Department of Cell and Developmental Biology, John Innes Centre, Colney, Norwich NR4 7UH, UK.
J Cell Sci. 2011 Apr 1;124(Pt 7):1088-94. doi: 10.1242/jcs.086702. Epub 2011 Mar 1.
Microtubules are classically described as being transverse, which is perpendicular to the direction of cell elongation. However, fixation studies have indicated that microtubules can be variably aligned across the epidermis of elongating shoots. In addition, microtubules are reported to have different orientations on inner and outer epidermal surfaces, undermining the idea of hoop-reinforcement. Here, long-term movies of Arabidopsis seedlings expressing GFP-TUA6 allowed microtubule alignment to be directly correlated with the rate of elongation within individual growing cells. We also investigated whether microtubule alignment at the inner or the outer epidermal wall better reflected the growth rate. Movies confirmed that transverse microtubules form on the inner wall throughout elongation, but orientation of microtubules is variable at the outer wall, where they tend to become transverse only during episodes of accelerated growth. Because this appears to contradict the concept that circumferential arrays of transverse microtubules or microfibrils are essential for cell elongation, we checked the organisation of cellulose synthase tracks using GFP-CESA3 and found a similar mismatch between trajectories on inner and outer epidermal surfaces. We conclude that microtubule alignment on the inner wall appears to be a more stable predictor of growth anisotropy, whereas outer-wall alignment is more sensitive to the elongation rate.
微管通常被描述为横向的,即垂直于细胞伸长的方向。然而,固定研究表明,微管在伸长的芽表皮中可以有不同的排列。此外,据报道,在内、外表皮表面上微管具有不同的取向,这破坏了箍加强的概念。在这里,表达 GFP-TUA6 的拟南芥幼苗的长期电影允许将微管排列与单个生长细胞的伸长率直接相关联。我们还研究了在内表皮壁或外表皮壁上的微管排列是否能更好地反映生长速率。电影证实,在整个伸长过程中,横向微管在内壁上形成,但在外壁上微管的取向是可变的,只有在生长加速时,它们才倾向于成为横向。因为这似乎与圆周排列的横向微管或微纤丝对于细胞伸长是必需的概念相矛盾,所以我们检查了使用 GFP-CESA3 的纤维素合酶轨迹的组织,在内、外表皮表面发现了轨迹之间的类似不匹配。我们的结论是,内壁上的微管排列似乎是生长各向异性的更稳定预测因子,而外壁上的微管排列对外延率更敏感。