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Mycobiota of Mexican Maize Landraces with Auxin-Producing Yeasts That Improve Plant Growth and Root Development

Compared to agrochemicals, bioinoculants based on plant microbiomes are a sustainable option for increasing crop yields and soil fertility. From the Mexican maize landrace “Raza cónico” (red and blue varieties), we identified yeasts and evaluated in vitro their ability to promote plant growth. Auxin...

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Autores principales: Ramos-Garza, Juan, Aguirre-Noyola, José Luis, Bustamante-Brito, Rafael, Zelaya-Molina, Lily X., Maldonado-Hernández, Jessica, Morales-Estrada, Aurea Itzel, Resendiz-Venado, Zoe, Palacios-Olvera, Jacqueline, Angeles-Gallegos, Thania, Terreros-Moysen, Paola, Cortés-Carvajal, Manuel, Martínez-Romero, Esperanza
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058334/
https://www.ncbi.nlm.nih.gov/pubmed/36987016
http://dx.doi.org/10.3390/plants12061328
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author Ramos-Garza, Juan
Aguirre-Noyola, José Luis
Bustamante-Brito, Rafael
Zelaya-Molina, Lily X.
Maldonado-Hernández, Jessica
Morales-Estrada, Aurea Itzel
Resendiz-Venado, Zoe
Palacios-Olvera, Jacqueline
Angeles-Gallegos, Thania
Terreros-Moysen, Paola
Cortés-Carvajal, Manuel
Martínez-Romero, Esperanza
author_facet Ramos-Garza, Juan
Aguirre-Noyola, José Luis
Bustamante-Brito, Rafael
Zelaya-Molina, Lily X.
Maldonado-Hernández, Jessica
Morales-Estrada, Aurea Itzel
Resendiz-Venado, Zoe
Palacios-Olvera, Jacqueline
Angeles-Gallegos, Thania
Terreros-Moysen, Paola
Cortés-Carvajal, Manuel
Martínez-Romero, Esperanza
author_sort Ramos-Garza, Juan
collection PubMed
description Compared to agrochemicals, bioinoculants based on plant microbiomes are a sustainable option for increasing crop yields and soil fertility. From the Mexican maize landrace “Raza cónico” (red and blue varieties), we identified yeasts and evaluated in vitro their ability to promote plant growth. Auxin production was detected from yeast isolates and confirmed using Arabidopsis thaliana plants. Inoculation tests were performed on maize, and morphological parameters were measured. Eighty-seven yeast strains were obtained (50 from blue corn and 37 from red corn). These were associated with three families of Ascomycota (Dothideaceae, Debaryomycetaceae, and Metschnikowiaceae) and five families of Basidiomycota (Sporidiobolaceae, Filobasidiaceae, Piskurozymaceae, Tremellaceae, and Rhynchogastremataceae), and, in turn, distributed in 10 genera (Clavispora, Rhodotorula, Papiliotrema, Candida, Suhomyces, Soliccocozyma, Saitozyma Holtermaniella, Naganishia, and Aeurobasidium). We identified strains that solubilized phosphate and produced siderophores, proteases, pectinases, and cellulases but did not produce amylases. Solicoccozyma sp. RY31, C. lusitaniae Y11, R. glutinis Y23, and Naganishia sp. Y52 produced auxins from L-Trp (11.9–52 µg/mL) and root exudates (1.3–22.5 µg/mL). Furthermore, they stimulated the root development of A. thaliana. Inoculation of auxin-producing yeasts caused a 1.5-fold increase in maize plant height, fresh weight, and root length compared to uninoculated controls. Overall, maize landraces harbor plant growth-promoting yeasts and have the potential for use as agricultural biofertilizers.
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spelling pubmed-100583342023-03-30 Mycobiota of Mexican Maize Landraces with Auxin-Producing Yeasts That Improve Plant Growth and Root Development Ramos-Garza, Juan Aguirre-Noyola, José Luis Bustamante-Brito, Rafael Zelaya-Molina, Lily X. Maldonado-Hernández, Jessica Morales-Estrada, Aurea Itzel Resendiz-Venado, Zoe Palacios-Olvera, Jacqueline Angeles-Gallegos, Thania Terreros-Moysen, Paola Cortés-Carvajal, Manuel Martínez-Romero, Esperanza Plants (Basel) Article Compared to agrochemicals, bioinoculants based on plant microbiomes are a sustainable option for increasing crop yields and soil fertility. From the Mexican maize landrace “Raza cónico” (red and blue varieties), we identified yeasts and evaluated in vitro their ability to promote plant growth. Auxin production was detected from yeast isolates and confirmed using Arabidopsis thaliana plants. Inoculation tests were performed on maize, and morphological parameters were measured. Eighty-seven yeast strains were obtained (50 from blue corn and 37 from red corn). These were associated with three families of Ascomycota (Dothideaceae, Debaryomycetaceae, and Metschnikowiaceae) and five families of Basidiomycota (Sporidiobolaceae, Filobasidiaceae, Piskurozymaceae, Tremellaceae, and Rhynchogastremataceae), and, in turn, distributed in 10 genera (Clavispora, Rhodotorula, Papiliotrema, Candida, Suhomyces, Soliccocozyma, Saitozyma Holtermaniella, Naganishia, and Aeurobasidium). We identified strains that solubilized phosphate and produced siderophores, proteases, pectinases, and cellulases but did not produce amylases. Solicoccozyma sp. RY31, C. lusitaniae Y11, R. glutinis Y23, and Naganishia sp. Y52 produced auxins from L-Trp (11.9–52 µg/mL) and root exudates (1.3–22.5 µg/mL). Furthermore, they stimulated the root development of A. thaliana. Inoculation of auxin-producing yeasts caused a 1.5-fold increase in maize plant height, fresh weight, and root length compared to uninoculated controls. Overall, maize landraces harbor plant growth-promoting yeasts and have the potential for use as agricultural biofertilizers. MDPI 2023-03-15 /pmc/articles/PMC10058334/ /pubmed/36987016 http://dx.doi.org/10.3390/plants12061328 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ramos-Garza, Juan
Aguirre-Noyola, José Luis
Bustamante-Brito, Rafael
Zelaya-Molina, Lily X.
Maldonado-Hernández, Jessica
Morales-Estrada, Aurea Itzel
Resendiz-Venado, Zoe
Palacios-Olvera, Jacqueline
Angeles-Gallegos, Thania
Terreros-Moysen, Paola
Cortés-Carvajal, Manuel
Martínez-Romero, Esperanza
Mycobiota of Mexican Maize Landraces with Auxin-Producing Yeasts That Improve Plant Growth and Root Development
title Mycobiota of Mexican Maize Landraces with Auxin-Producing Yeasts That Improve Plant Growth and Root Development
title_full Mycobiota of Mexican Maize Landraces with Auxin-Producing Yeasts That Improve Plant Growth and Root Development
title_fullStr Mycobiota of Mexican Maize Landraces with Auxin-Producing Yeasts That Improve Plant Growth and Root Development
title_full_unstemmed Mycobiota of Mexican Maize Landraces with Auxin-Producing Yeasts That Improve Plant Growth and Root Development
title_short Mycobiota of Mexican Maize Landraces with Auxin-Producing Yeasts That Improve Plant Growth and Root Development
title_sort mycobiota of mexican maize landraces with auxin-producing yeasts that improve plant growth and root development
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058334/
https://www.ncbi.nlm.nih.gov/pubmed/36987016
http://dx.doi.org/10.3390/plants12061328
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