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资源类型: 外文期刊
作者:Yu, Yanwen(精确检索)
作者:Huang, Rongfeng(精确检索)
作者:Huang, Rongfeng(精确检索)
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1Integration of Ethylene and Light Signaling Affects Hypocotyl Growth in Arabidopsis

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来源:FRONTIERS IN PLANT SCIENCE

关键词: hypocotyl elongation ethylene signaling light signaling seedling emergence transcriptional activation protein stability

年份:2017

2D27E mutation of VTC1 impairs the interaction with CSN5B and enhances ascorbic acid biosynthesis and seedling growth in Arabidopsis

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来源:PLANT MOLECULAR BIOLOGY

关键词: AsA biosynthesis CSN5B Point mutation Protein stability VTC1

3The ethylene response factor OsERF109 negatively affects ethylene biosynthesis and drought tolerance in rice

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来源:PROTOPLASMA

关键词: Rice ERF protein Drought resistance Ethylene production

4Ascorbic Acid Integrates the Antagonistic Modulation of Ethylene and Abscisic Acid in the Accumulation of Reactive Oxygen Species

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来源:PLANT PHYSIOLOGY

年份:2019

5Ethylene Promotes Hypocotyl Growth and HY5 Degradation by Enhancing the Movement of COP1 to the Nucleus in the Light

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来源:PLOS GENETICS

年份:2013

6Abscisic Acid Antagonizes Ethylene Production through the ABI4-Mediated Transcriptional Repression of ACS4 and ACS8 in Arabidopsis

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来源:MOLECULAR PLANT

关键词: ABA ABI4 ethylene biosynthesis stress response transcriptional regulation

年份:2016

7The ethylene response factor AtERF11 that is transcriptionally modulated by the bZIP transcription factor HY5 is a crucial repressor for ethylene biosynthesis in Arabidopsis

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来源:PLANT JOURNAL

关键词: abscisic acid: ABA 21293-29-8 ethylene: 74-85-1 biosynthesis bZIP HY5 protein ethylene response factor-11: ERF11 C-terminal repressor motif stress response plant development

8Salt Stress and Ethylene Antagonistically Regulate Nucleocytoplasmic Partitioning of COP1 to Control Seed Germination

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来源:PLANT PHYSIOLOGY

9Arabidopsis CSN5B Interacts with VTC1 and Modulates Ascorbic Acid Synthesis

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来源:PLANT CELL

年份:2013

10Proteomic Analysis of a Rice Mutant sd58 Possessing a Novel d1 Allele of Heterotrimeric G Protein Alpha Subunit (RGA1) in Salt Stress with a Focus on ROS Scavenging

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来源:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES

关键词: salt tolerance; RGA1; map-based cloning; iTRAQ; ROS scavenging

年份:2019

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