Blancaflor E B, Zhao L, Harrison M J
Plant Biology Division, Samuel Roberts Noble Foundation, 2510 Sam Noble Parkway, Ardmore, OK 73401, USA.
Protoplasma. 2001;217(4):154-65. doi: 10.1007/BF01283396.
The colonization of plants by arbuscular mycorrhizal fungi has been shown to induce changes in cytoplasmic organization and morphology of root cells. Because of their role in a variety of cellular functions in plants, it is likely that microtubules are involved either in the signaling events leading to the establishment of the symbiosis or in changes in host cell morphology and cytoplasmic architecture. Recent studies of the arbuscular mycorrhizal symbiosis have shown that root cortical cells reorganize their microtubules upon colonization. These studies, however, have focused primarily on the cells containing hyphal coils or arbuscules and did not include descriptions of microtubule changes in adjacent cells. To probe further into the potential role of the microtubule cytoskeleton in the establishment of arbuscular mycorrhizal symbiosis, we examined the three-dimensional arrangement of microtubules in roots of the model legume Medicago truncatula colonized by the arbuscular mycorrhizal fungus Glomus versiforme by indirect immunofluorescence and confocal microscopy. Our data show extensive remodeling of the microtubule cytoskeleton from the early stages of arbuscule development until arbuscule collapse and senescence. While confirming some of the microtubule patterns shown in other mycorrhizal systems, our results also reveal that cortical cells adjacent to those containing arbuscules or adjacent to intercellular hyphae reorganize their microtubules. This indicates that the cortical cells initiate the modification of their cytoskeleton prior to entry of the fungus and is consistent with signal exchange between the symbionts prior to fungal penetration of the cells.
丛枝菌根真菌对植物的定殖已被证明会诱导根细胞的细胞质组织和形态发生变化。由于微管在植物多种细胞功能中发挥作用,它们很可能参与了导致共生关系建立的信号传导事件,或者参与了宿主细胞形态和细胞质结构的变化。最近对丛枝菌根共生的研究表明,根皮层细胞在定殖后会重新组织其微管。然而,这些研究主要集中在含有菌丝线圈或丛枝的细胞上,并未包括对相邻细胞中微管变化的描述。为了进一步探究微管细胞骨架在丛枝菌根共生关系建立中的潜在作用,我们通过间接免疫荧光和共聚焦显微镜检查了由丛枝菌根真菌多样球囊霉定殖的模式豆科植物蒺藜苜蓿根中微管的三维排列。我们的数据显示,从丛枝发育的早期阶段到丛枝崩溃和衰老,微管细胞骨架发生了广泛的重塑。在证实了其他菌根系统中显示的一些微管模式的同时,我们的结果还揭示,与含有丛枝的细胞相邻或与细胞间菌丝相邻的皮层细胞会重新组织其微管。这表明皮层细胞在真菌进入之前就开始对其细胞骨架进行修饰,这与共生体在真菌穿透细胞之前的信号交换是一致的。