科研产出
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41Genome-wide identification, evolution and function analysis of UGTs superfamily in cotton
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机构:
来源:FRONTIERS IN MOLECULAR BIOSCIENCES
关键词: gene family; UDP-glycosyltransferase; evolution; gene function; cotton
年份:2022
42Raffinose degradation-related gene GhAGAL3 was screened out responding to salinity stress through expression patterns of GhAGALs family genes
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机构:
来源:FRONTIERS IN PLANT SCIENCE
关键词: alpha-galactosidase (AGALs); Gossypium hirsutum; raffinose family oligosaccharides (RFOs); abiotic stresses; functional verification
年份:2023
43Analysis of the histidine kinase gene family and the role of GhHK8 in response to drought tolerance in cotton
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机构:
来源:PHYSIOLOGIA PLANTARUM
年份:2023
44Melatonin receptor, GhCAND2-D5 motivated responding to NaCl signaling in cotton
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机构:
来源:PLANT PHYSIOLOGY AND BIOCHEMISTRY
关键词: Melatonin; Plant melatonin receptors; Abiotic stress; CANDIDATE G-PROTEIN COUPLED; RECEPTOR; Cotton
年份:2023
45Antioxidant system was triggered to alleviate salinity stress by cytokinin oxidase/dehydrogenase gene GhCKX6b-Dt in cotton
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机构:
来源:ENVIRONMENTAL SCIENCES EUROPE
关键词: Cytokinin oxidase/dehydrogenase; CKX; Salinity stress; GhCKX6b-Dt; Cytokinin; Antioxidant
年份:2023
46A high-quality assembled genome and its comparative analysis decode the adaptive molecular mechanism of the number one Chinese cotton variety CRI-12
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机构:
来源:GIGASCIENCE
关键词: CRI-12; genome assembly; annotation; haplotypes; DNA methylation
年份:2022
47ER whorls triggered by GhCNX6 were discovered involved in drought stress on cotton
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机构:
来源:ENVIRONMENTAL AND EXPERIMENTAL BOTANY
关键词: Cotton; Calnexin; GhCNX6; Drought stress; ER whorls
年份:2022
48Starch granules of the sugar-pathway were eliminated under the stress of PEG-drought compared with Soil-drought
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机构:
来源:INDUSTRIAL CROPS AND PRODUCTS
关键词: Soil-drought; PEG-drought; Starch and sucrose pathway; Photosynthesis; Cotton
年份:2023
49Combined transcriptomic and metabolomic analyses elucidate key salt-responsive biomarkers to regulate salt tolerance in cotton
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机构:
来源:BMC PLANT BIOLOGY
关键词: Metabolome; Transcriptome; NaCl; Mechanism
年份:2023
50A flavonol synthase (FLS) gene, GhFLS1, was screened out increasing salt resistance in cotton
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机构:
来源:ENVIRONMENTAL SCIENCES EUROPE
关键词: GhFLS1; NaCl stress; Flavonol; Expression level; VIGS
年份:2023