Domozych David S, Sun Li, Palacio-Lopez Kattia, Reed Reagan, Jeon Susan, Li Mingjia, Jiao Chen, Sørensen Iben, Fei Zhangjun, Rose Jocelyn K C
Department of Biology, Skidmore College, Saratoga Springs, NY, USA.
Boyce Thompson Institute, Ithaca, NY, USA.
J Exp Bot. 2020 Jun 11;71(11):3323-3339. doi: 10.1093/jxb/eraa039.
The extracellular matrix (ECM) of many charophytes, the assemblage of green algae that are the sister group to land plants, is complex, produced in large amounts, and has multiple essential functions. An extensive secretory apparatus and endomembrane system are presumably needed to synthesize and secrete the ECM, but structural details of such a system have not been fully characterized. Penium margaritaceum is a valuable unicellular model charophyte for studying secretion dynamics. We report that Penium has a highly organized endomembrane system, consisting of 150-200 non-mobile Golgi bodies that process and package ECM components into different sets of vesicles that traffic to the cortical cytoplasm, where they are transported around the cell by cytoplasmic streaming. At either fixed or transient areas, specific cytoplasmic vesicles fuse with the plasma membrane and secrete their constituents. Extracellular polysaccharide (EPS) production was observed to occur in one location of the Golgi body and sometimes in unique Golgi hybrids. Treatment of cells with brefeldin A caused disruption of the Golgi body, and inhibition of EPS secretion and cell wall expansion. The structure of the endomembrane system in Penium provides mechanistic insights into how extant charophytes generate large quantities of ECM, which in their ancestors facilitated the colonization of land.
许多轮藻(陆地植物的姐妹类群绿藻的集合)的细胞外基质(ECM)复杂,产量大,且具有多种重要功能。合成和分泌ECM大概需要广泛的分泌 apparatus 和内膜系统,但这种系统的结构细节尚未完全明确。Margaritaceum 扁藻是研究分泌动力学的一种有价值的单细胞轮藻模型。我们报告称,扁藻具有高度组织化的内膜系统,由150 - 200个不移动的高尔基体组成,这些高尔基体处理并将ECM成分包装到不同的囊泡组中,这些囊泡运输到皮层细胞质,在那里通过细胞质流动在细胞周围运输。在固定或瞬时区域,特定的细胞质囊泡与质膜融合并分泌其成分。观察到细胞外多糖(EPS)的产生发生在高尔基体的一个位置,有时也发生在独特的高尔基体杂种中。用布雷菲德菌素A处理细胞会导致高尔基体破坏,并抑制EPS分泌和细胞壁扩张。扁藻内膜系统的结构为现存轮藻如何产生大量ECM提供了机制性见解,在其祖先中,这促进了陆地定殖。