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Article

The Role of Surfactin Production by Bacillus velezensis on Colonization, Biofilm Formation on Tomato Root and Leaf Surfaces and Subsequent Protection (ISR) against Botrytis cinerea

by
Alexandra Stoll
1,2,*,
Ricardo Salvatierra-Martínez
2,
Máximo González
1 and
Michael Araya
3
1
Laboratorio de Microbiología Aplicada, Centro de Estudios Avanzados de Zonas Áridas (CEAZA), La Serena 1720256, Chile
2
Programa de Doctorado en Biología y Ecología Aplicada, Departamento de Biología, Universidad de La Serena, La Serena 1720170, Chile
3
Centro de Investigación y Desarrollo Tecnológico en Algas CIDTA, Universidad Católica del Norte, Coquimbo 1781421, Chile
*
Author to whom correspondence should be addressed.
Microorganisms 2021, 9(11), 2251; https://doi.org/10.3390/microorganisms9112251
Submission received: 7 September 2021 / Revised: 14 October 2021 / Accepted: 14 October 2021 / Published: 28 October 2021
(This article belongs to the Special Issue Bacillus subtilis as a Model Organism to Study Basic Cell Processes)

Abstract

Many aspects regarding the role of lipopeptides (LPs) in bacterial interaction with plants are not clear yet. Of particular interest is the LP family of surfactin, immunogenic molecules involved in induced systemic resistance (ISR) and the bacterial colonization of plant surfaces. We hypothesize that the concentration of surfactin produced by a strain correlates directly with its ability to colonize and persist on different plant surfaces, which conditions its capacity to trigger ISR. We used two Bacillus velezensis strains (BBC023 and BBC047), whose antagonistic potential in vitro is practically identical, but not on plant surfaces. The surfactin production of BBC047 is 1/3 higher than that of BBC023. Population density and SEM images revealed stable biofilms of BBC047 on leaves and roots, activating ISR on both plant surfaces. Despite its lower surfactin production, strain BBC023 assembled stable biofilms on roots and activated ISR. However, on leaves only isolated, unstructured populations were observed, which could not activate ISR. Thus, the ability of a strain to effectively colonize a plant surface is not only determined through its production of surfactin. Multiple aspects, such as environmental stressors or compensation mechanisms may influence the process. Finally, the importance of surfactin lies in its impacts on biofilm formation and stable colonization, which finally enables its activity as an elicitor of ISR.
Keywords: colonization pattern; population density; surfactin production; ISR colonization pattern; population density; surfactin production; ISR

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MDPI and ACS Style

Stoll, A.; Salvatierra-Martínez, R.; González, M.; Araya, M. The Role of Surfactin Production by Bacillus velezensis on Colonization, Biofilm Formation on Tomato Root and Leaf Surfaces and Subsequent Protection (ISR) against Botrytis cinerea. Microorganisms 2021, 9, 2251. https://doi.org/10.3390/microorganisms9112251

AMA Style

Stoll A, Salvatierra-Martínez R, González M, Araya M. The Role of Surfactin Production by Bacillus velezensis on Colonization, Biofilm Formation on Tomato Root and Leaf Surfaces and Subsequent Protection (ISR) against Botrytis cinerea. Microorganisms. 2021; 9(11):2251. https://doi.org/10.3390/microorganisms9112251

Chicago/Turabian Style

Stoll, Alexandra, Ricardo Salvatierra-Martínez, Máximo González, and Michael Araya. 2021. "The Role of Surfactin Production by Bacillus velezensis on Colonization, Biofilm Formation on Tomato Root and Leaf Surfaces and Subsequent Protection (ISR) against Botrytis cinerea" Microorganisms 9, no. 11: 2251. https://doi.org/10.3390/microorganisms9112251

APA Style

Stoll, A., Salvatierra-Martínez, R., González, M., & Araya, M. (2021). The Role of Surfactin Production by Bacillus velezensis on Colonization, Biofilm Formation on Tomato Root and Leaf Surfaces and Subsequent Protection (ISR) against Botrytis cinerea. Microorganisms, 9(11), 2251. https://doi.org/10.3390/microorganisms9112251

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