Role of Volatile Organic Compounds Produced by Kosakonia cowanii Cp1 during Competitive Colonization Interaction against Pectobacterium aroidearum SM2

Author:

Mena Navarro Mayra Paola1ORCID,Espinosa Bernal Merle Ariadna1ORCID,Martinez-Avila Adriana Eunice1ORCID,Aponte Pineda Leonela Sofia1,Montes Flores Luis Alberto1ORCID,Chan Ku Carlos Daniel1ORCID,Hernández Gómez Yoali Fernanda1,González Espinosa Jacqueline1,Pacheco Aguilar Juan Ramiro1,Ramos López Miguel Ángel1,Arvizu Gómez Jackeline Lizzeta2ORCID,Saldaña Gutierrez Carlos3ORCID,Rodríguez Morales José Alberto4ORCID,Amaro Reyes Aldo1ORCID,Hernández Flores José Luis5,Campos Guillén Juan1ORCID

Affiliation:

1. Facultad de Química, Universidad Autónoma de Querétaro, Cerro de las Campanas s/n, Querétaro 76010, Qro, Mexico

2. Secretaría de Investigación y Posgrado, Centro Nayarita de Innovación y Transferencia de Tecnología (CENITT), Universidad Autónoma de Nayarit, Tepic 63173, Mexico

3. Facultad de Ciencias Naturales, Universidad Autónoma de Querétaro, Av. De las Ciencias s/n, Querétaro 76220, Mexico

4. Facultad de Ingeniería, Universidad Autónoma de Querétaro, Cerro de las Campanas s/n, Querétaro 76010, Mexico

5. Centro de Investigación y de Estudios Avanzados del IPN, Irapuato 36824, Mexico

Abstract

The competitive colonization of bacteria on similar ecological niches has a significant impact during their establishment. The synthesis speeds of different chemical classes of molecules during early competitive colonization can reduce the number of competitors through metabolic effects. In this work, we demonstrate for the first time that Kosakonia cowanii Cp1 previously isolated from the seeds of Capsicum pubescens R. P. produced volatile organic compounds (VOCs) during competitive colonization against Pectobacterium aroidearum SM2, affecting soft rot symptoms in serrano chili (Capsicum annuum L.). The pathogen P. aroidearum SM2 was isolated from the fruits of C. annuum var. Serrano with soft rot symptoms. The genome of the SM2 strain carries a 5,037,920 bp chromosome with 51.46% G + C content and 4925 predicted protein-coding genes. It presents 12 genes encoding plant-cell-wall-degrading enzymes (PCDEWs), 139 genes involved in five types of secretion systems, and 16 genes related to invasion motility. Pathogenic essays showed soft rot symptoms in the fruits of C. annuum L., Solanum lycopersicum, and Physalis philadelphica and the tubers of Solanum tuberosum. During the growth phases of K. cowanii Cp1, a mix of VOCs was identified by means of HS-SPME-GC-MS. Of these compounds, 2,5-dimethyl-pyrazine showed bactericidal effects and synergy with acetoin during the competitive colonization of K. cowanii Cp1 to completely reduce soft rot symptoms. This work provides novel evidence grounding a better understanding of bacterial interactions during competitive colonization on plant tissue, where VOC synthesis is essential and has a high potential capacity to control pathogenic microorganisms in agricultural systems.

Funder

Universidad Autónoma de Querétaro

Publisher

MDPI AG

Reference55 articles.

1. van der Wolf, J., Krijger, M., Mendes, O., Kurm, V., and Gros, J. (2022). Natural Infections of Potato Plants Grown from Minitubers with Blackleg-Causing Soft Rot Pectobacteriaceae. Microorganisms, 10.

2. Host Range and Molecular Phylogenies of the Soft Rot Enterobacterial Genera Pectobacterium and Dickeya;Ma;Phytopathology,2007

3. Toth, I.K., Barny, M.-A., Brurberg, M.B., Condemine, G., Czajkowski, R., Elphinstone, J.G., Helias, V., Johnson, S.B., Moleleki, L.N., and Pirhonen, M. (2021). Plant Diseases Caused by Dickeya and Pectobacterium Species, Springer.

4. Van Der Wolf, J.M., Acuña, I., De Boer, S.H., Brurberg, M.B., Cahill, G., Charkowski, A.O., Coutinho, T., Davey, T., Dees, M.W., and Degefu, Y. (2021). Plant Diseases Caused by Dickeya and Pectobacterium Species, Springer. Chapter 7.

5. Control of blackleg and tuber soft rot of potato caused by Pectobacterium and Dickeya species: A review;Czajkowski;Plant Pathol.,2011

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