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Evolution of sensory complexity recorded in a myxobacterial genome

机译:黏细菌基因组中记录的感觉复杂性的演变

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摘要

Myxobacteria are single-celled, but social, eubacterial predators. Upon starvation they build multicellular fruiting bodies using a developmental program that progressively changes the pattern of cell movement and the repertoire of genes expressed. Development terminates with spore differentiation and is coordinated by both diffusible and cell-bound signals. The growth and development of Myxococcus xanthus is regulated by the integration of multiple signals from outside the cells with physiological signals from within. A collection of M. xanthus cells behaves, in many respects, like a multicellular organism. For these reasons M. xanthus offers unparalleled access to a regulatory network that controls development and that organizes cell movement on surfaces. The genome of M. xanthus is large (9.14 Mb), considerably larger than the other sequenced δ-proteobacteria. We suggest that gene duplication and divergence were major contributors to genomic expansion from its progenitor. More than 1,500 duplications specific to the myxobacterial lineage were identified, representing >15% of the total genes. Genes were not duplicated at random; rather, genes for cell–cell signaling, small molecule sensing, and integrative transcription control were amplified selectively. Families of genes encoding the production of secondary metabolites are overrepresented in the genome but may have been received by horizontal gene transfer and are likely to be important for predation.
机译:粘细菌是单细胞的,但是是社交,真细菌的掠食者。饥饿后,他们使用发育程序建立多细胞子实体,该程序逐渐改变细胞运动的模式和表达基因的组成。发育以孢子分化终止,并受到可扩散和细胞结合信号的协调。黄色粘球菌的生长和发育通过细胞外部的多种信号与细胞内部的生理信号的整合来调节。黄腐分支杆菌细胞的集合在许多方面表现得像多细胞生物。由于这些原因,黄原花提供了无与伦比的访问控制网络的途径,该网络控制发育并组织细胞在表面上的运动。 X. xanthus的基因组很大(9.14 Mb),比其他测序的δ-变形细菌更大。我们建议基因复制和发散是其祖先基因组扩展的主要因素。鉴定了针对粘菌谱系的1500多次重复,占总基因的> 15%。基因不是随机复制的。而是选择性地扩增了细胞间信号转导,小分子传感和整合转录控制的基因。编码次级代谢产物产生的基因家族在基因组中过分代表,但可能已被水平基因转移所接受,可能对于捕食很重要。

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