Caracterização morfofisiológica, molecular e funcional de Mycobacterium agroflorensis com potencial para o desenvolvimento de bioinsumos e promoção do crescimento vegetal
Bacterial inoculation improved plant development and demonstrated promising potential for application in sustainable agricultural systems, highlighting the biotechnological potential of M. agroflorensis as a candidate for the development of agricultural bioinputs, contributing to low-carbon agriculture and advancing research in agricultural microbiology.
Abstract
The growing demand for sustainable agricultural systems has stimulated the development of microbial bioinputs capable of reducing dependence on mineral fertilizers while improving the efficient use of natural resources. In this context, the prospecting and characterization of plant growth-promoting bacteria represent a promising strategy to increase agricultural productivity and support environmental sustainability. This study aimed to perform the morphophysiological, molecular, and functional characterization of the experimental strain Mycobacterium agroflorensis, evaluating its potential for application as an agricultural bioinput. The research included macroscopic and microscopic characterization, cultivation on Middlebrook 7H10 medium, assessment of bacterial growth under different temperature and pH conditions, molecular identification based on 16S rRNA gene sequencing, and investigation of plant growth-promoting mechanisms, including phytohormone production, phosphate solubilization, siderophore production, and genes associated with plant–bacteria interaction. Agronomic assays were also conducted under controlled environmental conditions, combined with Internet of Things (IoT)-based environmental monitoring, to evaluate bacterial inoculation in different crop species. The results demonstrated that M. agroflorensis exhibited high phenotypic stability, optimal growth at 30 °C and pH 7.0, morphological characteristics consistent with the genus Mycobacterium, and functional traits associated with plant growth promotion. Bacterial inoculation improved plant development and demonstrated promising potential for application in sustainable agricultural systems. These findings highlight the biotechnological potential of M. agroflorensis as a candidate for the development of agricultural bioinputs, contributing to low-carbon agriculture and advancing research in agricultural microbiology.
The biotechnological potential of Mycobacterium agroflorensis as a promising microbial bioinput for sustainable agriculture is highlighted, supporting future studies aimed at field validation and the development of innovative biofertilizers for environmentally responsible crop production.
Luís Dias Ferreira Soares, Zilmar Timóteo Soares, Aarão Felipe Ataídes Lima et al.· ARACÊ· 0 citations
Megathyrsus maximus (Guinea grass) is an important forage species for livestock production, whose productivity has been adversely affected by the excessive use of chemical fertilizers. The objective of this study was to isolate and characterize plant growth-promoting bacteria (PGPB) associated with the rhizosphere of M...
Juan Pablo Avellaneda Vázquez, Karina Gabriela Martinez Lara, Karelys Edith Hidalgo Mendoza et al.· Multidisciplinary Collaborat...· 0 citations
This systematic review analyzed the chemical characterization, bioactive properties, and agro-industrial potential of wild berries and fruits. Following the PRISMA 2020 methodology, 34 scientific articles published between 2019 and 2025 were selected from the ScienceDirect, MDPI, and SciELO databases. The reviewed stud...
Christell Marjorie Chero Calcina, Gina De La Cruz-Calderón, Estefani Raquel Espinoza Bovis et al.· KANYÚ· 0 citations
The objective was to characterize the species’ biotechnological potential and its phenotypes, with an emphasis on the morphophysiology and biochemistry of fruits, seeds, and germination, as well as the antioxidant activity of the leaf essential oil.
This research analyzed the production and application of a sustainable biofertilizer made with native Caatinga species, such as *Mimosa tenuiflora* (jurema-preta) and *Spondias purpurea* (seriguela), as an agroecological alternative for family farming in the semi-arid region. The study was developed in Granjeiro, Ceará...
Lucas Melo dos Santos, José Eduardo Melo dos Santos, Márcio de Oliveira Lima et al.· International Journal Semiar...· 0 citations
The cultivation of Musa spp. is facing increasing losses due to erratic rainfall in tropical growing regions, making it necessary to explore biological alternatives that reduce dependence on irrigation without compromising seedling development. The effect of a consortium of plant-growth-promoting rhizobacteria, capable...
Maholy Rocio Loza-Ormaza, Fabricio Rolando Fuentes-Núñez, Anthony Lizandro Tubun-Vargas et al.· Revista Científica Ciencia y...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.