科研产出
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51The peroxidase gene OsPrx114 activated by OsWRKY50 enhances drought tolerance through ROS scavenging in rice
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来源:PLANT PHYSIOLOGY AND BIOCHEMISTRY
关键词: Drought tolerance; OsPrx114; OsWRKY50; Rice; ROS scavenging
年份:2023
52Complete genome sequence of Paris polyphylla chlorotic mottle virus infecting Paris polyphylla var. yunnanensis in southwest China
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来源:ARCHIVES OF VIROLOGY
年份:2023
53N6-methyladenosine RNA modification promotes viral genomic RNA stability and infection
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来源:NATURE COMMUNICATIONS
年份:2022
54Transcriptional profiling reveals a critical role of GmFT2a in soybean staygreen syndrome caused by the pest Riptortus pedestris
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来源:NEW PHYTOLOGIST
关键词: defense response; photoperiod flowering; Riptortus pedestris; soybean; soybean staygreen syndrome
55The P3N-PIPO Protein Encoded by Wheat Yellow Mosaic Virus Is a Pathogenicity Determinant and Promotes Its Pathogenicity through Interaction with NbRLK6 in Nicotiana benthamiana
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来源:VIRUSES-BASEL
关键词: WYMV; P3N-PIPO; pathogenicity; NbRLK6
年份:2022
56Elevating plant immunity by translational regulation of a rice WRKY transcription factor
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来源:PLANT BIOTECHNOLOGY JOURNAL
关键词: OsWRKY7; alternative translation; protein stability; basal immunity; Xoo
年份:2023
57Bio-functionalized nickel-silica nanoparticles suppress bacterial leaf blight disease in rice (Oryza sativa L.)
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来源:FRONTIERS IN PLANT SCIENCE
关键词: biosynthesis; nanoparticle composites; rice bacterial leaf blight; Xanthomonas oryzae pv. oryzae; biofilm
年份:2023
58The nanovirus U2 protein suppresses RNA silencing via three conserved cysteine residues
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来源:MOLECULAR PLANT PATHOLOGY
关键词: cysteine; milk vetch dwarf virus; Nanovirus; U2 protein; viral suppressor of RNA silencing
年份:2023
59TaTHI2 interacts with Ca2+-dependent protein kinase TaCPK5 to suppress virus infection by regulating ROS accumulation
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来源:PLANT BIOTECHNOLOGY JOURNAL
关键词: wheat; TaTHI2; TaCPK5; reactive oxygen species; Chinese wheat mosaic virus; CP
年份:2024
60Microbial carbon and phosphorus metabolism regulated by C:N:P stoichiometry stimulates organic carbon accumulation in agricultural soils
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来源:SOIL & TILLAGE RESEARCH
关键词: Soil nutrients; Microbial metabolism; Ecoenzymatic stoichiometry; Microbial carbon use efficiency
年份:2024