Instituto de Bioqumica Vegetal y Fotosntesis, CSIC and Universidad de Sevilla, Amrico Vespucio 49, E41092 Seville, Spain.
Nat Rev Microbiol. 2010 Jan;8(1):39-50. doi: 10.1038/nrmicro2242.
Within the wide biodiversity that is found in the bacterial world, Cyanobacteria represents a unique phylogenetic group that is responsible for a key metabolic process in the biosphere - oxygenic photosynthesis - and that includes representatives exhibiting complex morphologies. Many cyanobacteria are multicellular, growing as filaments of cells in which some cells can differentiate to carry out specialized functions. These differentiated cells include resistance and dispersal forms as well as a metabolically specialized form that is devoted to N(2) fixation, known as the heterocyst. In this Review we address cyanobacterial intercellular communication, the supracellular structure of the cyanobacterial filament and the basic principles that govern the process of heterocyst differentiation.
在细菌世界中广泛存在的生物多样性中,蓝细菌代表了一个独特的进化枝,它负责生物圈中的一个关键代谢过程——产氧光合作用——并包括表现出复杂形态的代表。许多蓝细菌是多细胞的,生长为细胞丝,其中一些细胞可以分化为执行专门功能。这些分化的细胞包括抵抗和分散的形式以及一种专门用于 N(2)固定的代谢形式,称为异形胞。在这篇综述中,我们讨论了蓝细菌细胞间通讯、蓝细菌丝的超细胞结构以及异形胞分化过程的基本原理。