首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >BIOCHEMICAL CHANGES DURING GROWTH AND ENCYSTMENT OF THE CELLULAR SLIME MOLD POLYSPHONDYLIUM PALLIDUM
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BIOCHEMICAL CHANGES DURING GROWTH AND ENCYSTMENT OF THE CELLULAR SLIME MOLD POLYSPHONDYLIUM PALLIDUM

机译:胞质型霉菌聚甲醛的生长和吸收过程中的生物化学变化

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摘要

The growth of the cellular slime mold, Polysphondylium pallidum, was studied on a semidefined medium in shaken suspension. When the medium contained large quantities of particulate material, growth was more rapid and the cellular size and protein content were smaller than when growth occurred on a medium containing less particulate material. The cellular levels of DNA, RNA, and protein; of lysosomal enzymes (acid phosphatase, acid proteinase); and of peroxisomal enzymes (catalase) were assayed during growth and the subsequent stationary phase that led eventually to encystment. Only DNA remained at a constant cellular level. Encystment of exponentially growing cells could also be initiated by washing them and introducing them into a soluble peptone medium. The rate of encystment was proportional to the osmolarity of this medium. The encystment process was followed with respect to the cellular levels of DNA, RNA, protein, carbohydrates, acid phosphatase, acid β-N-Ac-glucosaminidase, and catalase. The most dramatic change occurred in the cellular cellulose content, which increased by at least an order of magnitude by the time encystment was morphologically complete. It was concluded that the encystment of this slime mold in suspension exhibits a number of biochemical similarities to the development of this and other cellular slime molds on a surface.
机译:在半悬浮液中的半确定培养基上研究了细胞粘液霉菌苍白多孢菌的生长。当培养基中含有大量颗粒物质时,与含有较少颗粒物质的培养基中生长相比,生长更快,细胞大小和蛋白质含量也更小。 DNA,RNA和蛋白质的细胞水平;溶酶体酶(酸性磷酸酶,酸性蛋白酶);过氧化物酶体和过氧化物酶体(过氧化氢酶)在生长过程中以及随后的固定化阶段均进行了测定,最终导致了包囊。只有DNA保持在恒定的细胞水平。指数生长的细胞的包囊也可以通过洗涤并将其引入可溶性蛋白medium培养基来引发。包囊率与该介质的渗透压成正比。关于DNA,RNA,蛋白质,碳水化合物,酸性磷酸酶,酸性β-N-Ac-氨基葡糖苷酶和过氧化氢酶的细胞水平,遵循包囊过程。最显着的变化发生在细胞纤维素含量上,当包囊形态完成时,其含量至少增加了一个数量级。结论是,该粘液霉菌在悬浮液中的包封与该粘液霉菌和其他细胞粘液霉菌在表面上的发展表现出许多生化相似之处。

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