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11Integrated analyses of the transcriptome and metabolome of the leaves of albino tea cultivars reveal coordinated regulation of the carbon and nitrogen metabolism
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来源:SCIENTIA HORTICULTURAE
关键词: Carbon deficiency stress; carbon???nitrogen metabolism; coordinated regulation; metabolomics; transcriptomics
年份:2018
12Integrated Transcriptome and Metabolic Analyses Reveals Novel Insights into Free Amino Acid Metabolism in Huangjinya Tea Cultiva
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来源:FRONTIERS IN PLANT SCIENCE
关键词: Camellia sinensis chlorotic mutation free amino acid metabolism nitrogen metabolism
年份:2017
13Effects of nitrogen supply on flavonol glycoside biosynthesis and accumulation in tea leaves (Camellia sinensis)
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来源:PLANT PHYSIOLOGY AND BIOCHEMISTRY
关键词: Camellia sinensis; Flavonol glycosides; Nitrogen supply; Biosynthesis; Carbohydrates
年份:2019
14iTRAQ-Based Quantitative Proteomics Analysis Reveals the Mechanism Underlying the Weakening of Carbon Metabolism in Chlorotic Tea Leaves
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来源:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
关键词: Camellia sinensis; chlorotic mutation; chlorophyll deficiency; weakening of carbon metabolism; iTRAQ; proteomics
年份:2018
15Metabolomic and transcriptional analyses reveal the mechanism of C, N allocation from source leaf to flower in tea plant (Camellia sinensis. L)
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来源:JOURNAL OF PLANT PHYSIOLOGY
关键词: Camellia sinensis; Flowering; Nitrogen remobilization; Metabolome; Gene expression
年份:2019
16Metabolic Changes of Amino Acids and Flavonoids in Tea Plants in Response to Inorganic Phosphate Limitation
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来源:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
关键词: Camellia sinensis; Inorganic phosphate; GCxGC-TOF; MS; UPLC-Q-TOF; MS; qRT-PCR; ICP-AES
年份:2018
17Stimulated biosynthesis of delphinidin-related anthocyanins in tea shoots reducing the quality of green tea in summer
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来源:JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE
关键词: anthocyanin; Camellia sinensis; metabolism; purple tea shoots; summer
年份:2020
18Metabolomics reveals the within-plant spatial effects of shading on tea plants
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来源:TREE PHYSIOLOGY
关键词: flavonoid and amino acid metabolism; leaf position; shading; tea quality; untargeted metabolomics
年份:2021