科研产出
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11Patterns and abiotic drivers of soil organic carbon in perennial tea (Camellia sinensis L.) plantation system of China
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来源:ENVIRONMENTAL RESEARCH
关键词: Soil organic carbon; Spatial patterns; Abiotic factors; Perennial crops; Acidic soil
年份:2023
12Rhizosphere Microbial Community Shows a Greater Response Than Soil Properties to Tea (Camellia sinensis L.) Cultivars
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来源:AGRONOMY-BASEL
关键词: rhizosphere microorganism; tea cultivars; microbial diversity; community composition; predicted function
年份:2023
14Long-term nitrogen addition increases denitrification potential and functional gene abundance and changes denitrifying communities in acidic tea plantation soil
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来源:ENVIRONMENTAL RESEARCH
关键词: Long-term N addition; Denitrification potential; Functional genes; Denitrifying microbial communities; Acidic tea plantation soil
年份:2023
15Metagenomics reveals N-induced changes in carbon-degrading genes and microbial communities of tea (Camellia sinensis L.) plantation soil under long-term fertilization
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来源:SCIENCE OF THE TOTAL ENVIRONMENT
关键词: N application; C -cycling genes; SOC-degrading enzymes; Functional microbial communities; Acidic soil; Tea plantation
年份:2023
16Potassium management in tea plantations: Its uptake by field plants, status in soils, and efficacy on yields and quality of teas in China
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来源:JOURNAL OF PLANT NUTRITION AND SOIL SCIENCE
关键词: Agronomical efficiency Plantations of different ages Potassium fertilizer Quantity-intensity curve Soil K availability
17Multi-element composition and isotopic signatures for the geographical origin discrimination of green tea in China: A case study of Xihu Longjing
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来源:JOURNAL OF FOOD COMPOSITION AND ANALYSIS
关键词: Geographical origin discrimination; Data mining; Multi-element contents; Stable isotope ratios; Xihu Longjing tea; Food analysis; Food composition
年份:2018
18Metabolomic 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
19Long-term nitrogen fertilization indirectly affects soil fungi community structure by changing soil and pruned litter in a subtropical tea (Camellia sinensis L.) plantation in China
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来源:PLANT AND SOIL
关键词: N fertilization; Tea plantation; Fungal community; Pruned litter; PLS-PM
年份:2019
20Preferential assimilation of NH4+ over NO3- in tea plant associated with genes involved in nitrogen transportation, utilization and catechins biosynthesis
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来源:PLANT SCIENCE
关键词: (NH4+)-N-15; (NO3-)-N-15; Assimilation; Theanine; Catechins; Tea plant
年份:2020