CALLOSE

作品数:16被引量:52H指数:4
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相关领域:生物学农业科学更多>>
相关作者:锡林呼夏德安由香玲安艳更多>>
相关机构:东北林业大学更多>>
相关期刊:《Journal of Integrative Agriculture》《Horticultural Plant Journal》《Science Bulletin》《Journal of Integrative Plant Biology》更多>>
相关基金:国家自然科学基金河北省自然科学基金国家重点基础研究发展计划更多>>
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  • 期刊=Molecular Plantx
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The IBI1 Receptor ofβ-Aminobutyric Acid Interacts with VOZ Transcription Factors to Regulate Abscisic Acid Signaling and Callose-Associated Defense被引量:7
《Molecular Plant》2020年第10期1455-1469,共15页Roland E.Schwarzenbacher Grace Wardell Joost Stassen Emily Guest Peijun Zhang Estrella Luna Jurriaan Ton 
the European Research Council(ERC,no.309944,“Prime-A-Plant”);J.T..a Research Leadership Award from the Leverhulme Trust(no.RL-2012-042);J.T..a BBSRC-IPA grant to J.T.(BB/P006698/1);J.T..and an ERC-PoC grant to J.T.(no.824985,“ChemPrime”).
Extemal and internal signals can prime the plant immune system for a faster and/or stronger response to pathogen attack.β-aminobutyric acid(BABA)is an endogenous stress metabolite that induces broad-spectrum disease ...
关键词:IBI1 PRIMING abscisic ACID β-aminobutyric ACID CALLOSE E-MTAB-8720 
Phytosphinganine Affects Plasmodesmata Permeability via Facilitating PDLP5-Stimulated Callose Accumulation in Arabidopsis被引量:6
《Molecular Plant》2020年第1期128-143,共16页Ning-Jing Liu Tao Zhang Zhao-Hui Liu Xin Chen Hui-Shan Guo Bai-Hang Ju Yuan-Yuan Zhang Guo-Zhu Li Qiang-Hui Zhou Yong-Mei Qin Yu-Xian Zhu 
This research was supported by grants from the National Science and Technology Major Project(2016ZX08010-001);the National Natural Science Foundation of China(31570283).
Plant plasmodesmata (PDs) are specialized channels that enable communication between neighboring cells. The intercellular permeability of PDs, which affects plant development, defense, and responses to stimuli, must b...
关键词:PLASMODESMATA phytosphinganine SPHINGOLIPID binding MOTIF PDLP5 
Integrating Hormone- and Micromolecule- Mediated Signaling with Plasmodesmal Communication被引量:2
《Molecular Plant》2016年第1期46-56,共11页Xiao Han Jae-Yean Kim 
Intercellular and supracellular communications through plasmodesmata are involved in vital processes for plant development and physiological responses. Micro- and macromolecules, including hormones, RNA, and proteins,...
关键词:CALLOSE cell-to-cell movement HORMONE intercellular signaling PLASMODESMATA 
Evidence for the Role Evolutionary Increase Yield in Cotton of Transfer Cells in the in Seed and Fiber Biomass被引量:2
《Molecular Plant》2010年第6期1075-1086,共12页Deborah A. Pugh Christina E. Offler Mark J. Talbot Yong-Ling Ruan 
Transfer cells (TCs) are specialized cells exhibiting invaginated wall ingrowths (Wls), thereby amplifying their plasma membrane surface area (PMSA) and hence the capacity to transport nutrients. However, it rem...
关键词:CALLOSE cell wall CELLULOSE cotton fiber evolution POLYPLOIDIZATION seed development sucrose synthase transfer cell. 
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