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The PLA Gene Family in Tomato: Identification, Phylogeny, and Functional Characterization

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机构:

来源:GENES年份:2025

关键词: phospholipase A; genome-wide identification; phylogenetic analysis; cold stress; tomato

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A Novel Allelic Variant of OsAGPL2 Influences Rice Eating and Cooking Quality

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机构:

来源:CELLS年份:2025

关键词: rice quality; OsAGPL2; white-core endosperm mutant; superior haplotype

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Phylogenomic and super-pangenome analyses unveil the genetic landscape of tomato evolution and domestication

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来源:PLANT BIOTECHNOLOGY JOURNAL年份:2025

关键词: gene-based super-pangenome; genetic diversity; agronomic traits; presence/absence variation (PAV); crop improvement; sustainable production

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Inhibitory effect and mechanism of purified saponin from Polygonatum cyrtonema Hua on human ovarian cancer cell A2780

SCI

机构:

来源:FOOD AND CHEMICAL TOXICOLOGY年份:2025

关键词: Polygonatum cyrtonema Hua; Saponin; Ovarian cancer; Anticancer activity; Action mechanism

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Influence of color bagging on anthocyanin and sugar in bayberry fruit

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机构:

来源:SCIENTIA HORTICULTURAE年份:2025

关键词: Bayberry; Color bagging; Light quality; Fruit quality

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Melatonin-Mediated Regulation of Antioxidant Defense Enhances the Resistance of Tea Plants (Camellia sinensis L.) to Lead-Induced Stress

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机构:

来源:PLANTS-BASEL年份:2025

关键词: tea plant; lead stress; melatonin; antioxidant capacity; anthocyanin

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Metabolomics and Spatial Distribution Analysis in Characterizing Rice Varieties for Huangjiu

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机构:

来源:JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY年份:2025

关键词: Huangjiubrewing; rice; small-molecule substances; mass spectrometry imaging

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AMPGen: an evolutionary information-reserved and diffusion-driven generative model for de novo design of antimicrobial peptides

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来源:COMMUNICATIONS BIOLOGY年份:2025
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Impact of Fluxapyroxad and Mefentrifluconazole on Microbial Succession and Metabolic Regulation in Rice Under Field Conditions

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机构:

来源:FOODS年份:2025

关键词: brown rice; residue; bacterial community; differentially expressed metabolites

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The mutation in the critical sterility-inducing temperature-regulating gene OsTMS5 and OsCSIT1 enhances cadmium tolerance in rice seedlings

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机构:

来源:PLANT GROWTH REGULATION年份:2025

关键词: Cadmium; OsCSIT1; Rice

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