科研产出
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3711Mutation of an Essential 60S Ribosome Assembly Factor MIDASIN 1 Induces Early Flowering in Arabidopsis
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来源:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
关键词: Arabidopsis; MDN1; ribosome biogenesis defect; early flowering; ABI5
年份:2022
3712Adsorption of Sulfonamides in Aqueous Solution on Reusable Coconut-Shell Biochar Modified by Alkaline Activation and Magnetization
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来源:FRONTIERS IN CHEMISTRY
关键词: biochar; coconut shell; sulfonamide antibiotics; adsorption; modification
年份:2022
3713Transcriptomic and proteomic analyses uncover the drought adaption landscape of Phoebe zhennan
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来源:BMC PLANT BIOLOGY
关键词: Phoebe zhennan; Drought; Antioxidant enzyme; Hormone; Transcriptomic; Proteomic
年份:2022
3714Quantitative Trait Locus Mapping Combined with RNA Sequencing Reveals the Molecular Basis of Seed Germination in Oilseed Rape
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来源:BIOMOLECULES
关键词: Brassica napus; seed germination; quantitative trait locus; transcriptome; molecular basis
年份:2021
3715Asian Carp, an Alternative Material for Surimi Production: Progress and Future
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来源:FOODS
关键词: Asian carp; surimi process; gelation; surimi additive; surimi product
年份:2022
3716Characterization of pectin methylesterase gene family and its possible role in juice sac granulation in navel orange (Citrus sinensis Osbeck)
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来源:BMC GENOMICS
关键词: Citrus sinensis; Pectin methylesterases (PMEs); Juice sac granulation; Transcription factor
年份:2022
3717Identification of a coproporphyrinogen-III oxidase gene and its correlation with nacre color in Hyriopsis cumingii
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来源:PLOS ONE
年份:2022
3718Trans-2-hexenal/beta-cyclodextrin effectively reduces green mold in citrus fruit
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来源:POSTHARVEST BIOLOGY AND TECHNOLOGY
关键词: Citrus; Green mold; Inhibitory effect; Trans-2-hexenal-beta-cyclodextrin; Penicillium digitatum
年份:2022
3719Removal of Phosphate from Aqueous Solution by Zeolite-Biochar Composite: Adsorption Performance and Regulation Mechanism
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来源:APPLIED SCIENCES-BASEL
关键词: phosphate; natural zeolite; biochar; composite; co-pyrolysis
年份:2022
3720Transcriptomic Signatures of Pearl Oyster Pinctada Maxima in Response to Acute Salinity Stress
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来源:FRONTIERS IN MARINE SCIENCE
关键词: bivalves; Pinctada maxima; molecular response; biochemical response; salinity
年份:2022