leaf Nitrogen Mediated by in Tea Plants ( L.).

作者信息

Chang Manman, Ma Jingyu, Sun Ying, Fu Maoyin, Liu Linlin, Chen Qi, Zhang Zhaoliang, Song Chuankui, Sun Jun, Wan Xiaochun

机构信息

State Key Laboratory of Tea Plant Biology and Utilization, Anhui Agricultural University, 130 West Changjiang Road, Hefei City, Anhui Province 230036, P. R. China.

College of Horticulture, Anhui Agricultural University, 130 West Changjiang Road, Hefei City, Anhui Province 230036, P. R. China.

出版信息

J Agric Food Chem. 2023 Apr 5;71(13):5208-5218. doi: 10.1021/acs.jafc.2c08909. Epub 2023 Mar 27.

Abstract

As an important economic plant, tea () has a good economic value and significant health effects. Theanine is an important nitrogen reservoir, and its synthesis and degradation are considered important for nitrogen storage and remobilization in tea plants. Our previous research indicated that the endophyte CsE7 participates in the synthesis of theanine in tea plants. Here, the tracking test confirmed that CsE7 tended to be exposed to mild light and preferentially colonized mature tea leaves. CsE7 also participated in glutamine, theanine, and glutamic acid circulatory metabolism (Gln-Thea-Glu) and contributed to nitrogen remobilization, mediated by the γ-glutamyl-transpeptidase (CsEGGT) with hydrolase preference. The reisolation and inoculation of endophytes further verified their role in accelerating the remobilization of nitrogen, especially in the reuse of theanine and glutamine. This is the first report about the photoregulated endophytic colonization and the positive effect of endophytes on tea plants mediated and characterized by promoting leaf nitrogen remobilization.

摘要

作为一种重要的经济作物,茶树具有良好的经济价值和显著的健康功效。茶氨酸是一种重要的氮素储存物质,其合成与降解被认为对茶树的氮素储存和转运至关重要。我们之前的研究表明,内生菌CsE7参与茶树中茶氨酸的合成。在此,追踪试验证实CsE7倾向于暴露在弱光下,并优先定殖于成熟茶叶中。CsE7还参与谷氨酰胺、茶氨酸和谷氨酸的循环代谢(Gln-Thea-Glu),并通过具有水解酶偏好性的γ-谷氨酰转肽酶(CsEGGT)促进氮素转运。内生菌的再分离和接种进一步证实了它们在加速氮素转运中的作用,特别是在茶氨酸和谷氨酰胺的再利用方面。这是关于光调节内生菌定殖以及内生菌通过促进叶片氮素转运对茶树产生积极影响的首次报道。

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