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资源类型: 外文期刊
作者:Liu, Ming(精确检索)
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21Long-term mineral fertilization in paddy soil alters the chemical structures and decreases the fungistatic activities of humic acids

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来源:EUROPEAN JOURNAL OF SOIL SCIENCE

关键词: 13C-NMR spectroscopy; ecological function; humic substance; humus structure; long-term experiment; phytopathogenic fungi; rice soil

年份:2019

22Soil pH rather than nutrients drive changes in microbial community following long-term fertilization in acidic Ultisols of southern China

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来源:JOURNAL OF SOILS AND SEDIMENTS

关键词: Acidification; CLPP; Long-term fertilization; PLFA; Ultisols

年份:2018

23Identification and expression profiles analysis of odorant-binding proteins in soybean aphid, Aphis glycines (Hemiptera: Aphididae)

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来源:INSECT SCIENCE

关键词: Aphis glycines; expression profiles; fluorescence binding assay; odorant-binding proteins

24Single-cell RNA sequencing analysis reveals alginate oligosaccharides preventing chemotherapy-induced mucositis

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来源:MUCOSAL IMMUNOLOGY

25Distinct Successions of Common and Rare Bacteria in Soil Under Humic Acid Amendment - A Microcosm Study

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来源:FRONTIERS IN MICROBIOLOGY

关键词: rare bacteria; succession; community assembly; niche breadth; functional diversity; humic acid

年份:2019

26A Novel Neutralizing Antibody Targeting a Unique Cross-Reactive Epitope on the hi Loop of Domain II of the Envelope Protein Protects Mice against Duck Tembusu Virus

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来源:JOURNAL OF IMMUNOLOGY

年份:2020

27Improved one-tube RT-PCR method for simultaneous detection and genotyping of duck hepatitis A virus subtypes 1 and 3

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来源:PLOS ONE

年份:2019

28Trade-off between potential phytopathogenic and non-phytopathogenic fungi in the peanut monoculture cultivation system

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来源:APPLIED SOIL ECOLOGY

关键词: Monoculture; Non-phytopathogenic fungi; Peanut; Potential phytopathogenic fungi; Trade-off

年份:2020

29Diversity and phylogeny of rhizobia associated with Desmodium spp. in Panxi, Sichuan, China

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来源:SYSTEMATIC AND APPLIED MICROBIOLOGY

关键词: Desmodium Rhizobia Housekeeping genes Genetic diversity MLSA

30Promoter Methylation Changes in KRT17: A Novel Epigenetic Marker for Wool Production in Angora Rabbit

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来源:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES

关键词: KRT17; epigenetic marker; wool production; SP1

年份:2022