Next Article in Journal
Trichinella britovi Larval Biomass in Wild Canids in the Abruzzi Region, Italy
Previous Article in Journal
Biological Activity of the Mentha spicata L. and Salvia officinalis L. (Lamiaceae) Essential Oils on Sytophilusgranarius L. and Triboliumconfusum Jac. Du Val. Infested Stored Wheat
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Abstract

Analysis of the Potential of a Pseudomonas Bacterial Strain to Promote Brassica napus Plant Growth and Study of Its Inoculation Effect on Root Bacterial Associated Communities †

by
Lihuén Iraí González-Dominici
1,2,*,
Alejandro Jiménez-Gómez
1,2,
Zaki Saati-Santamaría
1,2 and
Paula García-Fraile
1,2,3
1
Microbiology and Genetics Department, University of Salamanca, 37008 Salamanca, Spain
2
Institute for Agribiotechnology Research (CIALE), 37185 Villamayor, Spain
3
Associated R&D Unit, USAL-CSIC (IRNASA), 37008 Salamanca, Spain
*
Author to whom correspondence should be addressed.
Presented at the 1st International Electronic Conference on Plant Science, 1–15 December 2020; Available online: https://iecps2020.sciforum.net/.
Biol. Life Sci. Forum 2021, 4(1), 104; https://doi.org/10.3390/IECPS2020-08848
Published: 2 December 2020
(This article belongs to the Proceedings of The 1st International Electronic Conference on Plant Science)

Abstract

:
Because of their plant-growth-promoting (PGP) properties, microbes play crucial roles in plant development, making them potential candidates for substituting chemical fertilizers, especially when the soil conditions are not the most appropriate to obtain maximum crop yields. This is the case of strain Pseudomonas brassicacearum CDVBN10, a bacterial endophyte isolated from rapeseed (Brassica napus) roots. Previous in vitro, in planta and in silico experiments have demonstrated that strain CDVBN10 has interesting PGP potential. This endophyte synthetizes cellulose, produces siderophores, solubilizes P, promotes plant height and root length in rapeseed seedlings, and carries genes implicated in several PGP pathways. Based on these data, we conducted greenhouse experiments using this strain as a biofertilizer under normal and salinity stress conditions, finding significant improvements in those inoculated plants, compared to the negative control. To prove its biofertilizer potential under field conditions, we carried out a field trial in which plants inoculated with CDVBN10 showed a 216%, 174.3%, and 197.8% increase in number of pods, seed weight, and aerial part weight, respectively. Along-read (SMRT; PacBio) 16S rRNA gene amplicon sequencing was performed in root samples from this field trials to study possible shifts on the rapeseed root microbiome due to the inoculation with CDVBN10. Interestingly, despite the great plant improvements, there were no significant differences in root bacterial communities of inoculated plants; thus, other potential beneficial members of the plant microbiome had not been displaced. According to the results, the strain P. brassicacearum CDVBN10 is suggested as a promising bacterial biofertilizer with great performance on B. napus crops.

Supplementary Materials

The poster presentation is available online at https://www.mdpi.com/article/10.3390/IECPS2020-08848/s1.

Author Contributions

Conceptualization, P.G.-F.; methodology, A.J.-G., Z.S.-S. and L.I.G.-D.; software, Z.S.-S.; formal analysis, A.J.-G., Z.S.-S. and P.G.-F.; investigation, A.J.-G., Z.S.-S. and L.I.G.-D.; resources, P.G.-F.; data curation, Z.S.-S.; writing—original draft preparation, L.I.G.-D.; writing—review and editing, P.G.-F.; visualization, A.J.-G., Z.S.-S., L.I.G.-D. and P.G.-F.; supervision, P.G.-F.; project administration, P.G.-F.; funding acquisition, P.G.-F. All authors have read and agreed to the published version of the manuscript.

Funding

This research was funded by EUROPEAN UNION’S HORIZON 2020 research and innovation programme, grant number 750795.

Acknowledgments

The authors thank the Strategic Research Programs for Units of Excellence, Junta de Castilla y León (CLU-2O18-04), for the funded equipment and facilities used in this work
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Share and Cite

MDPI and ACS Style

González-Dominici, L.I.; Jiménez-Gómez, A.; Saati-Santamaría, Z.; García-Fraile, P. Analysis of the Potential of a Pseudomonas Bacterial Strain to Promote Brassica napus Plant Growth and Study of Its Inoculation Effect on Root Bacterial Associated Communities. Biol. Life Sci. Forum 2021, 4, 104. https://doi.org/10.3390/IECPS2020-08848

AMA Style

González-Dominici LI, Jiménez-Gómez A, Saati-Santamaría Z, García-Fraile P. Analysis of the Potential of a Pseudomonas Bacterial Strain to Promote Brassica napus Plant Growth and Study of Its Inoculation Effect on Root Bacterial Associated Communities. Biology and Life Sciences Forum. 2021; 4(1):104. https://doi.org/10.3390/IECPS2020-08848

Chicago/Turabian Style

González-Dominici, Lihuén Iraí, Alejandro Jiménez-Gómez, Zaki Saati-Santamaría, and Paula García-Fraile. 2021. "Analysis of the Potential of a Pseudomonas Bacterial Strain to Promote Brassica napus Plant Growth and Study of Its Inoculation Effect on Root Bacterial Associated Communities" Biology and Life Sciences Forum 4, no. 1: 104. https://doi.org/10.3390/IECPS2020-08848

Article Metrics

Back to TopTop