科研产出
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1C-13 Labelling of Litter Added to Tea (Camellia sinensis L.) Plantation Soil Reveals a Significant Positive Priming Effect That Leads to Less Soil Organic Carbon Accumulation
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来源:AGRONOMY-BASEL
关键词: tea litter; native SOC; priming effect; C-13-PLFA-SIP; microbial community; PLS-PM
年份:2022
2Metabolomic Analyses Reveal Distinct Change of Metabolites and Quality of Green Tea during the Short Duration of a Single Spring Season
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来源:JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
关键词: green tea spring season quality plucking period UPLC-Q-TOF/MS GCxGC-TOF/MS metabolomics
3Analyses of transcriptome profiles and selected metabolites unravel the metabolic response to NH4+ and NO3- as signaling molecules in tea plant (Camellia sinensis L.)
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来源:SCIENTIA HORTICULTURAE
关键词: NH4+ NO3- Signaling molecule Metabolic response Tea plant
4Aluminium in tea plantations: mobility in soils and plants, and the influence of nitrogen fertilization
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来源:ENVIRONMENTAL GEOCHEMISTRY AND HEALTH
关键词: al absorption camellia sinensis extractable al nitrogen fertilizer soil acidification
5Dynamics of nitrogen translocation from mature leaves to new shoots and related gene expression during spring shoots development in tea plants (Camellia sinensis L.)
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来源:JOURNAL OF PLANT NUTRITION AND SOIL SCIENCE
关键词: N-15 translocation; amino acid permease; autophagy; Camellia sinensis; gene expression
年份:2020
6Characterization of three different classes of non-fermented teas using untargeted metabolomics
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来源:FOOD RESEARCH INTERNATIONAL
关键词: Metabolomics; Non-fermented tea; Characterization; Classification
年份:2019
7Nitrogen absorption by field-grown tea plants (Camellia sinensis) in winter dormancy and utilization in spring shoots
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来源:PLANT AND SOIL
关键词: Low temperature; N uptake; Root growth; Soil growing degree days; Young spring shoots; Winter dormancy
年份:2019
8Short-term inhibition of glutamine synthetase leads to reprogramming of amino acid and lipid metabolism in roots and leaves of tea plant (Camellia sinensis L.)
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来源:BMC PLANT BIOLOGY
关键词: Glutamine synthetase; Methionine sulfoximine; Quality-related compounds; Amino acids; Lipids; Tea plant
年份:2019
9Ecological management model for the improvement of soil fertility through the regulation of rare microbial taxa in tea (Camellia sinensis L.) plantation soils
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来源:JOURNAL OF ENVIRONMENTAL MANAGEMENT
关键词: Agriculture management; Soil fertility; Rare microbial taxa; Co-occurrence network; Random forest regression
年份:2022
10Nitrogen addition reduces phosphorus availability and induces a shift in soil phosphorus cycling microbial community in a tea (Camellia sinensis L.) plantation
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来源:JOURNAL OF ENVIRONMENTAL MANAGEMENT
关键词: N addition; P availability; Phosphatase activities; P-cycling genes; Functional communities; Acidic tea soil
年份:2023