科研产出
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41Increasing in ROS levels and callose deposition in peduncle vascular bundles of wheat (Triticum aestivum L.) grown under nitrogen deficiency
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来源:JOURNAL OF PLANT INTERACTIONS
关键词: antioxidant enzymes callose deposition nitrogen deficiency reactive oxygen species vascular bundles Triticum aestivum L
年份:2013
42Remobilization of vegetative nitrogen to developing grain in wheat (Triticum aestivum L.)
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来源:FIELD CROPS RESEARCH
关键词: Grain protein content Nitrogen remobilization Sink/source relationship Senescence Wheat
43Water-soluble phenolic compounds in the coat control germination and peroxidase reactivation in Triticum aestivum seeds
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来源:PLANT GROWTH REGULATION
关键词: Coleoptile Peroxidase Radicle Seed germination Triticum aestivum Water-soluble phenolic compounds HYDROGEN-PEROXIDE WHEAT RAMAN SPECTROSCOPY FLAVONOIDS CARYOPSES DORMANCY ACID
44Anomalous secondary structures in stem and root of two typical halophytes
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来源:NORDIC JOURNAL OF BOTANY
46Elucidating the source-sink relationships of zinc biofortification in wheat grains: A review
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来源:FOOD AND ENERGY SECURITY
关键词: biofortification; foliar sprays; isotopes; micronutrient; phytohormones; remobilization
47Comparative analysis of root transcriptome profiles between drought-tolerant and susceptible wheat genotypes in response to water stress
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机构:
来源:PLANT SCIENCE
关键词: Wheat (Triticumaestivum L); Drought; RNA-Seq; Root; Genotypes; Differentially expressed genes
年份:2018
48Metabolic analysis reveals temporal changes in C/N metabolites and senescence of flag leaf in wheat during grain filling
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来源:ACTA PHYSIOLOGIAE PLANTARUM
关键词: Flag leaf; Metabolite profiling; Senescence; Stress resistance; Triticum aestivum L
年份:2021
49Signaling Responses to N Starvation: Focusing on Wheat and Filling the Putative Gaps With Findings Obtained in Other Plants. A Review
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机构:
来源:FRONTIERS IN PLANT SCIENCE
关键词: microRNA; nitrogen starvation; phytohormone; root system architecture; signal; wheat
年份:2021
50Combining targeted metabolite analyses and transcriptomics to reveal the specific chemical composition and associated genes in the incompatible soybean variety PI437654 infected with soybean cyst nematode HG1.2.3.5.7
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来源:BMC PLANT BIOLOGY
关键词: Incompatible and compatible soybean varieties; Soybean cyst nematode; Metabolomic analyses; Transcriptomics; Combination analyses
年份:2021