科研产出
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137941Genome-wide scan for selection signatures reveals novel insights into the adaptive capacity characteristics in three Chinese cattle breeds
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来源:BMC GENOMICS
关键词: Chinese cattle; Extreme environment; Adaptation; Genome; Selection signature
年份:2025
137942Maize-peanut intercropping led to an optimization of soil from the perspective of soil microorganism
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来源:ARCHIVES OF AGRONOMY AND SOIL SCIENCE
关键词: Maize-peanut intercropping; soil property; microbial community; microbial function
年份:2021
137943The construction and evaluation of secretory expression engineering bacteria for the trans-Cry3Aa-T-HasA fusion protein against the Monochamus alternatus vector
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来源:FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY
关键词: Monochamus alternatus; gut microbiota; engineer bacteria; Yersinia entomophaga; pine wilt disease
年份:2024
137944Nutrient metabolism in the liver and muscle of juvenile blunt snout bream (Megalobrama amblycephala) in response to dietary methionine levels
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来源:SCIENTIFIC REPORTS
年份:2021
137945Fine mapping and identification of ERF transcription factor ERF017 as a candidate gene for cold tolerance in pumpkin
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来源:THEORETICAL AND APPLIED GENETICS
年份:2024
137946Elevated Ozone Reduces the Quality of Tea Leaves but May Improve the Resistance of Tea Plants
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来源:PLANTS-BASEL
关键词: ozone pollution; tea quality; catechins; BVOCs; chemical defenses
年份:2024
137947Chromosome-scale genomes of ecologically and economically important rabbitfish Siganus guttatus and Siganus oramin
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来源:GENOMICS
关键词: Fish; Siganus guttatus; Siganus oramin; Genome; HiC
年份:2025
137948Blockchain technology in herbal medicines: Applications, trends, and prospects
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来源:JOURNAL OF APPLIED RESEARCH ON MEDICINAL AND AROMATIC PLANTS
关键词: Blockchain; Herbal medicines; Application; Supervision; Supply chain
年份:2025
137949Grafting on rootstocks with low Cd accumulating potential: A green technology in vegetable production
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来源:ENVIRONMENTAL TECHNOLOGY & INNOVATION
关键词: Grafting; Microbial community; GSH; Subcellular distribution; Cd bioavailability
年份:2025
137950Integrated multi-omic data and analyses reveal the response pathways of green onion (Allium fistulosum L.) to high-temperature stress
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来源:PHYSIOLOGIA PLANTARUM
年份:2023