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植物促生和耐重金属肠杆菌 4M9(CCB-MBL5004)的全基因组序列。

Complete genome sequence of plant growth-promoting and heavy metal-tolerant Enterobacter tabaci 4M9 (CCB-MBL 5004).

机构信息

School of Biological Sciences, Universiti Sains Malaysia, Georgetown, Penang, Malaysia.

Department of Botany, Ahmadu Bello University, Zaria, Nigeria.

出版信息

J Basic Microbiol. 2021 Apr;61(4):293-304. doi: 10.1002/jobm.202000695. Epub 2021 Jan 25.

Abstract

Enterobacter tabaci 4M9 (CCB-MBL 5004) was reported to have plant growth-promoting and heavy metal tolerance traits. It was able to tolerate more than 300 mg/L Cd, 600 mg/L As, and 500 mg/L Pb and still maintained the ability to produce plant growth-promoting substances under metal stress conditions. To explore the genetic basis of these beneficial traits, the complete genome sequencing of 4M9 was carried out using Pacific Bioscience (PacBio) sequencing technology. The complete genome consisted of one chromosome of 4,654,430 bp with a GC content of 54.6% and one plasmid of 51,135 bp with a GC content of 49.4%. Genome annotation revealed several genes involved in plant growth-promoting traits, including the production of siderophore, indole acetic acid, and 1-aminocyclopropane-1-carboxylate deaminase; solubilization of phosphate and potassium; and nitrogen metabolism. Similarly, genes involved in heavy metals (As, Co, Zn, Cu, Mn, Se, Cd, and Fe) tolerance were detected. These support its potential as a heavy metal-tolerant plant growth-promoting bacterium and a good genetic resource that can be employed to improve phytoremediation efficiency of heavy metal-contaminated soil via biotechnological techniques. This, to the best of our knowledge, is the first report on the complete genome sequence of heavy metal-tolerant plant growth-promoting E. tabaci.

摘要

报道称,肠杆菌 4M9(CCB-MBL5004)具有促进植物生长和耐重金属的特性。它能够耐受超过 300mg/L 的 Cd、600mg/L 的 As、500mg/L 的 Pb,并且在金属胁迫条件下仍然能够保持产生植物生长促进物质的能力。为了探索这些有益特性的遗传基础,使用 Pacific Bioscience(PacBio)测序技术对 4M9 进行了全基因组测序。完整基因组由一个 4654430bp 的染色体和一个 51135bp 的质粒组成,GC 含量分别为 54.6%和 49.4%。基因组注释揭示了几个与植物生长促进特性相关的基因,包括铁载体、吲哚乙酸和 1-氨基环丙烷-1-羧酸脱氨酶的产生、磷酸盐和钾的溶解以及氮代谢。同样,检测到与重金属(As、Co、Zn、Cu、Mn、Se、Cd 和 Fe)耐受相关的基因。这些支持它作为一种耐重金属的植物生长促进细菌的潜力,以及作为一种良好的遗传资源,可以通过生物技术手段提高重金属污染土壤的植物修复效率。据我们所知,这是第一个关于耐重金属的植物生长促进肠杆菌 4M9 的全基因组序列的报告。

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