Ali Muhammad, Gu Tong, Yu Xun, Bashir Anum, Wang Zhiyong, Sun Xiaowen, Ashraf Naeem Mahmood, Li Lin
State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan, China.
Department of Biotechnology, COMSATS University Islamabad, Abbottabad, Pakistan.
Front Microbiol. 2022 Mar 9;13:826962. doi: 10.3389/fmicb.2022.826962. eCollection 2022.
Nematicidal potential of the common plant pathogen has been recently identified against . The current study was designed to investigate the detailed genetic mechanism of the bacterial pathogenicity by applying comparative genomics, transcriptomics, mutant library screening, and protein expression. Results showed that strain MB03 could kill in the liquid assay by gut colonization. The genome of MB03 was sequenced and comparative analysis including multi locus sequence typing, and genome-to-genome distance placed MB03 in phylogroup II of . Furthermore, comparative genomics of MB03 with nematicidal strains of (PAO1 and PA14) predicted 115 potential virulence factors in MB03. However, genes for previously reported nematicidal metabolites, such as phenazine, pyochelin, and pyrrolnitrin, were found absent in the MB03 genome. Transcriptomics analysis showed that the growth phase of the pathogen considerably affected the expression of virulence factors, as genes for the flagellum, glutamate ABC transporter, /, /, type VI secretion system, and serralysin were highly up-regulated when stationary phase MB03 cells interacted with Additionally, screening of a transposon insertion mutant library led to the identification of other nematicidal genes such as , and . Finally, the nematicidal activity of selected proteins was confirmed by heterologous expression in .
常见植物病原体对[线虫]的杀线虫潜力最近已被确认。当前的研究旨在通过应用比较基因组学、转录组学、突变体文库筛选和蛋白质表达来探究该细菌致病性的详细遗传机制。结果表明,MB03菌株可通过肠道定殖在液体试验中杀死[线虫]。对MB03菌株的基因组进行了测序,并通过多位点序列分型和全基因组距离的比较分析将MB03置于[细菌种类]的系统发育群II中。此外,将MB03与[细菌种类]的杀线虫菌株(PAO1和PA14)进行比较基因组学分析,预测MB03中有115个潜在的毒力因子。然而,在MB03基因组中未发现先前报道的杀线虫代谢产物的基因,如吩嗪、绿脓菌素和吡咯菌素。转录组学分析表明,病原体的生长阶段对毒力因子的表达有很大影响,因为当处于稳定期的MB03细胞与[线虫]相互作用时,鞭毛、谷氨酸ABC转运蛋白、[/]、[/]、VI型分泌系统和锯齿毒素的基因高度上调。此外,对转座子插入突变体文库的筛选导致鉴定出其他杀线虫基因,如[基因名称]和[基因名称]。最后,通过在[表达系统]中的异源表达证实了所选蛋白质的杀线虫活性。
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