科研产出
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1Regulation of the C:N Ratio Improves the N-Fixing Bacteria Activity, Root Growth, and Nodule Formation of Peanut
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来源:JOURNAL OF SOIL SCIENCE AND PLANT NUTRITION
关键词: Glucose addition; Plant growth; Root morphology; Microbial richness and diversity
年份:2023
2Integrated analyses of transcriptome and metabolome provides new insights into the primary and secondary metabolism in response to nitrogen deficiency and soil compaction stress in peanut roots
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来源:FRONTIERS IN PLANT SCIENCE
关键词: peanut root; soil compaction stress; nitrogen deficiency; metabolome; transcriptome
年份:2022
3Integrated analyses reveal the response of peanut to phosphorus deficiency on phenotype, transcriptome and metabolome
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来源:BMC PLANT BIOLOGY
关键词: Arachis hypogaea; Phosphorus deficiency; Transcriptome; Metabolome; miRNAs; Lignin
年份:2022
4Biochar relieves the toxic effects of microplastics on the root-rhizosphere soil system by altering root expression profiles and microbial diversity and functions
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来源:ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY
关键词: Microplastic contamination; Biochar amendment; Transcriptome; Rhizosphere microbiome; Plant-soil system
年份:2024
5Rhizosphere Ventilation Effects on Root Development and Bacterial Diversity of Peanut in Compacted Soil
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来源:PLANTS-BASEL
关键词: nitrogen-fixing bacterial communities; peanut; root morphology; root enzyme activity; soil ventilation
年份:2024
6Multi-year crop rotation and quicklime application promote stable peanut yield and high nutrient-use efficiency by regulating soil nutrient availability and bacterial/fungal community
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来源:FRONTIERS IN MICROBIOLOGY
关键词: peanut; crop rotation pattern; continuous cropping obstacle; bacterial/fungal community; quicklime
年份:2024
7Biochar alleviated the toxic effects of microplastics-contaminated geocarposphere soil on peanut (Arachis hypogaea L.) pod development: roles of pod nutrient metabolism and geocarposphere microbial modulation
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来源:JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE
关键词: peanut pod development; microplastics contamination; biochar amendment; transcriptome; geocarposphere microbiome
年份:2024
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