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立克次氏体作为专性和菌质体细菌。

Rickettsia as obligate and mycetomic bacteria.

作者信息

Perotti M Alejandra, Clarke Heather K, Turner Bryan D, Braig Henk R

机构信息

School of Biological Sciences, University of Wales Bangor, Bangor, Gwynedd LL57 2UW, UK.

出版信息

FASEB J. 2006 Nov;20(13):2372-4. doi: 10.1096/fj.06-5870fje. Epub 2006 Sep 28.

Abstract

Rickettsiae are well known as intracellular pathogens of animals, humans, and plants and facultative and unorganized symbionts of invertebrates. No close relative of mitochondria has yet been associated with nutritional or developmental dependency of its host cell or organism. We have found a mycetomic Rickettsia that is a strict obligatory symbiont of the parthenogenetic booklouse Liposcelis bostrychophila (Psocoptera). These rickettsiae show an evolutionary transition from a solitary to a primary mycetomic bacterium adapted to the development of its host. These intracellular and intranuclear bacteria reside in specialized cells in several tissues. Their distribution changes markedly with the development of their host. The most advanced phenotype is a paired mycetome in the abdomen, described for the first time for Rickettsia and this host order. The mycetomic rickettsiae of two parthenogenetic book lice species are in the spotted fever group and in the basal limoniae group. While mycetomic bacteria are well known for their metabolic or light-emitting functions, these rickettsiae have an essential role in the early development of the oocyte. Removal of the Rickettsia stops egg production and reproduction in the book louse. In two phylogenetically distant psocopteran species, Rickettsia are shown to be associated with four transitional stages from free bacteria, infected cells, through single mycetocytes to organ-forming mycetomes.

摘要

立克次氏体是动物、人类和植物的细胞内病原体,也是无脊椎动物的兼性和无组织共生体。线粒体的近亲尚未与宿主细胞或生物体的营养或发育依赖性相关联。我们发现了一种菌胞内立克次氏体,它是孤雌生殖书虱嗜卷书虱(啮目)的严格专性共生体。这些立克次氏体显示出从独居细菌到适应宿主发育的初级菌胞内细菌的进化转变。这些细胞内和细胞核内的细菌存在于多个组织的特化细胞中。它们的分布随着宿主的发育而显著变化。最先进的表型是腹部的一对菌胞体,这是首次在立克次氏体和这个宿主目动物中描述。两种孤雌生殖书虱物种的菌胞内立克次氏体属于斑点热群和基部柠檬群。虽然菌胞内细菌以其代谢或发光功能而闻名,但这些立克次氏体在卵母细胞的早期发育中起着至关重要的作用。去除立克次氏体会导致书虱停止产卵和繁殖。在两个系统发育距离较远的啮目物种中,立克次氏体与从自由细菌、感染细胞、单个菌细胞到形成器官的菌胞体的四个过渡阶段相关联。

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