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冷冻电子断层扫描揭示了原绿球藻的三维结构,原绿球藻是一种在全球具有重要意义的海洋蓝细菌。

Cryo-electron tomography reveals the comparative three-dimensional architecture of Prochlorococcus, a globally important marine cyanobacterium.

作者信息

Ting Claire S, Hsieh Chyongere, Sundararaman Sesh, Mannella Carmen, Marko Michael

机构信息

Department of Biology, Williams College, Thompson Biology Lab, Room 214, 59 Lab Campus Drive, Williamstown, MA 01267, USA.

出版信息

J Bacteriol. 2007 Jun;189(12):4485-93. doi: 10.1128/JB.01948-06. Epub 2007 Apr 20.

Abstract

In an age of comparative microbial genomics, knowledge of the near-native architecture of microorganisms is essential for achieving an integrative understanding of physiology and function. We characterized and compared the three-dimensional architecture of the ecologically important cyanobacterium Prochlorococcus in a near-native state using cryo-electron tomography and found that closely related strains have diverged substantially in cellular organization and structure. By visualizing native, hydrated structures within cells, we discovered that the MED4 strain, which possesses one of the smallest genomes (1.66 Mbp) of any known photosynthetic organism, has evolved a comparatively streamlined cellular architecture. This strain possesses a smaller cell volume, an attenuated cell wall, and less extensive intracytoplasmic (photosynthetic) membrane system compared to the more deeply branched MIT9313 strain. Comparative genomic analyses indicate that differences have evolved in key structural genes, including those encoding enzymes involved in cell wall peptidoglycan biosynthesis. Although both strains possess carboxysomes that are polygonal and cluster in the central cytoplasm, the carboxysomes of MED4 are smaller. A streamlined cellular structure could be advantageous to microorganisms thriving in the low-nutrient conditions characteristic of large regions of the open ocean and thus have consequences for ecological niche differentiation. Through cryo-electron tomography we visualized, for the first time, the three-dimensional structure of the extensive network of photosynthetic lamellae within Prochlorococcus and the potential pathways for intracellular and intermembrane movement of molecules. Comparative information on the near-native structure of microorganisms is an important and necessary component of exploring microbial diversity and understanding its consequences for function and ecology.

摘要

在比较微生物基因组学的时代,了解微生物近乎天然的结构对于全面理解其生理和功能至关重要。我们使用冷冻电子断层扫描技术对具有重要生态意义的蓝细菌原绿球藻在近乎天然状态下的三维结构进行了表征和比较,发现亲缘关系相近的菌株在细胞组织和结构上有很大差异。通过观察细胞内天然的、水合的结构,我们发现MED4菌株拥有已知光合生物中最小的基因组之一(1.66 Mbp),其进化出了相对简化的细胞结构。与分支更深的MIT9313菌株相比,该菌株的细胞体积更小,细胞壁更薄,胞质内(光合)膜系统也不那么广泛。比较基因组分析表明,关键结构基因发生了差异进化,包括那些编码参与细胞壁肽聚糖生物合成的酶的基因。尽管这两个菌株都拥有呈多边形且聚集在中央细胞质中的羧酶体,但MED4的羧酶体更小。简化的细胞结构可能有利于在大洋大片区域典型的低营养条件下繁衍生息的微生物,因此对生态位分化有影响。通过冷冻电子断层扫描,我们首次观察到了原绿球藻内广泛的光合片层网络的三维结构以及分子在细胞内和膜间移动的潜在途径。关于微生物近乎天然结构的比较信息是探索微生物多样性以及理解其对功能和生态影响的重要且必要的组成部分。

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