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资源类型: 外文期刊
作者:Ma, Lifeng(精确检索)
作者:Ruan, Jianyun(精确检索)
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11Thermo Condition Determines the Uptake of Autumn and Winter Applied Nitrogen and Subsequent Utilization in Spring Tea (Camellia sinensis L.)

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来源:HORTICULTURAE

关键词: N reserves; N remobilization; temperature; growing degree days; dormancy; timing of fertilization

年份:2021

12Ecological 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

13Effect of Interactions between Phosphorus and Light Intensity on Metabolite Compositions in Tea Cultivar Longjing43

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来源:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES

关键词: Camellia sinensis; phosphorus; light intensity; metabolome; green tea

年份:2022

14Response of Nutritional Status and Tea Quality to the Rate and Substitution of Chemical Fertilizers with Organic Manure

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来源:HORTICULTURAE

关键词: chlorotic tea variety; organic manure; partial organic substitution; yield; free amino acids; total polyphenol; nutrient use efficiency

年份:2022

15Optimization of nutrient management improves productivity, quality and sustainability of albino tea cultivar Baiye-1

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来源:FRONTIERS IN PLANT SCIENCE

关键词: free amino acid; catechin; organic substitution; nutrient use efficiency (NUE); greenhouse gas emissions; nitrogen nutrition; albino tea cultivar

年份:2024

16Land-use changes alter the arbuscular mycorrhizal fungal community composition and assembly in the ancient tea forest reserve

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来源:AGRICULTURE ECOSYSTEMS & ENVIRONMENT

关键词: Land-use change; AMF diversity; Community composition; Community assembly; Acidic soils; Ancient tea forest

年份:2022

17Influence of Organic and Inorganic Fertilizers on Tea Growth and Quality and Soil Properties of Tea Orchards' Top Rhizosphere Soil

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来源:PLANTS-BASEL

关键词: tea plant growth; chlorophyll; integrated fertilization; amino acids; catechins; macro and micronutrients; soil properties

年份:2024

18Nitrogen 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

19Patterns 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

20Rhizosphere 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