科研产出
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89871Antibacterial Activity of Chitosan Against the Asian Pear Pathogenic Bacterium Bacillus pumilus
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来源:ASIAN JOURNAL OF CHEMISTRY
关键词: Antibacterial activity Bacillus pumilus Chitosan Concentration Growth broth.
89872Cloning and characterization of a novel sulfate transporter gene from radish (Raphanus sativus L.)
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来源:DNA SEQUENCE
关键词: mutation Raphanus sativus splicing sulfate transporter ARABIDOPSIS FAMILY
89873The function of Rad6 gene in Hevea brasiliensis extends beyond DNA repair
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来源:PLANT PHYSIOLOGY AND BIOCHEMISTRY
关键词: DNA repair Hevea brasiliensis Rad6 Ubiquitin conjugating enzyme
89874Characterizing developmental and inducible differentiation between juvenile and adult plants of Aechmea fasciata treated with ethylene by transcriptomic analysis
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来源:PLANT GROWTH REGULATION
关键词: Aechmea fasciata Ethylene Flower stimulation Gene expression Transcriptome
89875Effect of high-dose nano-selenium and selenium-yeast on feed digestibility, rumen fermentation, and purine derivatives in sheep
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来源:BIOLOGICAL TRACE ELEMENT RESEARCH
关键词: Feed digestibility Nano-selenium Purine derivatives Rumen fermentation Selenium-yeast Sheep
89876SSR marker-assisted improvement of fiber qualities in Gossypium hirsutum using G-barbadense introgression lines
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来源:THEORETICAL AND APPLIED GENETICS
89877Development of rapid immunoassays for the detection of ractopamine in swine urine
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来源:FOOD ADDITIVES AND CONTAMINANTS PART A-CHEMISTRY ANALYSIS CONTROL EXPOSURE & RISK ASSESSMENT
关键词: Biochemistry and Molecular Biophysics Methods and Techniques
89878Supramolecular imprinted sensor for carbofuran detection based on a functionalized multiwalled carbon nanotube-supported Pd-Ir composite and methylene blue as catalyst
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来源:ELECTROCHIMICA ACTA
关键词: Supramolecular Molecular imprinted 4-tert-butylcalix[8]arene Nanocomposite Carbofuran
89879Assessment of beta-D-Glucosidase Activity of Intact Cells of Two Oenococcus oeni Strains with Synthetic and Natural Substrates
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来源:CZECH JOURNAL OF FOOD SCIENCES
关键词: Oenococcus oeni strains beta-D-glucosidase activity different substrates partial characterisation
89880Antifungal effect and action mechanism of antimicrobial peptide polybia-CP
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来源:JOURNAL OF PEPTIDE SCIENCE
关键词: antimicrobial peptide polybia-CP candidiasis antifungal ROS production