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拟南芥β-1,3-葡聚糖酶的亚细胞动态及其在植物弹状病毒细胞间运动中的作用。

Subcellular dynamics and role of Arabidopsis β-1,3-glucanases in cell-to-cell movement of tobamoviruses.

机构信息

Department of Molecular Biology and Ecology of Plants, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.

出版信息

Mol Plant Microbe Interact. 2013 Sep;26(9):1016-30. doi: 10.1094/MPMI-03-13-0062-R.

Abstract

β-1,3-Glucanases (BG) have been implicated in enhancing virus spread by degrading callose at plasmodesmata (Pd). Here, we investigate the role of Arabidopsis BG in tobamovirus spread. During Turnip vein clearing virus infection, the transcription of two pathogenesis-related (PR)-BG AtBG2 and AtBG3 increased but that of Pd-associated BG AtBG_pap did not change. In transgenic plants, AtBG2 was retained in the endoplasmic reticulum (ER) network and was not secreted. As a stress response mediated by salicylic acid, AtBG2 was secreted and appeared as a free extracellular protein localized in the entire apoplast but did not accumulate at Pd sites. At the leading edge of Tobacco mosaic virus spread, AtBG2 co-localized with the viral movement protein in the ER-derived bodies, similarly to other ER proteins, but was not secreted to the cell wall. In atbg2 mutants, callose levels at Pd and virus spread were unaffected. Likewise, AtBG2 overexpression had no effect on virus spread. However, in atbg_pap mutants, callose at Pd was increased and virus spread was reduced. Our results demonstrate that the constitutive Pd-associated BG but not the stress-regulated extracellular PR-BG are directly involved in regulation of callose at Pd and cell-to-cell transport in Arabidopsis, including the spread of viruses.

摘要

β-1,3-葡聚糖酶(BG)被认为通过降解质膜通道处的胼胝质而促进病毒的传播。在这里,我们研究了拟南芥 BG 在烟草花叶病毒传播中的作用。在芜菁黄花叶病毒感染过程中,两个病程相关(PR)-BG AtBG2 和 AtBG3 的转录增加,但与质膜通道相关的 BG AtBG_pap 的转录没有变化。在转基因植物中,AtBG2 被保留在内质网(ER)网络中,并未被分泌。作为水杨酸介导的应激反应,AtBG2 被分泌并以游离的细胞外蛋白形式出现,定位于整个质外体,但不在质膜通道处积累。在烟草花叶病毒传播的前沿,AtBG2 与病毒移动蛋白一起共定位于 ER 衍生小体中,与其他 ER 蛋白类似,但并未分泌到细胞壁。在 atbg2 突变体中,质膜通道处的胼胝质水平和病毒的传播不受影响。同样,AtBG2 的过表达对病毒的传播也没有影响。然而,在 atbg_pap 突变体中,质膜通道处的胼胝质增加,病毒的传播减少。我们的结果表明,组成型质膜通道相关的 BG,但不是应激调节的细胞外 PR-BG,直接参与了拟南芥中质膜通道处胼胝质的调节和细胞间运输,包括病毒的传播。

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