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Signals and regulators that govern Streptomyces development

机译:控制链霉菌发育的信号和调节剂

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Streptomyces coelicolor is the genetically best characterized species of a populous genus belonging to the gram-positive Actinobacteria. Streptomycetes are filamentous soil organisms, well known for the production of a plethora of biologically active secondary metabolic compounds. The Streptomyces developmental life cycle is uniquely complex and involves coordinated multicellular development with both physiological and morphological differentiation of several cell types, culminating in the production of secondary metabolites and dispersal of mature spores. This review presents a current appreciation of the signaling mechanisms used to orchestrate the decision to undergo morphological differentiation, and the regulators and regulatory networks that direct the intriguing development of multigenomic hyphae first to form specialized aerial hyphae and then to convert them into chains of dormant spores. This current view of S. coelicolor development is destined for rapid evolution as data from '-omics' studies shed light on gene regulatory networks, new genetic screens identify hitherto unknown players, and the resolution of our insights into the underlying cell biological processes steadily improve.
机译:天蓝色链霉菌是属于革兰氏阳性放线菌的种群属的遗传学上最充分表征的物种。链霉菌是丝状土壤生物,以产生大量具有生物活性的次级代谢化合物而闻名。链霉菌的生命周期非常复杂,涉及多种细胞类型的生理和形态分化的协调多细胞发育,最终产生次级代谢产物和成熟孢子的散布。这项审查呈现当前的信号传导机制,用于协调进行形态分化的决定,以及指导多基因组菌丝有趣发展的调节剂和调节网络,首先形成专门的气生菌丝,然后将其转化为休眠孢子链。当前关于腔肠链球菌发展的观点注定将迅速发展,因为来自“ -omics”研究的数据阐明了基因调控网络,新的遗传筛选方法鉴定了迄今未知的参与者,我们对基本细胞生物学过程的见解的分辨率稳步提高。 。

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