密歇根克雷伯菌BD177与克雷伯菌属相关成员的比较基因组学揭示了与背小实蝇的共生关系。

IF 2.9 Q2 Biochemistry, Genetics and Molecular Biology
Zhaohui Cai, Qiongyu Guo, Zhichao Yao, Wenping Zheng, Junfei Xie, Shuai Bai, Hongyu Zhang
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引用次数: 5

摘要

背景:桔小实蝇(Bactrocera dorsalis)是热带和亚热带水果和蔬菜作物的一种破坏性多食性高入侵害虫。昆虫不育技术(SIT)已用于控制害虫的农业,兽医和人类健康的重要性几十年。蛹辐照会降低不育昆虫的生态适宜度。我们之前的研究表明,肠道细菌菌株BD177可以通过促进宿主食物摄入和代谢活动来恢复生态适应性。结果:利用长读序列技术,获得了密根乳杆菌BD177株的全基因组。密根k.m akanensis BD177全基因组包括1条环状染色体和4个质粒,GC含量为55.03%。对119个基因组进行泛基因组分析(菌株BD177基因组和128个已发表的克雷伯氏菌基因组中的118个基因组,其中10个被丢弃)。该泛基因组包括49305个基因簇,少量核心基因858个,大量附属基因10566个。泛基因组分析和平均核苷酸同源性分析表明,BD177与密根K. milanensis DSM2544型菌株较为相似,而与密根K. oxytoca ATCC13182型菌株差异较大。21 K比较基因组分析。催产素和12k。在BD177基因组中,共鉴定出213个独特的基因,其中一些基因与氨基酸代谢、辅助因子和维生素代谢、外源生物降解和代谢有关。结论:系统基因组学分析将菌株BD177重新归类为k.m akanensis的成员。比较基因组分析表明,密根K. michigan BD177具有提供3种必需氨基酸(苯丙氨酸、色氨酸和蛋氨酸)和2种维生素B(叶酸和核黄素)的菌株特异性能力。明确BD177菌株的分类地位和鉴定其独特的遗传特征,可能有助于扩大我们对肠道微生物群与背芽孢杆菌共生关系的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comparative genomics of Klebsiella michiganensis BD177 and related members of Klebsiella sp. reveal the symbiotic relationship with Bactrocera dorsalis.

Comparative genomics of Klebsiella michiganensis BD177 and related members of Klebsiella sp. reveal the symbiotic relationship with Bactrocera dorsalis.

Comparative genomics of Klebsiella michiganensis BD177 and related members of Klebsiella sp. reveal the symbiotic relationship with Bactrocera dorsalis.

Comparative genomics of Klebsiella michiganensis BD177 and related members of Klebsiella sp. reveal the symbiotic relationship with Bactrocera dorsalis.

Background: Bactrocera dorsalis is a destructive polyphagous and highly invasive insect pest of tropical and subtropical species of fruit and vegetable crops. The sterile insect technique (SIT) has been used for decades to control insect pests of agricultural, veterinary, and human health importance. Irradiation of pupae in SIT can reduce the ecological fitness of the sterile insects. Our previous study has shown that a gut bacterial strain BD177 that could restore ecological fitness by promoting host food intake and metabolic activities.

Results: Using long-read sequence technologies, we assembled the complete genome of K. michiganensis BD177 strain. The complete genome of K. michiganensis BD177 comprises one circular chromosome and four plasmids with a GC content of 55.03%. The pan-genome analysis was performed on 119 genomes (strain BD177 genome and 118 out of 128 published Klebsiella sp. genomes since ten were discarded). The pan-genome includes a total of 49305 gene clusters, a small number of 858 core genes, and a high number of accessory (10566) genes. Pan-genome and average nucleotide identity (ANI) analysis showed that BD177 is more similar to the type strain K. michiganensis DSM2544, while away from the type strain K. oxytoca ATCC13182. Comparative genome analysis with 21 K. oxytoca and 12 K. michiganensis strains, identified 213 unique genes, several of them related to amino acid metabolism, metabolism of cofactors and vitamins, and xenobiotics biodegradation and metabolism in BD177 genome.

Conclusions: Phylogenomics analysis reclassified strain BD177 as a member of the species K. michiganensis. Comparative genome analysis suggested that K. michiganensis BD177 has the strain-specific ability to provide three essential amino acids (phenylalanine, tryptophan and methionine) and two vitamins B (folate and riboflavin) to B. dorsalis. The clear classification status of BD177 strain and identification of unique genetic characteristics may contribute to expanding our understanding of the symbiotic relationship of gut microbiota and B. dorsalis.

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来源期刊
BMC Genetics
BMC Genetics 生物-遗传学
CiteScore
4.30
自引率
0.00%
发文量
77
审稿时长
4-8 weeks
期刊介绍: BMC Genetics is an open access, peer-reviewed journal that considers articles on all aspects of inheritance and variation in individuals and among populations.
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