Bacillus licheniformisYB06: A Rhizosphere–Genome-Wide Analysis and Plant Growth-Promoting Analysis of a Plant Growth-Promoting Rhizobacterium Isolated from Codonopsis pilosula

IF 4.1 2区 生物学 Q2 MICROBIOLOGY Microorganisms Pub Date : 2024-09-08 DOI:10.3390/microorganisms12091861
Shuo Ni, Yamiao Wu, Ning Zhu, Feifan Leng, Yonggang Wang
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Abstract

Codonopsis pilosula, commonly known as Dangshen, is a valuable medicinal plant, but its slow growth and susceptibility to environmental stress pose challenges for its cultivation. In pursuit of sustainable agricultural practices to enhance the yield and quality of Dangshen, the present study isolated a bacterial strain exhibiting plant growth-promoting potential from the rhizosphere of C. pilosula. This strain was subsequently identified as Bacillus licheniformisYB06. Assessment of its plant growth-promoting attributes revealed the potential of B. licheniformis YB06 as a biofertilizer. Whole-genome sequencing of B. licheniformis YB06 revealed a genome size of 4,226,888 bp with a GC content of 46.22%, harboring 4325 predicted protein-coding sequences. Genomic analysis of B. licheniformis YB06 revealed a diverse array of genes linked to induced systemic resistance (ISR) and plant growth-promoting (PGP) traits, encompassing phytohormone production, nitrogen assimilation and reduction, siderophore biosynthesis, phosphate solubilization, biofilm formation, synthesis of PGP-related amino acids, and flagellar motility. Seed germination assays demonstrated the positive effects of B. licheniformis YB06 on the germination and growth of C. pilosula seedlings. Furthermore, we explored various fertilization regimes, particularly the B. licheniformis YB06-based biofertilizer, were investigated for their impact on the structure and diversity of the C. pilosula rhizosphere soil bacterial community. Our findings revealed that fertilization significantly impacted soil bacterial composition and diversity, with the combined application of B. licheniformis YB06-based biofertilizer and organic fertilizer exhibiting a particularly pronounced enhancement of rhizosphere bacterial community structure and diversity. This study represents the first report on the beneficial effects of B. licheniformis YB06 on both the growth of C. pilosula and the composition of its rhizosphere soil microbial community. These findings provide a theoretical foundation and practical guidance for the development of novel bio-organic compound fertilizers, thereby contributing to the sustainable cultivation of C. pilosula.
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地衣芽孢杆菌 YB06:从拟南芥中分离出的一种促进植物生长的根瘤菌的全基因组分析和植物生长促进分析
党参(俗称党参)是一种珍贵的药用植物,但其生长缓慢且易受环境压力影响,这给其种植带来了挑战。为了采用可持续农业实践提高党参的产量和质量,本研究从党参的根瘤中分离出一株具有促进植物生长潜力的细菌。该菌株随后被鉴定为地衣芽孢杆菌(Bacillus licheniformisYB06)。对地衣芽孢杆菌 YB06 促进植物生长特性的评估显示,地衣芽孢杆菌 YB06 具有作为生物肥料的潜力。地衣芽孢杆菌 YB06 的全基因组测序显示,其基因组大小为 4,226,888 bp,GC 含量为 46.22%,包含 4325 个预测的蛋白质编码序列。地衣芽孢杆菌 YB06 的基因组分析揭示了与诱导系统抗性(ISR)和植物生长促进性状(PGP)相关的一系列基因,包括植物激素产生、氮同化和还原、苷元生物合成、磷酸盐溶解、生物膜形成、PGP 相关氨基酸合成和鞭毛运动。种子萌发试验表明,地衣芽孢杆菌 YB06 对 C. pilosula 幼苗的萌发和生长有积极影响。此外,我们还探索了各种施肥方案,特别是地衣芽孢杆菌 YB06 生物肥料,研究它们对 C. pilosula 根瘤土壤细菌群落结构和多样性的影响。我们的研究结果表明,施肥对土壤细菌的组成和多样性有很大影响,联合施用地衣芽孢杆菌 YB06 生物肥料和有机肥料对根圈细菌群落结构和多样性的影响尤为明显。本研究首次报道了地衣芽孢杆菌 YB06 对 C. pilosula 的生长及其根圈土壤微生物群落组成的有益影响。这些发现为新型生物有机复合肥料的开发提供了理论基础和实践指导,从而有助于朝天椒的可持续栽培。
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来源期刊
Microorganisms
Microorganisms Medicine-Microbiology (medical)
CiteScore
7.40
自引率
6.70%
发文量
2168
审稿时长
20.03 days
期刊介绍: Microorganisms (ISSN 2076-2607) is an international, peer-reviewed open access journal which provides an advanced forum for studies related to prokaryotic and eukaryotic microorganisms, viruses and prions. It publishes reviews, research papers and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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