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二态真菌白色念珠菌两种形态之间细胞质微管组织和纺锤体长度的差异。

Variation in cytoplasmic microtubule organization and spindle length between the two forms of the dimorphic fungus Candida albicans.

作者信息

Barton R, Gull K

机构信息

Biological Laboratory, University of Kent, Canterbury, UK.

出版信息

J Cell Sci. 1988 Oct;91 ( Pt 2):211-20. doi: 10.1242/jcs.91.2.211.

Abstract

Candida albicans is a dimorphic fungus capable of growing as a budding yeast and as a filamentous hypha. We have used the technique of immunofluorescence to study the changes in the microtubule cytoskeleton during the cell cycle in both growth forms. This approach has revealed the presence of an extensive system of microtubules, including cytoplasmic microtubules and a rod-like intranuclear spindle. We have provided a complete description of the arrangement of cytoplasmic and spindle microtubules at each phase of the yeast cell cycle. A novel and characteristic feature of the yeast phase of Candida is the presence of an array of short microtubules at the neck of the doublet cell. This neck-associated array (NAA), is apparently organized independently of the main microtubule-organizing centre, the spindle pole bodies, at late anaphase. Analysis of microtubule patterns in the hyphal state reveals that the general arrangements of microtubules are similar to those seen in the yeast phase. These patterns suggest a role for the cytoplasmic microtubules in the nuclear migration that occurs during hyphal growth. A major finding is that the mitotic spindle in hyphae is considerably longer (12-20 microns) than the spindle in yeast cells (7-8 microns). This may reflect the role of the hyphal mitotic spindle not only in nuclear division but also in the positioning of the daughter nuclei at the centres of hyphal compartments.

摘要

白色念珠菌是一种二态性真菌,能够以出芽酵母和丝状菌丝的形式生长。我们利用免疫荧光技术研究了两种生长形式的细胞周期中微管细胞骨架的变化。这种方法揭示了一个广泛的微管系统的存在,包括细胞质微管和棒状核内纺锤体。我们已经完整描述了酵母细胞周期各阶段细胞质微管和纺锤体微管的排列情况。白色念珠菌酵母阶段的一个新颖且独特的特征是在双核细胞的颈部存在一系列短微管。这种颈部相关阵列(NAA)在后期显然独立于主要的微管组织中心——纺锤极体进行组织。对菌丝状态下微管模式的分析表明,微管的总体排列与酵母阶段相似。这些模式表明细胞质微管在菌丝生长过程中发生的核迁移中发挥作用。一个主要发现是,菌丝中的有丝分裂纺锤体(12 - 20微米)比酵母细胞中的纺锤体(7 - 8微米)长得多。这可能反映了菌丝有丝分裂纺锤体不仅在核分裂中起作用,还在子核定位到菌丝隔室中心的过程中起作用。

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