Literature DB >> 33424789

Inorganic Phosphate Solubilization by Rhizosphere Bacterium Paenibacillus sonchi: Gene Expression and Physiological Functions.

Luciana F Brito1,2, Marina Gil López1,2, Lucas Straube1,2, Luciane M P Passaglia3, Volker F Wendisch1,2.   

Abstract

Due to the importance of phosphorus (P) in agriculture, crop inoculation with phosphate-solubilizing bacteria is a relevant subject of study. Paenibacillus sonchi genomovar Riograndensis SBR5 is a promising candidate for crop inoculation, as it can fix nitrogen and excrete ammonium at a remarkably high rate. However, its trait of phosphate solubilization (PS) has not yet been studied in detail. Here, differential gene expression and functional analyses were performed to characterize PS in this bacterium. SBR5 was cultivated with two distinct P sources: NaH2PO4 as soluble phosphate source (SPi) and hydroxyapatite as insoluble phosphate source (IPi). Total RNA of SBR5 cultivated in those two conditions was isolated and sequenced, and bacterial growth and product formation were monitored. In the IPi medium, the expression of 68 genes was upregulated, whereas 100 genes were downregulated. Among those, genes involved in carbon metabolism, including those coding for subunits of 2-oxoglutarate dehydrogenase, were identified. Quantitation of organic acids showed that the production of tricarboxylic acid cycle-derived organic acids was reduced in IPi condition, whereas acetate and gluconate were overproduced. Increased concentrations of proline, trehalose, and glycine betaine revealed active osmoprotection during growth in IPi. The cultivation with hydroxyapatite also caused the reduction in the motility of SBR5 cells as a response to Pi depletion at the beginning of its growth. SBR5 was able to solubilize hydroxyapatite, which suggests that this organism is a promising phosphate-solubilizing bacterium. Our findings are the initial step in the elucidation of the PS process in P. sonchi SBR5 and will be a valuable groundwork for further studies of this organism as a plant growth-promoting rhizobacterium.
Copyright © 2020 Brito, López, Straube, Passaglia and Wendisch.

Entities:  

Keywords:  PGPR – plant growth-promoting rhizobacteria; Paenibacillus sonchi; RNAseq; organic acids; osmoprotection; phosphate solubilization

Year:  2020        PMID: 33424789      PMCID: PMC7793946          DOI: 10.3389/fmicb.2020.588605

Source DB:  PubMed          Journal:  Front Microbiol        ISSN: 1664-302X            Impact factor:   5.640


  4 in total

1.  Designing Synergistic Biostimulants Formulation Containing Autochthonous Phosphate-Solubilizing Bacteria for Sustainable Wheat Production.

Authors:  Mahreen Yahya; Maria Rasul; Yasra Sarwar; Muhammad Suleman; Mohsin Tariq; Syed Zajif Hussain; Zahid Iqbal Sajid; Asma Imran; Imran Amin; Thomas Reitz; Mika Tapio Tarkka; Sumera Yasmin
Journal:  Front Microbiol       Date:  2022-05-03       Impact factor: 6.064

Review 2.  Prospects for Using Phosphate-Solubilizing Microorganisms as Natural Fertilizers in Agriculture.

Authors:  Anna Timofeeva; Maria Galyamova; Sergey Sedykh
Journal:  Plants (Basel)       Date:  2022-08-15

3.  Comparative Genomics Insights into a Novel Biocontrol Agent Paenibacillus peoriae Strain ZF390 against Bacterial Soft Rot.

Authors:  Yurong Zhao; Xuewen Xie; Junhui Li; Yanxia Shi; Ali Chai; Tengfei Fan; Baoju Li; Lei Li
Journal:  Biology (Basel)       Date:  2022-08-04

4.  Multiple Metabolic Phenotypes as Screening Criteria Are Correlated With the Plant Growth-Promoting Ability of Rhizobacterial Isolates.

Authors:  Peng Shi; Jianli Zhang; Xingyue Li; Liyun Zhou; Hui Luo; Li Wang; Yafan Zhang; Minxia Chou; Gehong Wei
Journal:  Front Microbiol       Date:  2022-01-05       Impact factor: 5.640

  4 in total

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