科研产出
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21Competitive yield and economic benefits of cotton achieved through a combination of extensive pruning and a reduced nitrogen rate at high plant density
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来源:FIELD CROPS RESEARCH
关键词: Cotton Economic benefit Nitrogen fertilizer Plant density Plant pruning
22Manipulation of dry matter accumulation and partitioning with plant density in relation to yield stability of cotton under intensive management
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来源:FIELD CROPS RESEARCH
关键词: Cotton Yield stability Plant density Biomass partitioning
23Stem girdling influences concentrations of endogenous cytokinins and abscisic acid in relation to leaf senescence in cotton
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来源:ACTA PHYSIOLOGIAE PLANTARUM
关键词: malondialdehyde: MDA 542-78-9 chlorophyll zeatin: 1637-39-4 dihydrozeatin: 23599-75-9 dihydrozeatin riboside: 22663-55-4 abscisic acid: ABA 21293-29-8 endogenous phytohormone cytokinins: endogenous phytohormone plant growth root development crop yield plant biomass leaf senescence plant physiology dry root weight species development foliar development squaring stage stem girdling main-stem leaf photosynthetic rate
24High plant density inhibits vegetative branching in cotton by altering hormone contents and photosynthetic production
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来源:FIELD CROPS RESEARCH
关键词: Cotton; Plant density; Vegetative branch; Hormone; Gene expression
年份:2019
25Technologies and theoretical basis of light and simplified cotton cultivation in China
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来源:FIELD CROPS RESEARCH
关键词: Cotton Light and simplified cultivation Ecophysiology
26One-off basal application of nitrogen fertilizer increases the biological yield but not the economic yield of cotton in moderate fertility soil
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来源:FIELD CROPS RESEARCH
关键词: Nitrogen; One-off application; Biomass; Nitrogen yield efficiency index; N-15 partitioning
年份:2022
27Alternate intercropping of cotton and peanut increases productivity by increasing canopy photosynthesis and nutrient uptake under the influence of rhizobacteria
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来源:FIELD CROPS RESEARCH
关键词: Cotton; Intercropping; Canopy photosynthesis; C-13 assimilate partitioning; Rhizosphere bacteria
年份:2023
28Terminal removal at first square enhances vegetative branching to increase seedcotton yield at low plant density
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来源:FIELD CROPS RESEARCH
关键词: Cotton; Vegetative branching; Sympodial branching; Compensatory growth; Canopy photosynthesis; Dry matter partitioning
年份:2023
29Cotton yield stability achieved through manipulation of vegetative branching and photoassimilate partitioning under reduced seedling density and double seedlings per hole
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来源:FIELD CROPS RESEARCH
关键词: Cotton; Yield stability; Canopy photosynthesis; Assimilate partitioning; Vegetative branch
年份:2023
30Plastic film mulching does not increase the seedcotton yield due to the accelerated late-season leaf senescence of short-season cotton compared with non-mulching
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来源:FIELD CROPS RESEARCH
关键词: Cotton; Canopy photosynthesis; 13 C-photoassimilate partitioning; Root traits; Senescence -related genes
年份:2022