Cargando…

Arbuscular Mycorrhizal Fungi (Rhizophagus clarus) and Rhizobacteria (Bacillus subtilis) Can Improve the Clonal Propagation and Development of Teak for Commercial Plantings

The Tectona grandis L.f. (teak) is an important forest species with high economy value in Asia, Africa, and Latin America. In Latin America, Brazil is one of the countries with the most cultivated areas. The cultivation of teak turns out to be challenging because of its high nutritional demand and t...

Descripción completa

Detalles Bibliográficos
Autores principales: Alexandre, Flávia Sampaio, Della Flora, Larissa Venturini, Henrique, Ivanildo Guilherme, da Silva, Daniely Camila, Mercedes, Andreza Pereira, Cardoso Silva, Aline, Silva de Oliveira, Afonso, Bondespacho da Silva, Mariane Patrícia, Formelh Ronning, Bruna Patrícia, Dreher, Douglas Rafael, Gionco Cano, Bárbara, Andreata, Matheus Felipe de Lima, Barbosa Filho, Joamir, Santos, Eva Roseane, Takisawa, Fausto Hissashi, Alfenas, Rafael Ferreira, Andrade, Galdino, Cely, Martha Viviana Torres
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8284393/
https://www.ncbi.nlm.nih.gov/pubmed/34276714
http://dx.doi.org/10.3389/fpls.2021.628769
_version_ 1783723390002003968
author Alexandre, Flávia Sampaio
Della Flora, Larissa Venturini
Henrique, Ivanildo Guilherme
da Silva, Daniely Camila
Mercedes, Andreza Pereira
Cardoso Silva, Aline
Silva de Oliveira, Afonso
Bondespacho da Silva, Mariane Patrícia
Formelh Ronning, Bruna Patrícia
Dreher, Douglas Rafael
Gionco Cano, Bárbara
Andreata, Matheus Felipe de Lima
Barbosa Filho, Joamir
Santos, Eva Roseane
Takisawa, Fausto Hissashi
Alfenas, Rafael Ferreira
Andrade, Galdino
Cely, Martha Viviana Torres
author_facet Alexandre, Flávia Sampaio
Della Flora, Larissa Venturini
Henrique, Ivanildo Guilherme
da Silva, Daniely Camila
Mercedes, Andreza Pereira
Cardoso Silva, Aline
Silva de Oliveira, Afonso
Bondespacho da Silva, Mariane Patrícia
Formelh Ronning, Bruna Patrícia
Dreher, Douglas Rafael
Gionco Cano, Bárbara
Andreata, Matheus Felipe de Lima
Barbosa Filho, Joamir
Santos, Eva Roseane
Takisawa, Fausto Hissashi
Alfenas, Rafael Ferreira
Andrade, Galdino
Cely, Martha Viviana Torres
author_sort Alexandre, Flávia Sampaio
collection PubMed
description The Tectona grandis L.f. (teak) is an important forest species with high economy value in Asia, Africa, and Latin America. In Latin America, Brazil is one of the countries with the most cultivated areas. The cultivation of teak turns out to be challenging because of its high nutritional demand and the need for seedling production by clonal propagation that includes about 90 days in the nursery phase. The optimization of seedling production is necessary for better results in the nursery and to enhance growth in the field. In this way, the well-known advantage of using microorganisms that promote plant development appears as a potential biotechnological approach to be explored and for the implantation of new areas of wood production. In this study, the inoculation of Bacillus subtilis as plant growth-promoting rhizobacteria (PGPR) was evaluated, and Rhizophagus clarus, an arbuscular mycorrhizal fungus (AMF), and the co-inoculation of these microorganisms in the teak seedling production phase can improve the development of commercial plantations under field conditions. Experiments were carried out under greenhouse and field conditions to evaluate four treatments based on the substrate inoculation of the seedlings. Treatments consisted of a non-inoculated control, PGPR inoculation, AMF inoculation, and PGPR + AMF inoculation. The results of the biometric evaluation of seedlings in the greenhouse showed that there was a significant difference in AMF inoculation and PGPR + AMF inoculation in terms of the specific root length and root density treatments, there was also a positive correlation between these two treatments and the absorption of some nutrients, such as P, N, K, Mg, Cu, Mn, and Zn. This response led to an increase between 4.75 and 11.04% in the field growth rate.
format Online
Article
Text
id pubmed-8284393
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-82843932021-07-17 Arbuscular Mycorrhizal Fungi (Rhizophagus clarus) and Rhizobacteria (Bacillus subtilis) Can Improve the Clonal Propagation and Development of Teak for Commercial Plantings Alexandre, Flávia Sampaio Della Flora, Larissa Venturini Henrique, Ivanildo Guilherme da Silva, Daniely Camila Mercedes, Andreza Pereira Cardoso Silva, Aline Silva de Oliveira, Afonso Bondespacho da Silva, Mariane Patrícia Formelh Ronning, Bruna Patrícia Dreher, Douglas Rafael Gionco Cano, Bárbara Andreata, Matheus Felipe de Lima Barbosa Filho, Joamir Santos, Eva Roseane Takisawa, Fausto Hissashi Alfenas, Rafael Ferreira Andrade, Galdino Cely, Martha Viviana Torres Front Plant Sci Plant Science The Tectona grandis L.f. (teak) is an important forest species with high economy value in Asia, Africa, and Latin America. In Latin America, Brazil is one of the countries with the most cultivated areas. The cultivation of teak turns out to be challenging because of its high nutritional demand and the need for seedling production by clonal propagation that includes about 90 days in the nursery phase. The optimization of seedling production is necessary for better results in the nursery and to enhance growth in the field. In this way, the well-known advantage of using microorganisms that promote plant development appears as a potential biotechnological approach to be explored and for the implantation of new areas of wood production. In this study, the inoculation of Bacillus subtilis as plant growth-promoting rhizobacteria (PGPR) was evaluated, and Rhizophagus clarus, an arbuscular mycorrhizal fungus (AMF), and the co-inoculation of these microorganisms in the teak seedling production phase can improve the development of commercial plantations under field conditions. Experiments were carried out under greenhouse and field conditions to evaluate four treatments based on the substrate inoculation of the seedlings. Treatments consisted of a non-inoculated control, PGPR inoculation, AMF inoculation, and PGPR + AMF inoculation. The results of the biometric evaluation of seedlings in the greenhouse showed that there was a significant difference in AMF inoculation and PGPR + AMF inoculation in terms of the specific root length and root density treatments, there was also a positive correlation between these two treatments and the absorption of some nutrients, such as P, N, K, Mg, Cu, Mn, and Zn. This response led to an increase between 4.75 and 11.04% in the field growth rate. Frontiers Media S.A. 2021-07-02 /pmc/articles/PMC8284393/ /pubmed/34276714 http://dx.doi.org/10.3389/fpls.2021.628769 Text en Copyright © 2021 Alexandre, Della Flora, Henrique, da Silva, Mercedes, Cardoso Silva, Silva de Oliveira, Bondespacho da Silva, Formelh Ronning, Dreher, Gionco Cano, Andreata, Barbosa Filho, Santos, Takisawa, Alfenas, Andrade and Cely. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Alexandre, Flávia Sampaio
Della Flora, Larissa Venturini
Henrique, Ivanildo Guilherme
da Silva, Daniely Camila
Mercedes, Andreza Pereira
Cardoso Silva, Aline
Silva de Oliveira, Afonso
Bondespacho da Silva, Mariane Patrícia
Formelh Ronning, Bruna Patrícia
Dreher, Douglas Rafael
Gionco Cano, Bárbara
Andreata, Matheus Felipe de Lima
Barbosa Filho, Joamir
Santos, Eva Roseane
Takisawa, Fausto Hissashi
Alfenas, Rafael Ferreira
Andrade, Galdino
Cely, Martha Viviana Torres
Arbuscular Mycorrhizal Fungi (Rhizophagus clarus) and Rhizobacteria (Bacillus subtilis) Can Improve the Clonal Propagation and Development of Teak for Commercial Plantings
title Arbuscular Mycorrhizal Fungi (Rhizophagus clarus) and Rhizobacteria (Bacillus subtilis) Can Improve the Clonal Propagation and Development of Teak for Commercial Plantings
title_full Arbuscular Mycorrhizal Fungi (Rhizophagus clarus) and Rhizobacteria (Bacillus subtilis) Can Improve the Clonal Propagation and Development of Teak for Commercial Plantings
title_fullStr Arbuscular Mycorrhizal Fungi (Rhizophagus clarus) and Rhizobacteria (Bacillus subtilis) Can Improve the Clonal Propagation and Development of Teak for Commercial Plantings
title_full_unstemmed Arbuscular Mycorrhizal Fungi (Rhizophagus clarus) and Rhizobacteria (Bacillus subtilis) Can Improve the Clonal Propagation and Development of Teak for Commercial Plantings
title_short Arbuscular Mycorrhizal Fungi (Rhizophagus clarus) and Rhizobacteria (Bacillus subtilis) Can Improve the Clonal Propagation and Development of Teak for Commercial Plantings
title_sort arbuscular mycorrhizal fungi (rhizophagus clarus) and rhizobacteria (bacillus subtilis) can improve the clonal propagation and development of teak for commercial plantings
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8284393/
https://www.ncbi.nlm.nih.gov/pubmed/34276714
http://dx.doi.org/10.3389/fpls.2021.628769
work_keys_str_mv AT alexandreflaviasampaio arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT dellafloralarissaventurini arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT henriqueivanildoguilherme arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT dasilvadanielycamila arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT mercedesandrezapereira arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT cardososilvaaline arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT silvadeoliveiraafonso arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT bondespachodasilvamarianepatricia arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT formelhronningbrunapatricia arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT dreherdouglasrafael arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT gioncocanobarbara arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT andreatamatheusfelipedelima arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT barbosafilhojoamir arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT santosevaroseane arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT takisawafaustohissashi arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT alfenasrafaelferreira arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT andradegaldino arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings
AT celymarthavivianatorres arbuscularmycorrhizalfungirhizophagusclarusandrhizobacteriabacillussubtiliscanimprovetheclonalpropagationanddevelopmentofteakforcommercialplantings