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The ‘microbiome counterattack’: Insights on the soil and root‐associated microbiome in diverse chickpea and lentil genotypes after an erratic rainfall event

Legumes maintain soil fertility thanks to their associated microbiota but are threatened by climate change that causes soil microbial community structural and functional modifications. The core microbiome associated with different chickpea and lentil genotypes was described after an unexpected clima...

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Autores principales: Brescia, Francesca, Sillo, Fabiano, Franchi, Elisabetta, Pietrini, Ilaria, Montesano, Vincenzo, Marino, Giovanni, Haworth, Matthew, Zampieri, Elisa, Fusini, Danilo, Schillaci, Martino, Papa, Roberto, Santamarina, Chiara, Vita, Federico, Chitarra, Walter, Nerva, Luca, Petruzzelli, Giannantonio, Mennone, Carmelo, Centritto, Mauro, Balestrini, Raffaella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10667653/
https://www.ncbi.nlm.nih.gov/pubmed/37226644
http://dx.doi.org/10.1111/1758-2229.13167
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author Brescia, Francesca
Sillo, Fabiano
Franchi, Elisabetta
Pietrini, Ilaria
Montesano, Vincenzo
Marino, Giovanni
Haworth, Matthew
Zampieri, Elisa
Fusini, Danilo
Schillaci, Martino
Papa, Roberto
Santamarina, Chiara
Vita, Federico
Chitarra, Walter
Nerva, Luca
Petruzzelli, Giannantonio
Mennone, Carmelo
Centritto, Mauro
Balestrini, Raffaella
author_facet Brescia, Francesca
Sillo, Fabiano
Franchi, Elisabetta
Pietrini, Ilaria
Montesano, Vincenzo
Marino, Giovanni
Haworth, Matthew
Zampieri, Elisa
Fusini, Danilo
Schillaci, Martino
Papa, Roberto
Santamarina, Chiara
Vita, Federico
Chitarra, Walter
Nerva, Luca
Petruzzelli, Giannantonio
Mennone, Carmelo
Centritto, Mauro
Balestrini, Raffaella
author_sort Brescia, Francesca
collection PubMed
description Legumes maintain soil fertility thanks to their associated microbiota but are threatened by climate change that causes soil microbial community structural and functional modifications. The core microbiome associated with different chickpea and lentil genotypes was described after an unexpected climatic event. Results showed that chickpea and lentil bulk soil microbiomes varied significantly between two sampling time points, the first immediately after the rainfall and the second 2 weeks later. Rhizobia were associated with the soil of the more productive chickpea genotypes in terms of flower and fruit number. The root‐associated bacteria and fungi were surveyed in lentil genotypes, considering that several parcels showed disease symptoms. The metabarcoding analysis revealed that reads related to fungal pathogens were significantly associated with one lentil genotype. A lentil core prokaryotic community common to all genotypes was identified as well as a genotype‐specific one. A higher number of specific bacterial taxa and an enhanced tolerance to fungal diseases characterized a lentil landrace compared to the commercial varieties. This outcome supported the hypothesis that locally adapted landraces might have a high recruiting efficiency of beneficial soil microbes.
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spelling pubmed-106676532023-05-24 The ‘microbiome counterattack’: Insights on the soil and root‐associated microbiome in diverse chickpea and lentil genotypes after an erratic rainfall event Brescia, Francesca Sillo, Fabiano Franchi, Elisabetta Pietrini, Ilaria Montesano, Vincenzo Marino, Giovanni Haworth, Matthew Zampieri, Elisa Fusini, Danilo Schillaci, Martino Papa, Roberto Santamarina, Chiara Vita, Federico Chitarra, Walter Nerva, Luca Petruzzelli, Giannantonio Mennone, Carmelo Centritto, Mauro Balestrini, Raffaella Environ Microbiol Rep Research Articles Legumes maintain soil fertility thanks to their associated microbiota but are threatened by climate change that causes soil microbial community structural and functional modifications. The core microbiome associated with different chickpea and lentil genotypes was described after an unexpected climatic event. Results showed that chickpea and lentil bulk soil microbiomes varied significantly between two sampling time points, the first immediately after the rainfall and the second 2 weeks later. Rhizobia were associated with the soil of the more productive chickpea genotypes in terms of flower and fruit number. The root‐associated bacteria and fungi were surveyed in lentil genotypes, considering that several parcels showed disease symptoms. The metabarcoding analysis revealed that reads related to fungal pathogens were significantly associated with one lentil genotype. A lentil core prokaryotic community common to all genotypes was identified as well as a genotype‐specific one. A higher number of specific bacterial taxa and an enhanced tolerance to fungal diseases characterized a lentil landrace compared to the commercial varieties. This outcome supported the hypothesis that locally adapted landraces might have a high recruiting efficiency of beneficial soil microbes. John Wiley & Sons, Inc. 2023-05-24 /pmc/articles/PMC10667653/ /pubmed/37226644 http://dx.doi.org/10.1111/1758-2229.13167 Text en © 2023 The Authors. Environmental Microbiology Reports published by Applied Microbiology International and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Brescia, Francesca
Sillo, Fabiano
Franchi, Elisabetta
Pietrini, Ilaria
Montesano, Vincenzo
Marino, Giovanni
Haworth, Matthew
Zampieri, Elisa
Fusini, Danilo
Schillaci, Martino
Papa, Roberto
Santamarina, Chiara
Vita, Federico
Chitarra, Walter
Nerva, Luca
Petruzzelli, Giannantonio
Mennone, Carmelo
Centritto, Mauro
Balestrini, Raffaella
The ‘microbiome counterattack’: Insights on the soil and root‐associated microbiome in diverse chickpea and lentil genotypes after an erratic rainfall event
title The ‘microbiome counterattack’: Insights on the soil and root‐associated microbiome in diverse chickpea and lentil genotypes after an erratic rainfall event
title_full The ‘microbiome counterattack’: Insights on the soil and root‐associated microbiome in diverse chickpea and lentil genotypes after an erratic rainfall event
title_fullStr The ‘microbiome counterattack’: Insights on the soil and root‐associated microbiome in diverse chickpea and lentil genotypes after an erratic rainfall event
title_full_unstemmed The ‘microbiome counterattack’: Insights on the soil and root‐associated microbiome in diverse chickpea and lentil genotypes after an erratic rainfall event
title_short The ‘microbiome counterattack’: Insights on the soil and root‐associated microbiome in diverse chickpea and lentil genotypes after an erratic rainfall event
title_sort ‘microbiome counterattack’: insights on the soil and root‐associated microbiome in diverse chickpea and lentil genotypes after an erratic rainfall event
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10667653/
https://www.ncbi.nlm.nih.gov/pubmed/37226644
http://dx.doi.org/10.1111/1758-2229.13167
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