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从好氧氧化塘中产生的微藻-细菌絮体中分离具有促进植物生长特性的细菌。

Isolation of bacteria with plant growth-promoting properties from microalgae-bacterial flocs produced in high-rate oxidation ponds.

机构信息

Institute for Environmental Biotechnology, Rhodes University (EBRU), Makhanda, South Africa.

出版信息

Environ Technol. 2024 Aug;45(20):4003-4016. doi: 10.1080/09593330.2023.2238928. Epub 2023 Jul 29.

DOI:10.1080/09593330.2023.2238928
PMID:37469005
Abstract

Exploring plant growth-promoting (PGP) bacterial activity of microbial components aggregated by wastewater treatment can reduce dependence on fossil fuel-derived fertilisers. This study describes the isolation and identification of bacteria from microalgae-bacteria flocs (MaB-flocs) generated in high-rate algal oxidation ponds (HRAOP) of an integrated algal pond system (IAPS) remediating municipal wastewater. Amplified 16S rRNA gene sequence analysis determined the molecular identity of the individual strains. Genetic relatedness to known PGP rhizobacteria in the NCBI GenBank database was by metagenomics. Isolated strains were screened for the production of indoles (measured as indole-3-acetic acid; IAA) and an ability to mineralise , , and K  . Of the twelve bacterial strains isolated from HRAOP MaB-flocs, four produced indoles, nine mineralised , seven solubilised P, and one K. Potential of isolated strains for PGP activity according to one-way ANOVA on ranks was: ECCN 7b > ECCN 4b > ECCN 6b > ECCN 3b = ECCN 10b > ECCN 1b = ECCN 5b > ECCN 8b > ECCN 2b > ECCN 12b > ECCN 9b = ECCN 11b. Further study revealed that cell-free filtrate from indole-producing cultures of strain ECCN 4b, strain ECCN 7b, and strain ECCN 6b promoted mung bean adventitious root formation suggestive of the presence of auxin-like biological activity.

摘要

探索由废水处理聚集的微生物成分的植物促生长(PGP)细菌活性可以减少对化石燃料衍生肥料的依赖。本研究描述了从微藻-细菌絮体(MaB-絮体)中分离和鉴定细菌的方法,这些絮体是在市政废水修复的综合藻塘系统(IAPS)中的高速藻类氧化塘(HRAOP)中产生的。扩增的 16S rRNA 基因序列分析确定了各个菌株的分子身份。通过元基因组学确定了与 NCBI GenBank 数据库中已知 PGP 根际细菌的遗传相关性。对分离株进行了吲哚(以吲哚-3-乙酸(IAA)形式测量)的产生和矿化 、 、和 K 的能力进行了筛选。从 HRAOP MaB-絮体中分离出的十二株细菌中,有四株产生吲哚,九株矿化 ,七株溶解 P,一株溶解 K。根据单向方差分析的等级排列,分离株的 PGP 活性潜力为:ECCN 7b> ECCN 4b> ECCN 6b> ECCN 3b= ECCN 10b> ECCN 1b= ECCN 5b> ECCN 8b> ECCN 2b> ECCN 12b> ECCN 9b= ECCN 11b。进一步的研究表明,来自菌株 ECCN 4b、菌株 ECCN 7b 和菌株 ECCN 6b 的吲哚产生培养物的无细胞滤液促进了绿豆不定根的形成,提示存在类似生长素的生物活性。

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