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Cinemicrographic Study of the Development of Subsurface Colonies of Staphylococcus aureus in Soft Agar

机译:软琼脂中金黄色葡萄球菌表面菌落发育的电影学研究

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Cinemicrographic studies revealed that the development of elongated subsurface colonies of Staphylococcus aureus in soft agar (<0.2% agar) originated with a colony-forming unit of about 10 to 20 cells. It was then observed that small clusters of 3 to 12 cells broke off from the main colony unit and drifted away under the combined influence of gravity and Brownian motion. Once the downward or slightly sideward motion of the small clusters ceased, the clusters would continue to increase in size; at the same time, additional small clusters broke off, and the cycle was repeated until the entire colony was formed. Displacement and velocity measurements were made on the drifting small clusters. When compared with the dimensional growth rate and geometry of the subsurface colony, these showed that a correlation existed between the movement and velocity of the small clusters and the subsequent colony development. A relationship between the role of gravity reported in these results and the development of spherical colonies after rotation on a clinostat is suggested.
机译:电影摄影学研究表明,在软琼脂(<0.2%琼脂)中金黄色葡萄球菌拉长的表面下菌落的形成起源于约10至20个细胞的菌落形成单位。然后观察到,在重力和布朗运动的共同影响下,3到12个细胞的小团簇从主要菌落单元脱落并漂移。一旦小簇的向下或略微侧向运动停止,簇的大小将继续增加。同时,另外的小簇破裂,重复这一循环直到形成整个菌落。在漂移的小簇上进行位移和速度测量。当与地下菌落的尺寸生长速率和几何形状进行比较时,这些表明小簇的运动和速度与随后的菌落发育之间存在相关性。建议在这些结果中报告的重力作用与在clinostat上旋转后球形菌落的发育之间存在关系。

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