Bacterial community and culturable actinomycetes of Phyllostachys viridiglaucescens rhizosphere

IF 1.8 3区 生物学 Q4 MICROBIOLOGY
Anna Kachor, Stepan Tistechok, Yuriy Rebets, Victor Fedorenko, Oleksandr Gromyko
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Abstract

During the course of development plants form tight interactions with microorganisms inhabiting their root zone. In turn, rhizosphere bacteria, in particular members of the phylum Actinomycetota, positively influence the host plant by increasing access to essential nutrients and controlling the pathogenic microorganism’s population. Herein, we report the characterisation of the rhizosphere associated actinobacteria community of Phyllostachys viridiglaucescens growing in the Nikitsky Botanical Garden (Crimean Peninsula, Ukraine). The overall composition of the bacterial community was elucidated by 16S rRNA gene amplicon sequencing followed by isolation of culturable microorganisms with the focus on actinomycetes. The metagenomic approach revealed that the representatives of phylum Actinomycetota (57.1%), Pseudomonadota (20.0%), and Acidobacteriota (12.2%) were dominating in the studied microbiome with Ilumatobacter (phylum Actinomycetota) (13.1%) being the dominant genus. Furthermore, a total of 159 actinomycete isolates, belonging to eight genera of Streptomyces, Micromonospora, Nonomuraea, Arthrobacter, Actinomadura, Kribbella, Cellulosimicrobium, and Mumia, were recovered from P. viridiglaucescens rhizosphere. The isolated species were tested for antimicrobial activity. 64% of isolates were active against at least one bacterial test-culture and 7.5% against fungal test culture. In overall, the rhizosphere bacterial communities act as a great source of actinobacterial diversity with the high potential for production of new bioactive compounds.

Abstract Image

Phyllostachys viridiglaucescens 根瘤菌群和可培养放线菌
植物在生长过程中会与栖息在根区的微生物形成紧密的相互作用。反过来,根圈细菌,特别是放线菌门的成员,通过增加对必需营养物质的获取和控制病原微生物的数量,对寄主植物产生积极影响。在此,我们报告了生长在尼基茨基植物园(乌克兰克里米亚半岛)的裸冠菊(Phyllostachys viridiglaucescens)根瘤相关放线菌群落的特征。通过 16S rRNA 基因扩增片段测序阐明了细菌群落的总体组成,随后分离了可培养的微生物,重点是放线菌。元基因组学方法显示,放线菌门(57.1%)、假单胞菌门(20.0%)和酸性杆菌门(12.2%)的代表菌在所研究的微生物群中占主导地位,其中 Ilumatobacter(放线菌门)(13.1%)是优势菌属。此外,从 viridiglaucescens 根瘤菌群中共分离出 159 个放线菌,分别属于链霉菌属、小单胞菌属、野单胞菌属、节杆菌属、放线菌属、Kribbella 菌属、纤维微生物菌属和 Mumia 菌属 8 个菌属。对分离出的菌种进行了抗菌活性测试。64%的分离物对至少一种细菌试验培养物有活性,7.5%对真菌试验培养物有活性。总之,根圈细菌群落是放线菌多样性的重要来源,具有生产新生物活性化合物的巨大潜力。
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来源期刊
CiteScore
5.60
自引率
11.50%
发文量
104
审稿时长
3 months
期刊介绍: Antonie van Leeuwenhoek publishes papers on fundamental and applied aspects of microbiology. Topics of particular interest include: taxonomy, structure & development; biochemistry & molecular biology; physiology & metabolic studies; genetics; ecological studies; especially molecular ecology; marine microbiology; medical microbiology; molecular biological aspects of microbial pathogenesis and bioinformatics.
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