Department of Molecular Microbiology, Biozentrum University of Basel, 4056 Basel, Switzerland.
Mol Biol Cell. 2010 Jan 1;21(1):18-28. doi: 10.1091/mbc.e09-01-0063. Epub 2009 Nov 12.
We investigated the migration of multiple nuclei in hyphae of the filamentous fungus Ashbya gossypii. Three types of cytoplasmic microtubule (cMT)-dependent nuclear movements were characterized using live cell imaging: short-range oscillations (up to 4.5 microm/min), rotations (up to 180 degrees in 30 s), and long-range nuclear bypassing (up to 9 microm/min). These movements were superimposed on a cMT-independent mode of nuclear migration, cotransport with the cytoplasmic stream. This latter mode is sufficient to support wild-type-like hyphal growth speeds. cMT-dependent nuclear movements were led by a nuclear-associated microtubule-organizing center, the spindle pole body (SPB), which is the sole site of microtubule nucleation in A. gossypii. Analysis of A. gossypii SPBs by electron microscopy revealed an overall laminar structure similar to the budding yeast SPB but with distinct differences at the cytoplasmic side. Up to six perpendicular and tangential cMTs emanated from a more spherical outer plaque. The perpendicular and tangential cMTs most likely correspond to short, often cortex-associated cMTs and to long, hyphal growth-axis-oriented cMTs, respectively, seen by in vivo imaging. Each SPB nucleates its own array of cMTs, and the lack of overlapping cMT arrays between neighboring nuclei explains the autonomous nuclear oscillations and bypassing observed in A. gossypii hyphae.
我们研究了丝状真菌棉铃象鼻虫菌丝中多个核的迁移。通过活细胞成像,我们描述了三种依赖细胞质微管(cMT)的核运动类型:短程振荡(最高可达 4.5 微米/分钟)、旋转(最高可达 30 秒内 180 度)和长程核绕过(最高可达 9 微米/分钟)。这些运动叠加在细胞质流的 cMT 非依赖性核迁移模式上。后者足以支持野生型样的菌丝生长速度。cMT 依赖性核运动由核相关的微管组织中心纺锤体极体(SPB)主导,SPB 是棉铃象鼻虫中微管成核的唯一部位。通过电子显微镜对 A. gossypii SPB 的分析表明,其整体呈层状结构,与出芽酵母 SPB 相似,但在细胞质侧有明显差异。多达六个垂直和切线 cMT 从更球形的外斑中发出。垂直和切线 cMT 可能分别对应于体内成像中观察到的短的、通常与皮质相关的 cMT 和长的、菌丝生长轴定向的 cMT。每个 SPB 都能产生自己的 cMT 阵列,而相邻核之间缺乏重叠的 cMT 阵列,这解释了在 A. gossypii 菌丝中观察到的自主核振荡和绕过现象。