Awori Ryan Musumba
Department of Biology, University of Nairobi, Nairobi, Kenya.
Elakistos Biosciences, Nairobi, Kenya.
Front Microbiol. 2022 Sep 15;13:993688. doi: 10.3389/fmicb.2022.993688. eCollection 2022.
The importance of and symbionts to their respective and nematode hosts is that they not only contribute to their entomopathogenicity but also to their fecundity through the production of small molecules. Thus, this mini-review gives a brief introductory overview of these nematophilic bacteria. Specifically, their type species, nematode hosts, and geographic region of isolations are tabulated. The use of nucleotide sequence-based techniques for their species delineation and how pangenomes can improve this are highlighted. Using the - association as an example, the bacterium-nematode lifecycle is visualized with an emphasis on the role of bacterial biomolecules. Those currently in drug development are discussed, and two potential antimalarial lead compounds are highlighted. Thus, this mini-review tabulates forty-eight significant nematophilic bacteria and visualizes the ecological importance of their biomolecules. It further discusses three of these biomolecules that are currently in drug development. Through it, one is introduced to and bacteria, their natural production of biomolecules in the nematode-bacterium lifecycle, and how these molecules are useful in developing novel therapies.
共生菌对其相应的昆虫病原线虫宿主的重要性在于,它们不仅有助于提高昆虫病原线虫的致病性,还通过产生小分子来提高其繁殖力。因此,本综述简要介绍了这些嗜线虫细菌。具体而言,列出了它们的模式种、线虫宿主以及分离的地理区域。强调了使用基于核苷酸序列的技术进行物种划分以及泛基因组如何改进这一过程。以斯氏线虫-共生菌的关系为例,直观展示了细菌-线虫的生命周期,重点阐述了细菌生物分子的作用。讨论了目前正在进行药物研发的细菌,并突出了两种潜在的抗疟先导化合物。因此,本综述列出了48种重要的嗜线虫细菌,并直观展示了其生物分子的生态重要性。进一步讨论了目前正在进行药物研发的其中三种生物分子。通过本文,读者可以了解嗜线虫致病杆菌和嗜线虫致病球菌、它们在细菌-线虫生命周期中生物分子的自然产生过程,以及这些分子如何有助于开发新型疗法。