Key Laboratory of Zoonosis Research, Ministry of Education, College of Veterinary Medicine, Jilin University, No. 5333 Xi'an Road, Changchun, 130062, China.
BMC Genomics. 2022 May 19;23(1):380. doi: 10.1186/s12864-022-08623-4.
Drug-resistant bacteria have posed a great threat to animal breeding and human health. It is obviously urgent to develop new antibiotics that can effectively combat drug-resistant bacteria. The commensal flora inhabited in the intestines become potential candidates owing to the production of a wide range of antimicrobial substances. In addition, host genomes do not encode most of the enzymes needed to degrade dietary structural polysaccharides. The decomposition of these polysaccharides mainly depends on gut commensal-derived CAZymes.
We report a novel species isolated from the chicken intestine, designated as Paenibacillus jilinensis sp. nov. and with YPG26 (= CCTCC M2020899) as the type strain. The complete genome of P. jilinensis YPG26 is made up of a single circular chromosome measuring 3.97 Mb in length and containing 49.34% (mol%) G + C. It carries 33 rRNA genes, 89 tRNA genes, and 3871 protein-coding genes, among which abundant carbohydrate-degrading enzymes (CAZymes) are encoded. Moreover, this strain has the capability to antagonize multiple pathogens in vitro. We identified putative 6 BGCs encoding bacteriocin, NRPs, PKs, terpenes, and protcusin by genome mining. In addition, antibiotic susceptibility testing showed sensitivity to all antibiotics tested.
This study highlights the varieties of CAZymes genes and BGCs in the genome of Paenibacillus jilinensis. These findings confirm the beneficial function of the gut microbiota and also provide a promising candidate for the development of new carbohydrate degrading enzymes and antibacterial agents.
耐药菌对动物养殖和人类健康构成了巨大威胁。开发能够有效对抗耐药菌的新型抗生素显然迫在眉睫。由于能产生广泛的抗菌物质,栖息在肠道中的共生菌群成为潜在的候选物。此外,宿主基因组不编码大多数降解膳食结构多糖所需的酶。这些多糖的分解主要依赖于肠道共生衍生的 CAZymes。
我们报告了一种从鸡肠道中分离到的新型物种,命名为吉林解淀粉芽孢杆菌 sp. nov.,其模式菌株为 YPG26(= CCTCC M2020899)。吉林解淀粉芽孢杆菌 YPG26 的全基因组由一个单环染色体组成,长度为 3.97 Mb,G+C 含量为 49.34%(mol%)。它携带 33 个 rRNA 基因、89 个 tRNA 基因和 3871 个蛋白编码基因,其中编码丰富的碳水化合物降解酶(CAZymes)。此外,该菌株具有体外拮抗多种病原体的能力。通过基因组挖掘,我们鉴定出了 6 个编码细菌素、NRPs、PKs、萜类化合物和原蛋白的 BGCs。此外,抗生素敏感性测试显示对所有测试的抗生素均敏感。
本研究强调了吉林解淀粉芽孢杆菌基因组中 CAZymes 基因和 BGCs 的多样性。这些发现证实了肠道微生物群的有益功能,也为开发新的碳水化合物降解酶和抗菌剂提供了有前途的候选物。