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资源类型: 外文期刊
作者:Li, Xin(精确检索)
作者:Zhang, Li-Ping(精确检索)
作者:Zhang, Lan(精确检索)
作者:Yan, Peng(精确检索)
作者:Han, Wen-Yan(精确检索)
作者:Ahammed, Golam Jalal(精确检索)
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1Stimulation in primary and secondary metabolism by elevated carbon dioxide alters green tea quality in Camellia sinensis L

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来源:SCIENTIFIC REPORTS

年份:2017

2Methyl Salicylate Enhances Flavonoid Biosynthesis in Tea Leaves by Stimulating the Phenylpropanoid Pathway

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来源:MOLECULES

关键词: salicylic acid; flavonoids; phenylpropanoid pathway; phenylalanine ammonia-lyase (PAL); tea quality

年份:2019

3RBOH1-dependent apoplastic H2O2 mediates epigallocatechin-3-gallate-induced abiotic stress tolerance in Solanum lycopersicum L.

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来源:ENVIRONMENTAL AND EXPERIMENTAL BOTANY

关键词: Abiotic stress; Epigallocatechin-3-gallate; Reactive oxygen species; Hydrogen peroxide; NADPH oxidase; RBOH1

年份:2019

4Salicylic acid acts upstream of nitric oxide in elevated carbon dioxide-induced flavonoid biosynthesis in tea plant (Camellia sinensis L.)

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来源:ENVIRONMENTAL AND EXPERIMENTAL BOTANY

关键词: Salicylic acid; Nitric oxide; Flavonoid; Elevated CO2; Tea; Phenylalanine ammonia-lyase

年份:2019

524-Epibrassinolide Enhances Resistance Against Colletotrichum fructicola by Promoting Lignin Biosynthesis in Camellia sinensis L.

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来源:JOURNAL OF PLANT GROWTH REGULATION

关键词: Anthracnose; Brassinosteroids; Colletotrichum fructicola; Camellia sinensis; Lignin; MYB; Phenylpropanoid pathway; Tea

6Nitric oxide mediates brassinosteroid-induced flavonoid biosynthesis in Camellia sinensis L.

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来源:JOURNAL OF PLANT PHYSIOLOGY

关键词: Brassinosteroid Flavonoids Nitric oxide Phenylalanine ammonia-lyase (PAL) Secondary metabolism

7Exogenous Brassinosteroid Enhances Plant Defense Against Colletotrichum gloeosporioides by Activating Phenylpropanoid Pathway in Camellia sinensis L.

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来源:JOURNAL OF PLANT GROWTH REGULATION

关键词: Brassinosteroids; Camellia sinensis; Colletotrichum gloeosporioides; Disease resistance; Phenylalanine ammonia-lyase; Phenylpropanoid pathway

年份:2018

8Melatonin-mediated regulation of anthocyanin biosynthesis and antioxidant defense confer tolerance to arsenic stress in Camellia sinensis L

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来源:JOURNAL OF HAZARDOUS MATERIALS

关键词: Arsenate; Anthocyanin; Phytotoxicity; Oxidative stress; Tea quality; Food safety

年份:2021

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