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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Arabidopsis PDLP7 modulated plasmodesmata function is related to BG10-dependent glucosidase activity required for callose degradation
《Science Bulletin》2024年第19期3075-3088,共14页Xin Chen Wan-Wan Li Jin Gao Zhiguo Wu Juan Du Xiaoming Zhang Yu-Xian Zhu 
supported by the National Natural Science Foundation of China(31830057)。
The microdomains of plasmodesmata,specialized cell-wall channels responsible for communications between neighboring cells,are composed of various plasmodesmata-located proteins(PDLPs)and lipids.Here,we found that,amon...
关键词:PLASMODESMATA PDLP7 CALLOSE β-1 3-glucosidase 
α1-COP modulates plasmodesmata function through sphingolipid enzyme regulation
《Journal of Integrative Plant Biology》2024年第8期1639-1657,共19页Arya Bagus Boedi Iswanto Minh Huy Vu Jong Cheol Shon Ritesh Kumar Shuwei Wu Hobin Kang Da-Ran Kim Geon Hui Son Woe Yoen Kim Youn-Sig Kwak Kwang Hyeon Liu Sang Hee Kim Jae-Yean Kim 
supported by the National Research Foundation of Korea(NRF)grant funded by the Korea Government(MSIT)(Grant Nos.NRF 2018R1A2A1A05077295,2020M3A9I4038352,2022R1A2C3010331,2020R1A6A1A03044344,and 2022R1A 5A1031361);a grant from the New Breeding Technologies Development Program(Grant No.PJ01653202),Rural Development Administration(RDA),Republic of Korea。
Callose,aβ-1,3-glucan plant cell wall polymer,regulates symplasmic channel size at plasmodesmata(PD)and plays a crucial role in a variety of plant processes.However,elucidating the molecular mechanism of PD callose h...
关键词:CALLOSE coatomer proteins membrane-bound vesicle PLASMODESMATA sphingolipid enzymes 
Potassium sulphate induces resistance of rice against the rootknot nematode Meloidogyne graminicola被引量:2
《Journal of Integrative Agriculture》2022年第11期3263-3277,共15页LIU Mao-Yan PENG De-liang SU Wen XIANG Chao JIAN Jin-zhuo ZHAO Jie PENG Huan LIU Shi-ming KONG Ling-an DAI Liang-ying HUANG Wen-kun LIU Jing 
supported by the Natural Science Foundation of China(32172382,31801716,and 31571986);the National Key Research and Development Program of China(2021YFC2600404);the Scientific Research Project of Hunan Provincial Department of Education of China(19B259)。
Potassium(K),an important nutrient element,can improve the stress resistance/tolerance of crops.The application of K in resisting plant-parasitic nematodes shows that the K treatment can reduce the occurrence of nemat...
关键词:RICE Meloidogyne graminicola potassium sulphate induced resistance H_(2)O_(2) CALLOSE potassium channel and transporter 
Delayed callose degradation restores the fertility of multiple P/TGMS lines in Arabidopsis被引量:1
《Journal of Integrative Plant Biology》2022年第3期717-730,共14页Kai-Qi Wang Ya-Hui Yu Xin-Lei Jia Si-Da Zhou Fang Zhang Xin Zhao Ming-Yue Zhai Yi Gong Jie-Yang Lu Yuyi Guo Nai-Ying Yang Shui Wang Xiao-Feng Xu Zhong-Nan Yang 
supported by grants from the National Natural Science Foundation of China(31930009,31900260);the Shanghai Municipal Education Commission(2019-01-07-00-02-E00006);the Science and Technology Commission of Shanghai Municipality(18DZ2260500 and 17DZ2252700)。
Photoperiod/temperature-sensitive genic male sterility(P/TGMS)is widely applied for improving crop production.Previous investigations using the reversible male sterile(rvms)mutant showed that slow development is a gen...
关键词:callose degradation fertility restoration pollen wall pollen development P/TGMS 
H_(2)O_(2)mediates transcriptome reprogramming during Soybean mosaic virus-induced callose deposition in soybean被引量:3
《The Crop Journal》2022年第1期262-272,共11页Tianjie Sun Xizhe Sun Fukuan Li Nan Ma Mengxuan Wang Yan Chen Na Liu Yuan Jin Jie Zhang Chunyan Hou Chunyan Yang Dongmei Wang 
supported by the National Natural Science Foundation of China(30971706 and31471421);"973"Preliminary Program(2014CB160318);Hebei Natural Science Foundation(C2020204132)。
The main defense response to Soybean mosaic virus(SMV)infection in soybean[Glycine max(L.)Merr.]is thought to be blockage of intercellular virus transport by callose deposition on plasmodesmata.But the specific regula...
关键词:CALLOSE Soybean mosaic virus H_(2)O_(2) TRANSCRIPTOME SOYBEAN 
Comparative analysis of Wanjincheng orange leaf and root responses to ‘Candidatus liberibacter asiaticus’ infection using leaf-disc grafting被引量:3
《Horticultural Plant Journal》2021年第5期401-410,共10页Zhu Xie Ke Zhao Junhong Long Lin Zhen Xiuping Zou Shanchun Chen 
supported by grants from the National Key R&D Program of China(Grant No.2018YFD0201500);the Earmarked Fund for the China Agriculture Research System(Grant No.CARS26);the Natural Science Foundation Project of Chongqing(Grant No.cstc2017jcyjBX0020).
Citrus Huanglongbing,associated with Candidatus Liberibacter asiaticus(Las),is the serious disease of citrus worldwide.Here,we compared differences between leaf and root responses in Wanjincheng Orange(Citrus sinensis...
关键词:HUANGLONGBING Leaf-disc grafting Starch Ultrathin sections qPCR CALLOSE 
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 
Cytological and Molecular Characteristics of Pollen Abortion in Lily with Dysplastic Tapetum被引量:12
《Horticultural Plant Journal》2019年第6期281-294,共14页Xueqian Wang Ze Wu Lanqing Wang Meijiao Wu Dehua Zhang Weimin Fang Fadi Chen Nianjun Teng 
supported by the Priority Academic Program Development of Jiangsu Higher Education Institutions;the Fundamental Research Funds for the Central Universities(Grant No.KYTZ201602);the High Level Talent Project of the Top Six Talents in Jiangsu(Grant No.NY-077);the earmarked fund for germplasm resources of Nanjing Agricultural University(Grant No.KYZZ201920)。
Lily was grown worldwide as a fresh cutting flower because of its colorful petals, but its anther contained a large number of pollen grains that cause serious pollen contamination, however, pollen abortion can effecti...
关键词:Lilium Asiatic hybrids microspore development TAPETUM programmed cell death CALLOSE transcription factor 
Pollen wall pattern in Arabidopsis被引量:8
《Science Bulletin》2016年第11期832-837,共6页Te Xu Cheng Zhang Que Zhou Zhong-Nan Yang 
supported by the Major Research Plan from the Ministry of Science and Technology of China(2013CB945100);the National Natural Foundation of China(31300262)
The pollen wall is a solid and variously sculptured structure. This pattern is determined inside a tetrad. During meiosis, the callose wall is formed outside of the meiocyte/microspore to form a tetrad. Then, primexin...
关键词:Pollen wall pattern Sexine Callose Primexine - Plasma membrane undulation SPOROPOLLENIN 
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