首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >New and old roles of plasmodesmata in immunity and parallels to tunneling nanotubes.
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New and old roles of plasmodesmata in immunity and parallels to tunneling nanotubes.

机译:毛虫在免疫力和与穿隧纳米管的平行性中的新作用和旧作用。

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摘要

Effective cell-to-cell communication is critical for the survival of both unicellular and multicellular organisms. In multicellular plants, direct cell coupling across the cell wall boundaries is mediated by long membrane-lined cytoplasmic bridges, the plasmodesmata. Exciting recent discoveries suggest that the occurrence of such membrane-lined intercellular channels is not unique to plant lineages but more prevalent across biological kingdoms than previously assumed. Striking functional analogies exist among those channels, in that not only do they all facilitate the exchange of various forms of macromolecules, but also they are exploited by some opportunistic pathogens to spread infection from one host cell to another. However, host cells may have also evolved strategies to offset such exploitation of the critical cellular infrastructure by the pathogen. Indeed, recent studies support an emerging paradigm that cellular connectivity via plasmodesmata plays an important role in innate immune responses. Preliminary hypotheses are proposed as to how various regulatory mechanisms integrating plasmodesmata into immune signaling pathways may have evolved.
机译:有效的细胞间通讯对于单细胞和多细胞生物的生存至关重要。在多细胞植物中,跨细胞壁边界的直接细胞偶联是由长膜衬里的胞质桥介导的胞浆菌介导的。令人振奋的最新发现表明,这种膜内衬的细胞间通道的发生并非植物谱系所独有,而是在生物界中比以前假定的更为普遍。这些通道之间存在着惊人的功能类比,不仅它们都促进了各种形式的大分子的交换,而且还被一些机会性病原体利用,将感染从一种宿主细胞传播到另一种宿主细胞。然而,宿主细胞也可能已经进化出策略来抵消病原体对关键细胞基础设施的这种利用。确实,最近的研究支持了一种新兴的范例,即通过等离子体的细胞连接在先天免疫应答中起着重要作用。提出了关于如何将胞膜毛虫整合到免疫信号通路中的各种调节机制的初步假设。

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