首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Cell wall pectins and xyloglucans are internalized into dividing root cells and accumulate within cell plates during cytokinesis
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Cell wall pectins and xyloglucans are internalized into dividing root cells and accumulate within cell plates during cytokinesis

机译:细胞壁果胶和木葡聚糖被内化成分裂的根细胞,并在胞质分裂过程中积聚在细胞板内

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摘要

Recently, we have reported that cell wall pectins are internalized into apical meristem root cells. In cells exposed to the fungal metabolite brefeldin A, all secretory pathways were inhibited, while endocytic pathways remained intact, resulting in accumulation of internalized cell wall pectins within brefeldin A-induced compartments. Here we report that, in addition to the already published cell wall epitopes, rhamnogalacturonan I and xyloglucans also undergo large-scale internalization into dividing root cells. Interestingly, multilamellar endosomes were identified as compartments internalizing arabinan cell wall pectins reactive to the 6D7 antibody, while large vacuole-like endosomes internalized homogalacturonans reactive to the 2F4 antibody. As all endosomes belong topographically to the exocellular space, cell wall pectins deposited in these "cell wall islands", enclosed by the plasma-membrane-derived membrane, are ideally suited to act as temporary stores for rapid formation of cell wall and generation of new plasma membrane. In accordance with this notion, we report that all cell wall pectins and xyloglucans that internalize into endosomes are highly enriched within cytokinetic cell plates and accumulate within brefeldin A compartments. On the other hand, only small amounts of the pectins reactive to the JIM7 antibody, which are produced in the Golgi apparatus, localize to cell plates and they do not accumulate within brefeldin A compartments. In conclusion, meristematic root cells have developed pathways for internalization and recycling of cell wall molecules which are relevant for plant-specific cytokinesis.
机译:最近,我们已经报道了细胞壁果胶被内化为根分生组织根细胞。在暴露于真菌代谢产物布雷菲德菌素A的细胞中,所有分泌途径均被抑制,而内吞途径仍保持完整,从而导致内在化的细胞壁果胶在布雷菲德菌素A诱导的区室中积累。在这里我们报道,除了已经发表的细胞壁表位,鼠李半乳糖醛酸聚糖I和木葡聚糖还经历了大规模内在化,分裂成根细胞。有趣的是,多层内体被鉴定为内化对6D7抗体起反应的阿拉伯聚糖细胞壁果胶的区室,而大型液泡状内体内化了对2F4抗体起反应的高半乳糖醛酸。由于所有内体都在地形上属于细胞外空间,因此沉积在这些“细胞壁岛”中的细胞壁果胶被质膜衍生的膜所包围,非常适合用作临时存储,以快速形成细胞壁并产生新的质膜。根据这一概念,我们报告了所有内在进入内体的细胞壁果胶和木葡聚糖在细胞动力学细胞板中高度富集,并在布雷菲德菌素A区室中积累。另一方面,在高尔基体中产生的仅少量与JIM7抗体发生反应的果胶位于细胞板中,不会在布雷菲德菌素A隔室内积聚。总之,分生性根细胞已发展出与植物特异性胞质分裂有关的细胞壁分子内在化和再循环的途径。

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