首页> 美国卫生研究院文献>Springer Open Choice >Overgrowth of Douglas fir (Pseudotsuga menziesii Franco) stumps with regenerative tissue as an example of cell ordering and tissue reorganization
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Overgrowth of Douglas fir (Pseudotsuga menziesii Franco) stumps with regenerative tissue as an example of cell ordering and tissue reorganization

机译:花旗松(Pseudotsuga menziesii Franco)过度生长的树桩带有再生组织作为细胞有序化和组织重组的一个例子

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摘要

>Main conclusion>Stump overgrowth may serve as a unique model for studying cellular reorganization and mechanisms responsible for cell polarity changes during the process of vascular tissue differentiation from initially unorganized parenchymatous cells.Cellular ordering and tissue reorganization during the overgrowth process of the transverse surfaces of Douglas fir stumps in forest stand was studied. At the beginning of stump overgrowth, the produced parenchymatous cells form an unorganized tissue. Particular parenchyma cells start arranging into more ordered structures which resemble rays. Application of digital image analysis software based on structure tensor was used. The analysis showed that at this stage of tissue development, cellular elements display a wide range of angular orientation values and attain very low coherency coefficients. The progress of the tissue differentiation process is associated with the formation of local regions with tracheids oriented circularly around the rays. This coincides with an increase in the range of angular orientations and greater values of coherency coefficients. At the most advanced stage of tissue development, with tracheids arranged parallelly in longitudinal strands, the degree of cell ordering is the highest what is manifested by the greatest values attained by coherency coefficients, and the narrow range of angular orientations. It is suggested that the ray-like structures could act as organizing centers in the morphogenetic field responsible for differentiation of the overgrowth tissue. The circular pattern of tracheids around rays in the initial phase of tissue development can be interpreted in terms of local rotation of the morphogenetic field which afterward is transformed into irrotational field. This transformation is noted by the presence of tracheids arranged parallelly in longitudinal strands. The possible involvement of a mechanism controlling cell polarity with respect to auxin transport is discussed.
机译:>主要结论 >树桩过度生长可能是研究细胞重组和维管从原始无组织的实质细胞分化为血管组织过程中细胞极性变化机制的独特模型。研究了林分道格拉斯冷杉树桩的横向表面过度生长过程中的组织重组。在树桩过度生长开始时,产生的实质细胞形成无组织的组织。特定的薄壁组织细胞开始排列成更类似射线的有序结构。使用了基于结构张量的数字图像分析软件。分析表明,在组织发育的这个阶段,细胞元件显示出大范围的角度取向值,并且获得非常低的相干系数。组织分化过程的进展与局部区域的形成有关,局部区域的气管围绕射线呈圆形取向。这与角度取向范围的​​增加和相干系数的更大值相吻合。在组织发育的最高级阶段,气管在纵向链中平行排列,细胞的有序度最高,这是由相干系数获得的最大值和狭窄的角度取向所体现的。提示射线状结构可以作为形态发生场中负责过度生长组织分化的组织中心。在组织发育的初始阶段,围绕射线的气管的圆形图案可以用形态发生场的局部旋转来解释,该局部旋转随后被转换成非旋转场。通过沿纵向股线平行排列的气管的存在来注意到这种转变。讨论了有关生长素转运的控制细胞极性的机制的可能参与。

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