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从二维分裂到三维发育的细菌菌落。

Bacterial colony from two-dimensional division to three-dimensional development.

机构信息

Institute of Microbiology and Immunology, National Yang-Ming University, Taipei, Taiwan, Republic of China.

出版信息

PLoS One. 2012;7(11):e48098. doi: 10.1371/journal.pone.0048098. Epub 2012 Nov 14.

Abstract

On agar surface, bacterial daughter cells form a 4-cell array after the first two rounds of division, and this phenomenon has been previously attributed to a balancing of interactions among the daughter bacteria and the underneath agar. We studied further the organization and development of colony after additional generations. By confocal laser scanning microscopy and real-time imaging, we observed that bacterial cells were able to self-organize and resulted in a near circular micro-colony consisting of monolayer cells. After continuous dividing, bacteria transited from two-dimensional expansion into three-dimensional growth and formed two to multi-layers in the center but retained a monolayer in the outer ring of the circular colony. The transverse width of this outer ring appeared to be approximately constant once the micro-colony reached a certain age. This observation supports the notion that balanced interplays of the forces involved lead to a gross morphology as the bacteria divide into offspring on agar surface. In this case, the result is due to a balance between the expansion force of the dividing bacteria, the non-covalent force among bacterial offspring and that between bacteria and substratum.

摘要

在琼脂表面,细菌子细胞在两轮分裂后形成四细胞阵列,这一现象以前归因于子细菌之间以及子细菌与琼脂下层之间相互作用的平衡。我们进一步研究了菌落的组织和发育。通过共聚焦激光扫描显微镜和实时成像,我们观察到细菌细胞能够自我组织,形成一个由单层细胞组成的近圆形微菌落。随着连续分裂,细菌从二维扩展转变为三维生长,并在中心形成两层到多层,但在圆形菌落的外环保持单层。一旦微菌落达到一定的年龄,这个外环的横向宽度似乎就保持不变。这一观察结果支持了这样一种观点,即涉及的力的平衡相互作用导致了细菌在琼脂表面分裂成后代时的宏观形态。在这种情况下,结果是由于分裂细菌的扩张力、细菌后代之间以及细菌与基质之间的非共价力之间的平衡所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77cb/3498271/ccbf46b9a685/pone.0048098.g001.jpg

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