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首页> 外文期刊>Journal of Experimental Botany >A correlative microscopy approach relates microtubule behaviour, local organ geometry, and cell growth at the Arabidopsis shoot apical meristem.
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A correlative microscopy approach relates microtubule behaviour, local organ geometry, and cell growth at the Arabidopsis shoot apical meristem.

机译:相关显微镜方法涉及拟南芥芽顶分生组织的微管行为,局部器官的几何形状和细胞生长。

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Cortical microtubules (CMTs) are often aligned in a particular direction in individual cells or even in groups of cells and play a central role in the definition of growth anisotropy. How the CMTs themselves are aligned is not well known, but two hypotheses have been proposed. According to the first hypothesis, CMTs align perpendicular to the maximal growth direction, and, according to the second, CMTs align parallel to the maximal stress direction. Since both hypotheses were formulated on the basis of mainly qualitative assessments, the link between CMT organization, organ geometry, and cell growth is revisited using a quantitative approach. For this purpose, CMT orientation, local curvature, and growth parameters for each cell were measured in the growing shoot apical meristem (SAM) of Arabidopsis thaliana. Using this approach, it has been shown that stable CMTs tend to be perpendicular to the direction of maximal growth in cells at the SAM periphery, but parallel in the cells at the boundary domain. When examining the local curvature of the SAM surface, no strict correlation between curvature and CMT arrangement was found, which implies that SAM geometry, and presumed geometry-derived stress distribution, is not sufficient to prescribe the CMT orientation. However, a better match between stress and CMTs was found when mechanical stress derived from differential growth was also considered.
机译:皮质微管(CMT)通常在单个细胞中甚至在细胞组中按特定方向排列,并且在生长各向异性的定义中起着核心作用。 CMT本身如何对齐尚不清楚,但是提出了两个假设。根据第一种假设,CMT垂直于最大生长方向对齐,并且根据第二种假设,CMT平行于最大应力方向对齐。由于这两个假设都是在主要定性评估的基础上提出的,因此使用定量方法重新研究了CMT组织,器官几何形状和细胞生长之间的联系。为此,在拟南芥生长的茎尖分生组织(SAM)中测量每个细胞的CMT方向,局部曲率和生长参数。使用这种方法,已经显示出稳定的CMT倾向于垂直于SAM外围细胞的最大生长方向,但平行于边界域的细胞。在检查SAM表面的局部曲率时,未发现曲率与CMT布置之间存在严格的相关性,这意味着SAM几何形状和假定的几何派生应力分布不足以规定CMT方向。但是,当还考虑到源自差异生长的机械应力时,发现应力和CMT之间有更好的匹配。

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