Gómez-Garzón Camilo, Hernández-Santana Alejandra, Dussán Jenny
Centro de investigaciones microbiológicas (CIMIC), Universidad de los Andes, Bogotá, Colombia.
PLoS One. 2017 Jun 12;12(6):e0179666. doi: 10.1371/journal.pone.0179666. eCollection 2017.
The toxic lineage (TL) of Lysinibacillus sphaericus has been extensively studied because of its potential biotechnological applications in biocontrol of mosquitoes and bioremediation of toxic metals. We previously proposed that L. sphaericus TL should be considered as a novel species based on a comparative genomic analysis. In the current work, we constructed the first manually curated metabolic reconstruction for this species on the basis of the available genomes. We elucidated the central metabolism of the proposed species and, beyond confirming the reported experimental evidence with genomic a support, we found insights to propose novel applications and traits to be considered in further studies. The strains belonging to this lineage exhibit a broad repertory of genes encoding insecticidal factors, some of them remain uncharacterized. These strains exhibit other unexploited biotechnological important traits, such as lactonases (quorum quenching), toxic metal resistance, and potential for aromatic compound degradation. In summary, this study provides a guideline for further research aimed to implement this organism in biocontrol and bioremediation. Similarly, we highlighted the unanswered questions to be responded in order to gain a deeper understanding of the L. sphaericus TL biology.
球形赖氨酸芽孢杆菌的毒性谱系(TL)因其在蚊虫生物防治和有毒金属生物修复方面的潜在生物技术应用而受到广泛研究。我们之前基于比较基因组分析提出,球形赖氨酸芽孢杆菌TL应被视为一个新物种。在当前工作中,我们基于现有基因组构建了该物种的首个手动编辑的代谢重建模型。我们阐明了该提议物种的中心代谢,除了用基因组支持来证实已报道的实验证据外,我们还发现了一些见解,可用于提出新的应用以及在进一步研究中需考虑的特性。属于该谱系的菌株表现出广泛的编码杀虫因子的基因库,其中一些尚未被表征。这些菌株还表现出其他未被开发的重要生物技术特性,如内酯酶(群体感应淬灭)、对有毒金属的抗性以及芳香化合物降解潜力。总之,本研究为旨在将该生物体应用于生物防治和生物修复的进一步研究提供了指导方针。同样,我们强调了为更深入了解球形赖氨酸芽孢杆菌TL生物学而有待解答的问题。