Wolbachia symbionts are the most successful host-associated microbes on the planet, infecting arthropods and nematodes. Their role in nematodes is particularly enigmatic, with filarial nematode species either 100% infected and dependent on symbionts for reproduction and development, or not at all infected. We have discovered a highly divergent strain of Wolbachia in an insect-parasitic tylenchid nematode, Howardula sp., in a nematode clade that has not previously been known to harbour Wolbachia. While this nematode is 100% infected with Wolbachia, we did not detect it in related species. We sequenced the Howardula symbiont (wHow) genome and found that it is highly reduced, comprising only 550 kilobase pairs of DNA, approximately 35% smaller than the smallest Wolbachia nematode symbiont genomes. The wHow genome is a subset of all other Wolbachia genomes and has not acquired any new genetic information. While it has lost many genes, including genes involved in cell wall synthesis and cell division, it has retained the entire haem biosynthesis pathway, suggesting that haem supplementation is critical. wHow provides key insights into our understanding of what are the lower limits of Wolbachia cells, as well as the role of Wolbachia symbionts in the biology and convergent evolution of diverse parasitic nematodes.
A highly divergent Wolbachia with a tiny genome in an insect-parasitic tylenchid nematode.
在寄生于昆虫的线虫中发现一种基因组很小的、高度分化的沃尔巴克氏体
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作者:Dudzic Jan P, Curtis Caitlin I, Gowen Brent E, Perlman Steve J
| 期刊: | Proceedings of the Royal Society B-Biological Sciences | 影响因子: | 3.500 |
| 时间: | 2022 | 起止号: | 2022 Sep 28; 289(1983):20221518 |
| doi: | 10.1098/rspb.2022.1518 | 研究方向: | 其它 |
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