Comprehensive genomic analysis of Burkholderia arboris PN-1 reveals its biocontrol potential against Fusarium solani-induced root rot in Panax notoginseng.

IF 1.8 4区 生物学 Q3 GENETICS & HEREDITY Current Genetics Pub Date : 2024-03-30 DOI:10.1007/s00294-024-01288-4
Yun Yang, Haoji Wang, Jielei Tu, Yan Li, Huilin Guan
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Abstract

Panax notoginseng (Burkill) F.H. Chen, a valuable traditional Chinese medicine, faces significant yield and quality challenges stemming from root rot primarily caused by Fusarium solani. Burkholderia arboris PN-1, isolated from the rhizosphere soil of P. notoginseng, demonstrated a remarkable ability to inhibit the growth of F. solani. This study integrates phenotypic, phylogenetic, and genomic analyses to enhance our understanding of the biocontrol mechanisms employed by B. arboris PN-1. Phenotype analysis reveals that B. arboris PN-1 effectively suppresses P. notoginseng root rot both in vitro and in vivo. The genome of B. arboris PN-1 comprises three circular chromosomes (contig 1: 3,651,544 bp, contig 2: 1,355,460 bp, and contig 3: 3,471,056 bp), with a 66.81% GC content, housing 7,550 protein-coding genes. Notably, no plasmids were detected. Phylogenetic analysis places PN-1 in close relation to B. arboris AU14372, B. arboris LMG24066, and B. arboris MEC_B345. Average nucleotide identity (ANI) values confirm the PN-1 classification as B. arboris. Comparative analysis with seven other B. arboris strains identified 4,628 core genes in B. arboris PN-1. The pan-genome of B. arboris appears open but may approach closure. Whole-genome sequencing revealed 265 carbohydrate-active enzymes and identified 9 gene clusters encoding secondary metabolites. This comprehensive investigation enhances our understanding of B. arboris genomes, paving the way for their potential as effective biocontrol agents against fungal plant pathogens in the future.

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树皮伯克霍尔德氏菌 PN-1 的综合基因组分析揭示了其对茄尼镰刀菌诱发的三七根腐病的生物防治潜力。
三七(Panax notoginseng (Burkill) F.H. Chen)是一种珍贵的传统中药,其产量和质量面临着主要由茄腐镰刀菌(Fusarium solani)引起的根腐病所带来的巨大挑战。从田七根瘤土壤中分离出的假叶伯克霍尔德氏菌(Burkholderia arboris PN-1)具有显著的抑制茄腐镰刀菌(F. solani)生长的能力。本研究综合了表型、系统发育和基因组分析,以加深我们对 B. arboris PN-1 所采用的生物防治机制的了解。表型分析表明,乔木酵母菌 PN-1 在体外和体内都能有效抑制五倍子根腐病。B. arboris PN-1 的基因组由三条环状染色体组成(等位基因 1:3,651,544 bp;等位基因 2:1,355,460 bp;等位基因 3:3,471,056 bp),GC 含量为 66.81%,包含 7,550 个编码蛋白质的基因。值得注意的是,没有检测到质粒。系统进化分析表明,PN-1 与树袋熊菌 AU14372、树袋熊菌 LMG24066 和树袋熊菌 MEC_B345 关系密切。平均核苷酸同一性(ANI)值证实 PN-1 被归类为乔木果蝇。通过与其他 7 个假叶树蛙菌株的比较分析,确定了假叶树蛙 PN-1 中的 4628 个核心基因。假头蝇的泛基因组似乎是开放的,但可能接近封闭。全基因组测序发现了 265 种碳水化合物活性酶,并确定了 9 个编码次生代谢物的基因簇。这项全面的调查加深了我们对假叶蓟马基因组的了解,为它们将来成为有效的植物真菌病原体生物控制剂铺平了道路。
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来源期刊
Current Genetics
Current Genetics 生物-遗传学
CiteScore
6.00
自引率
0.00%
发文量
34
审稿时长
1 months
期刊介绍: Current Genetics publishes genetic, genomic, molecular and systems-level analysis of eukaryotic and prokaryotic microorganisms and cell organelles. All articles are peer-reviewed. The journal welcomes submissions employing any type of research approach, be it analytical (aiming at a better understanding), applied (aiming at practical applications), synthetic or theoretical. Current Genetics no longer accepts manuscripts describing the genome sequence of mitochondria/chloroplast of a small number of species. Manuscripts covering sequence comparisons and analyses that include a large number of species will still be considered.
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