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首页> 外文期刊>The Journal of General and Applied Microbiology >Morphology of mitochondrial nucleoids, mitochondria, and nuclei during meiosis and sporulation of the yeast Sacchatomycodes ludwigii
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Morphology of mitochondrial nucleoids, mitochondria, and nuclei during meiosis and sporulation of the yeast Sacchatomycodes ludwigii

机译:酵母减数分裂和孢子形成过程中线粒体核苷酸,线粒体和细胞核的形态

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摘要

The morphology of mitochondrial nucleoids (mt-nucleoids), mitochondria, and nuclei was investigated during meiosis and sporulation of the diploid cells of the ascosporogenic yeast Saccha-romycodes ludwigii. The mt-nucleoids appeared as discrete dots uniformly distributed In stationary-phase cells as revealed by 4',6-diamidino-2-phenylindole (DAPI) staining. Throughout first and second meiotic divisions, the mt-nucleoids moved to be located close to the dividing nuclei with the appearance of dots. On the other hand, mitochondria, which had tubular or fragmented forms in stationary-phase cells, increasingly fused with each other to form elongated mitochondria during meiotic prophase as revealed by 3,3'-dihexyloxacarbocyanine iodide [DiOC6(3)] staining. Mitochondria assembled to be located close to dividing nuclei during first and second meiotic divisions, and were finally incorporated into spores. During the first meiotic division, nuclear division occurred in any direction parallel, diagonally, or perpendicular to the longitudinal axis of the cell. In contrast, the second meiotic division was exclusively parallel to the longitudinal axis of the cell. The behavior of dividing nuclei explains the formation of a pair of spores with opposite mating types at both ends of cells. In the course of this study, it was also found that ledges between two spores were specifically stained with DiOC6(3).
机译:线粒体核苷酸(mt核苷酸),线粒体和细胞核的形态发生在减数分裂和成孢子酵母Saccha-romycodes ludwigii的二倍体细胞的孢子形成过程中。通过4',6-二mid基-2-苯基吲哚(DAPI)染色显示,mt核苷酸呈离散点均匀分布在固定相细胞中。在第一和第二次减数分裂的整个过程中,mt核苷移动到靠近分裂核的位置,并出现点。另一方面,线粒体在固定相细胞中呈管状或碎片形式,在减数分裂前期逐渐相互融合形成细长的线粒体,如碘化3,3'-二己基氧杂碳菁氰[DiOC6(3)]染色所揭示。线粒体在第一个和第二个减数分裂分裂过程中组装成位于分裂核附近,并最终并入孢子中。在第一次减数分裂分裂期间,核分裂发生在平行,对角或垂直于细胞纵轴的任何方向。相反,第二次减数分裂分裂完全平行于细胞的纵轴。分裂核的行为解释了在细胞两端形成一对具有相反交配类型的孢子。在研究过程中,还发现两孢子之间的壁架被DiOC6(3)特异性染色。

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