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Characterization of polarity development through 2- and 3-D imaging during the initial phase of microspore embryogenesis in Brassica napus L

机译:通过甘蓝型油菜小孢子胚胎发生初期的2-和3-D成像来表征极性发展。

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摘要

Isolated microspores of B. napus in culture change their developmental pathway from gametophytic to sporophytic and form embryo-like structures (ELS) upon prolonged heat shock treatment (5 days at 32 °C). ELS express polarity during the initial days of endosporic development. In this study, we focussed on the analysis of polarity development of ELS without suspensor. Fluorescence microscopy and 3-D confocal laser scanning microscopy (CLSM) without tissue interfering enabled us to get a good insight in the distribution of nuclei, mitochondria and endoplasmic reticulum (ER), the architecture of microtubular (MT) cytoskeleton and the places of 5-bromo-2′-deoxy-uridine (BrdU) incorporation in successive stages of microspore embryogenesis. Scanning electron microscopy (SEM) analysis revealed, for the first time, the appearance of a fibrillar extracellular matrix-like structure (ECM-like structure) in androgenic embryos without suspensor. Two types of endosporic development were distinguished based upon the initial location of the microspore nucleus. The polarity of dividing and growing cells was recognized by the differential distributions of organelles, by the organization of the MT cytoskeleton and by the visualization of DNA synthesis in the cell cycle. The directional location of nuclei, ER, mitochondria and starch grains in relation to the MTs configurations were early polarity indicators. Both exine rupture and ECM-like structure on the outer surfaces of ELS are supposed to stabilize ELS's morphological polarity. As the role of cell polarity during early endosporic microspore embryogenesis in apical–basal cell fate determination remains unclear, microspore culture system provides a powerful in vitro tool for studying the developmental processes that take place during the earliest stages of plant embryogenesis.Electronic supplementary materialThe online version of this article (doi:10.1007/s00709-013-0530-y) contains supplementary material, which is available to authorized users.
机译:长时间热休克处理(32°C下5天)后,培养物中分离出的甘蓝型油菜小孢子将其发育途径从配子体转变为孢子体,并形成了胚样结构(ELS)。 ELS在内生孢子发育的最初几天表达极性。在这项研究中,我们集中于没有悬浮液的ELS极性发展的分析。荧光显微镜和3D共聚焦激光扫描显微镜(CLSM)不受组织干扰,使我们能够深入了解细胞核,线粒体和内质网(ER)的分布,微管(MT)细胞骨架的结构以及5个位置-溴2'-脱氧尿苷(BrdU)纳入小孢子胚胎发生的连续阶段。扫描电子显微镜(SEM)分析首次揭示了在没有悬液的雄激素胚胎中出现了纤维状细胞外基质样结构(ECM样结构)。基于小孢子核的初始位置,区分了两种类型的内孢子发育。通过细胞器的差异分布,MT细胞骨架的组织以及细胞周期中DNA合成的可视化,可以识别分裂和正在生长的细胞的极性。核,ER,线粒体和淀粉颗粒相对于MTs构型的方向定位是早期极性指标。 ELS外表面的外翻破裂和类似ECM的结构都可以稳定ELS的形态极性。由于细胞内极性在早期内胚层小孢子胚发生中在根基细胞命运确定中的作用尚不清楚,因此,小孢子培养系统为研究植物胚发生最早阶段的发育过程提供了强大的体外工具。电子补充材料在线本文的版本(doi:10.1007 / s00709-013-0530-y)包含补充材料,可供授权用户使用。

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