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考克斯氏体共生体对于微小牛蜱的发育是必不可少的。

A Coxiella mutualist symbiont is essential to the development of Rhipicephalus microplus.

机构信息

Instituto de Bioquímica Médica Leopoldo de Meis, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.

Centro de Biotecnologia, Universidade Federal do Rio Grande do Sul, Porto Alegre, RS, Brazil.

出版信息

Sci Rep. 2017 Dec 14;7(1):17554. doi: 10.1038/s41598-017-17309-x.

Abstract

The cattle tick Rhipicephalus microplus is a hematophagous ectoparasite that causes important economic losses in livestock. Different species of ticks harbor a symbiont bacterium of the genus Coxiella. It was showed that a Coxiella endosymbiont from R. microplus (CERM) is a vertically transmitted mutualist symbiont, comprising 98% of the 16S rRNA sequences in both eggs and larvae. Sequencing of the bacterial genome revealed genes for biosynthetic pathways for several vitamins and key metabolic cofactors that may provide a nutritional complement to the tick host. The CERM was abundant in ovary and Malpighian tubule of fully engorged female. Tetracycline treatment of either the tick or the vertebrate host reduced levels of bacteria in progeny in 74% for eggs and 90% for larvae without major impact neither on the reproductive fitness of the adult female or on embryo development. However, CERM proved to be essential for the tick to reach the adult life stage, as under antibiotic treatment no tick was able to progress beyond the metanymph stage. Data presented here suggest that interference in the symbiotic CERM-R. microplus relationship may be useful to the development of alternative control methods, highlighting the interdependence between ticks and their endosymbionts.

摘要

牛蜱属的血吸性外寄生虫 Rhipicephalus microplus 是一种造成家畜严重经济损失的寄生虫。不同种类的蜱携带柯克斯体属共生菌。研究表明,从 R. microplus 分离出的柯克斯体共生菌(CERM)是一种垂直传播的共生体,其 16S rRNA 序列在卵和幼虫中占 98%。对细菌基因组进行测序揭示了用于合成几种维生素和关键代谢辅因子的基因,这些基因可能为蜱宿主提供营养补充。在完全饱血的雌性的卵巢和马氏管中 CERM 含量丰富。用四环素处理蜱或脊椎动物宿主可使卵中细菌数量减少 74%,幼虫中减少 90%,而对雌性成虫的生殖适应性或胚胎发育均无重大影响。然而,CERM 对蜱达到成虫阶段是必需的,因为在抗生素处理下,没有蜱能够发育到若虫后期阶段。这里提出的数据表明,干扰共生的 CERM-R. microplus 关系可能有助于开发替代控制方法,突出了蜱与其内共生体之间的相互依存关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/317f/5730597/a86c77396295/41598_2017_17309_Fig1_HTML.jpg

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