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Exogenous tannic acid relieves imidacloprid-induced oxidative stress in tea tree by activating antioxidant responses and the flavonoid biosynthetic pathway

SCI

机构:

来源:ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY年份:2023

关键词: Tannic acid; Pesticide oxidative stress; Antioxidant responses; Flavonoid biosynthetic pathway; Tea

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Assessment of yield performances for grain sorghum varieties by AMMI and GGE biplot analyses

SCI

机构:

来源:FRONTIERS IN PLANT SCIENCE年份:2023

关键词: yield performance and stability; G x E interaction; AMMI; GGE biplot; grain sorghum; multi-environment trial

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Fu Brick Tea as a Staple Food Supplement Attenuates High Fat Diet Induced Obesity in Mice

SCI

机构:

来源:FOODS年份:2023

关键词: Fu brick tea noodles; obesity; hyperlipidemia; inflammation; gut microbiota

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The OsCPK17-OsPUB12-OsRLCK176 module regulates immune homeostasis in rice

SCI

机构:

来源:PLANT CELL年份:2023
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Effects of Partial Substitution of Organic Fertilizer for Synthetic N Fertilizer on Yield and N Use Efficiencies in a Semiarid Winter Wheat-Summer Maize Rotation

SCI

机构:

来源:AGRONOMY-BASEL年份:2023

关键词: winter wheat-summer maize rotation; organic fertilizer; grain yield; water use efficiency; N use efficiency; soil organic carbon; total nitrogen content

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RNAi-Mediated Interference with EonuGR1 Affects the Recognition of Phenylacetaldehyde by Empoasca onukii Matsuda (Hemiptera: Cicadellidae)

SCI

机构:

来源:AGRONOMY-BASEL年份:2023

关键词: Empoasca onukii Matsuda; EonuGR1; RNA interference; tea plant volatiles

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How do 2D/3D urban landscapes impact diurnal land surface temperature: Insights from block scale and machine learning algorithms

SCI

机构:

来源:SUSTAINABLE CITIES AND SOCIETY年份:2023

关键词: Urban landscapes; Diurnal land surface temperature; Block scale; Machine learning algorithms; Urban heat island

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Amelioration Effect of Biochar on Nitrogen Transformation and Secondary Salinization of Vegetable Soils in Facilities

SCI

机构:

来源:JOURNAL OF SOIL SCIENCE AND PLANT NUTRITION年份:2023

关键词: Bacterial community composition; Biochar applications; Soil environment improvement; Soil N transformation

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Full-length transcriptome and metabolism revealed the difference of callus formation of tea cutting under white, red and blue light

SCI

机构:

来源:PLANT GROWTH REGULATION年份:2023

关键词: Camellia sinensis (L.) O. Kuntze; Light quality; Callus formation; Full-length transcriptome; Phytohormone; Plant hormone signal transduction

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