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Unlocking the growth-promoting and antagonistic power: A comprehensive whole genome study on Bacillus velezensis strains.
Ercole, Tairine Graziella; Kava, Vanessa Merlo; Petters-Vandresen, Desirrê Alexia Lourenço; Nassif Gomes, Maria Eduarda; Aluizio, Rodrigo; Ribeiro, Renan Augusto; Hungria, Mariangela; Galli, Lygia Vitoria.
Affiliation
  • Ercole TG; Department of Genetics, Laboratory of Genetics of Microorganisms, Federal University of Parana, Av. Coronel Francisco Heráclito dos Santos, 100, 81531-980 Curitiba, PR, Brazil. Electronic address: tairine.ercole@gmail.com.
  • Kava VM; Department of Genetics, Laboratory of Genetics of Microorganisms, Federal University of Parana, Av. Coronel Francisco Heráclito dos Santos, 100, 81531-980 Curitiba, PR, Brazil. Electronic address: vanessagenetica@gmail.com.
  • Petters-Vandresen DAL; Department of Genetics, Laboratory of Genetics of Microorganisms, Federal University of Parana, Av. Coronel Francisco Heráclito dos Santos, 100, 81531-980 Curitiba, PR, Brazil. Electronic address: desirre.petters@gmail.com.
  • Nassif Gomes ME; Pontifical Catholic University of Paraná, Imaculada Conceição St., 1155, 80215-901 Curitiba, PR, Brazil. Electronic address: dudanassifgomes@gmail.com.
  • Aluizio R; Department of Genetics, Laboratory of Genetics of Microorganisms, Federal University of Parana, Av. Coronel Francisco Heráclito dos Santos, 100, 81531-980 Curitiba, PR, Brazil. Electronic address: raluizio@gmail.com.
  • Ribeiro RA; Conselho Nacional de Desenvolvimento Científico e Tecnológico, SHIS QI 1 Conjunto B, Blocos A, B, C e D, Lago Sul, 71605-001 Brasília, Distrito Federal, Brazil. Electronic address: renan.ribeiro@embrapa.br.
  • Hungria M; Embrapa Soja, 86001-970 Londrina, PR, Brazil. Electronic address: mariangela.hungria@embrapa.br.
  • Galli LV; Department of Genetics, Laboratory of Genetics of Microorganisms, Federal University of Parana, Av. Coronel Francisco Heráclito dos Santos, 100, 81531-980 Curitiba, PR, Brazil. Electronic address: lgterasawa@gmail.com.
Gene ; 927: 148669, 2024 Nov 15.
Article in En | MEDLINE | ID: mdl-38866259
ABSTRACT
Bacillus species are extensively documented as plant growth-promoting rhizobacteria, contributing significantly to the enhancement of soil fertility, nutrient recycling, and the control of phytopathogens. Utilizing them as biocontrol agents represents an environmentally friendly strategy, particularly within the rhizospheric community. This study presents the comprehensive genome sequences of three B. velezensis strains (LGMB12, LGMB319, and LGMB426) which were previously isolated from root samples of maize (Zea mays L.), along with a type strain FZB42. The research assesses the capability of the three strains for antagonizing fungi, specifically Fusarium graminearum, Fusarium verticillioides, Colletotrichum graminicola, and Stenocarpella sp. In paired cultures involving maize fungi, treatments containing bacteria B. velezensis exhibited statistically significant differences compared to both negative and positive treatments in terms of antagonism. Furthermore, genome mining techniques were employed to explore their inherent antagonistic potential. The assembly revealed that strains LGMB12, LGMB319, LGMB426, and FZB42 exhibit genome sizes of 4,187,541 bp, 4,244,954 bp, 3,976,537 bp, and 3,990,518 respectively. Their respective G + C content stands at 46.42 %, 46.50 %, 46.51 %, and 46.38 %. Moreover, the genomes present multiple gene clusters responsible for the synthesis of secondary metabolites and carbohydrate-active enzymes (CAZymes). These clusters highlight a diverse array of antibacterial and antifungal properties, complemented by numerous plant growth-promoting genes. These results highlight the potential of B. velezensis LGMB12, LGMB319, and LGMB426 strains as biocontrol and plant growth promotion agents, being promising candidates for further studies in agricultural production, including field trials.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Bacillus / Genome, Bacterial / Fusarium Language: En Journal: Gene Year: 2024 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Bacillus / Genome, Bacterial / Fusarium Language: En Journal: Gene Year: 2024 Document type: Article