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180 degrees rotation of ciliary rows and its morphogenetic implications in Tetrahymena pyriformis.

机译:梨形四膜虫睫状行的180度旋转及其形态发生意义。

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摘要

With quasi-surgical techniques, longitudinal somatic ciliary rows in Tetrahymena pyriformis have been rotated 180 degrees. New structures formed in the rotated ciliary rows during growth and reproduction are disposed 180 degrees opposite to their normal positions or orientations, confirming the earlier findings of Beisson and Sonneborn on Paramecium. However, during cell fission the rotated ciliary rows exhibit abnormality in orientation along the fission zone; the configuration of these rows near the anterior end of the posterior product of fission is consequently affected. Rotated ciliary rows have been employed as a tool in the analysis of morphogenetic problems: (a) The contractile vacuole pore is normally located on the left side of a ciliary row; but it is on the right of inverted rows. Hence, the morphogenetic properties of the two sides of the ciliary row associated with the contractile vacuole pore are different and this difference is the sole determinative factor as to the side of the ciliary row on which the contractile vacuole pore is located. (b) The process that generates the rotated ciliary rows frequently also brings about the implantation of an extra band of longitudinal microtubules at a specific site on the cell surface. This extra structure is inheritable, which opens up opportunities for the study of microtubular assembly in vivo.
机译:借助准外科手术技术,梨形四膜虫的纵向体纤毛行已旋转180度。在生长和繁殖期间,旋转的睫毛行中形成的新结构与它们的正常位置或方向相反,呈180度放置,这证实了Beisson和Sonneborn在草履虫上的早期发现。然而,在细胞裂变过程中,旋转的睫状细胞排沿裂变区的取向异常。因此,这些排的位置靠近裂变后产物的前端。旋转的睫毛行已被用作分析形态发生问题的工具:(a)收缩液泡孔通常位于睫毛行的左侧;但是它在倒排的右边。因此,与收缩液泡孔相关的睫状排的两侧的形态发生特性是不同的,并且该差异是关于睫状液排中收缩液泡孔所在的一侧的唯一决定性因素。 (b)经常产生旋转的睫状细胞排的过程还导致在细胞表面上的特定部位植入额外的纵向微管带。这种额外的结构是可遗传的,这为体内微管组装研究提供了机会。

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