科研产出
- 时间
- 相关度
131391Risk factors of bovine clinical mastitis and antimicrobial resistance of mastitis-causing Escherichia coli in Shandong, China
作者:
机构:
来源:THAI JOURNAL OF VETERINARY MEDICINE
关键词: antimicrobial resistance; bovine mastitis; China; cow culling; risk factors
年份:2024
131392N4-acetylcytidine mRNA modification regulates photosynthesis in plants
作者:
机构:
来源:NEW PHYTOLOGIST
关键词:
年份:2025
131393Mechanisms of lime-induced N2O mitigation in acidic soils: A meta-analysis of microbial activity and substrate dynamics
作者:
机构:
来源:APPLIED SOIL ECOLOGY
关键词: Acidic soil condition; Agricultural ecosystem; amoA gene; Grain yield; nosZ gene; Substrate availability
年份:2025
131394Comprehensive insights into the impact of pretreatment with deep eutectic solvents on the anaerobic digestion of cornstalk
作者:
机构:
来源:CHEMICAL ENGINEERING JOURNAL
关键词: Deep eutectic solvent; Pretreatment; Cornstalk; Anaerobic digestion
年份:2025
131395Conservation agriculture enhances soil biodiversity and fertility: Evidence from contrasting soil textures in Cambodia
作者:
机构:
来源:PEDOBIOLOGIA
关键词: Conventional tillage; Soil biodiversity; Soil fauna; Soil quality; Soil organic carbon; Vegetable farming; Zero tillage
年份:2025
131396Physiological and biochemical responses of pepper (Capsicum annuum) to cadmium stress: The mitigating effects of exogenous abscisic acid
作者:
机构:
来源:ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY
关键词: Cell wall; Abscisic acid; Oxidative stress; Cd stress; Subcellular distribution
年份:2025
131397Community variation characteristics and driving pathways of soil microarthropods in meadow steppe under different nitrogen application durations
作者:
机构:
来源:AGRICULTURE ECOSYSTEMS & ENVIRONMENT
关键词: Nitrogen application; Soil microarthropods; Threshold effect; Meadow steppe
年份:2025
131398Allicin enhances urea-N conversion to microbial-N by inhibiting urease activity and modulating the rumen microbiome in cattle
作者:
机构:
来源:MICROBIOME
关键词: Allicin; Rumen microbiome; Urease inhibition; Urea nitrogen; Microbial nitrogen
年份:2025
131399Homozygous editing of multiple genes for accelerated generation of xenotransplantation pigs
作者:
机构:
来源:GENOME RESEARCH
年份:2025
131400Engineering DMNT emission in cotton enhances direct and indirect defense against mirid bugs
作者:
机构:
来源:JOURNAL OF ADVANCED RESEARCH
关键词: Plant defense; DMNT biosynthesis; CRISPR/Cas9; Overexpression; Mirid bug; Ecological trap
年份:2025