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资源类型: 外文期刊
作者:Fan, Lichao(精确检索)
作者:Han, Wenyan(精确检索)
作者:Han, Wenyan(精确检索)
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1Enhanced soil quality after forest conversion to vegetable cropland and tea plantations has contrasting effects on soil microbial structure and functions

作者:

机构:

来源:CATENA

关键词: Land-use change; Soil quality; Fertility; Microbial diversity; Co-occurrence network; C and N cycling; Agricultural management

年份:2022

2Enhanced soil quality after forest conversion to vegetable cropland and tea plantations has contrasting effects on soil microbial structure and functions

作者:

机构:

来源:CATENA

关键词: Land-use change; Soil quality; Fertility; Microbial diversity; Co-occurrence network; C and N cycling; Agricultural management

年份:2022

3Increased Soil Fertility in Tea Gardens Leads to Declines in Fungal Diversity and Complexity in Subsoils

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机构:

来源:AGRONOMY-BASEL

关键词: community assembly; fungal functional guilds; soil fertility; tea garden; vertical soil profile

年份:2022

4Response of Plant Root Growth to Biochar Amendment: A Meta-Analysis

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机构:

来源:AGRONOMY-BASEL

关键词: biochar; root growth; soil; meta-analysis

年份:2021

5Variations in Soil Nutrient Dynamics and Bacterial Communities After the Conversion of Forests to Long-Term Tea Monoculture Systems

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机构:

来源:FRONTIERS IN MICROBIOLOGY

关键词: tea production; pyrosequencing; monoculture system; co-occurrence network; nutrient availability

年份:2022

6Tea planting affects soil acidification and nitrogen and phosphorus distribution in soil

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机构:

来源:AGRICULTURE ECOSYSTEMS & ENVIRONMENT

关键词: Tea garden Soil acidification N and P leaching risk

年份:2018

7Organic management practices shape the structure and associations of soil bacterial communities in tea plantations

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机构:

来源:APPLIED SOIL ECOLOGY

关键词: Tea; Pyrosequencing; Co-occurrence network; Crop management; Soil microbiome

年份:2021

8Biochar stimulates tea growth by improving nutrients in acidic soil

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机构:

来源:SCIENTIA HORTICULTURAE

关键词: Biochar; Soil pH; Soil nutrients availability; Plant nutrition; Tea

年份:2021

9Soil respiration after forest conversion to tea gardens: A chronosequence study

作者:

机构:

来源:CATENA

关键词: Land-use change; Soil respiration; Q(10); Tea garden; Forest; Chronosequence

年份:2020

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