Wernegreen Jennifer J
Josephine Bay Paul Center for Comparative Molecular Biology and Evolution, Marine Biological Laboratory, 7 MBL Street, Woods Hole, MA 02543, USA.
Curr Opin Genet Dev. 2005 Dec;15(6):572-83. doi: 10.1016/j.gde.2005.09.013. Epub 2005 Oct 17.
Bacteria that replicate within eukaryotic host cells include a variety of pathogenic and mutualistic species. Early genome data for these intracellular associates suggested they experience continual gene loss, little if any gene acquisition, and minimal recombination in small, isolated populations. This view of reductive evolution is itself evolving as new genome sequences clarify mechanisms and outcomes of diverse intracellular associations. Recently sequenced genomes have confirmed a trajectory of gene loss and exceptional genome stability in long-term, nutritional mutualists and certain pathogens. However, new genome data for the Rickettsiales and Chlamydiales indicate more repeated DNA, a greater abundance of mobile DNA elements, and more labile genome dynamics than previously suspected for ancient intracellular lineages. Surprising discoveries of conjugation machinery in the parasite Rickettsia felis and the amoebae symbiont Parachlamydia sp. suggest that DNA transfer might play key roles in some intracellular taxa.
在真核宿主细胞内进行复制的细菌包括多种致病和互利共生的物种。这些细胞内共生体的早期基因组数据表明,它们经历着持续的基因丢失,几乎没有基因获得,并且在小的孤立群体中重组极少。随着新的基因组序列阐明了各种细胞内共生关系的机制和结果,这种关于简化进化的观点本身也在不断演变。最近测序的基因组证实了长期营养互利共生体和某些病原体中基因丢失的轨迹以及异常的基因组稳定性。然而,立克次氏体目和衣原体目的新基因组数据表明,与之前对古老细胞内谱系的怀疑相比,它们有更多的重复DNA、更丰富的移动DNA元件以及更不稳定的基因组动态。在寄生虫猫立克次氏体和变形虫共生体副衣原体中令人惊讶地发现了接合机制,这表明DNA转移可能在一些细胞内分类群中起关键作用。