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Resumen
Plant-associated microbiomes confer fitness advantages to the plant host by growth promotion through different mechanisms including nutrient uptake, phytohormones production, resistance to pathogens, and stress tolerance. These effects of the potentially beneficial microbes have been used in a diversity of biotechnological approaches to improve crop performance applying individual bacterial cultures. However, healthy plants host a diversity of
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dc.contributor.author | Monteoliva, Mariela Ines | |
dc.contributor.author | Valetti, Lucio | |
dc.contributor.author | Taurian, Tania | |
dc.contributor.author | Crociara, Clara Sonia | |
dc.contributor.author | Guzzo, María Carla | |
dc.contributor.editor | Jimenez-Lopez, Jose Carlos | |
dc.contributor.editor | Clemente, Alfonso | |
dc.date.accessioned | 2022-05-02T17:19:41Z | |
dc.date.available | 2022-05-02T17:19:41Z | |
dc.date.issued | 2022-03-31 | |
dc.identifier.other | https://doi.org/10.5772/intechopen.102519 | |
dc.identifier.uri | http://hdl.handle.net/20.500.12123/11777 | |
dc.identifier.uri | https://www.intechopen.com/online-first/80641 | |
dc.description.abstract | Plant-associated microbiomes confer fitness advantages to the plant host by growth promotion through different mechanisms including nutrient uptake, phytohormones production, resistance to pathogens, and stress tolerance. These effects of the potentially beneficial microbes have been used in a diversity of biotechnological approaches to improve crop performance applying individual bacterial cultures. However, healthy plants host a diversity of microorganisms (microbiota). Next-generation sequencing technologies have offered insights into the relative abundances of different phylogenetic groups in a community and the metabolic and physiological potential of its members. In the last decade, researchers have started to explore the possibilities to use temporal and functional combinations of those bacteria in the form of synthetic communities. In this chapter, we review the benefits of using endophytic bacteria in legumes, the available methodological approaches to study the effects of bacterial communities, and the most recent findings using synthetic communities to improve the performance of legume crops. | eng |
dc.format | application/pdf | es_AR |
dc.language.iso | eng | es_AR |
dc.publisher | IntechOpen | es_AR |
dc.relation | info:eu-repograntAgreement/INTA/2019-PD-E4-I069-001/2019-PD-E4-I069-001/AR./Bioprospección y caracterización de microorganismos benéficos para la protección y producción vegetal | es_AR |
dc.relation | info:eu-repograntAgreement/INTA/2019-PE-E6-I127-001/2019-PE-E6-I127-001/AR./Mejoramiento genético de soja, girasol y oleaginosas invernales en calidad y valor agregado, productividad, y estabilidad y plasticidad ante estreses bióticos y abióticos | es_AR |
dc.relation | info:eu-repograntAgreement/INTA/2019-PE-E6-I516-001/2019-PE-E6-I516-001/AR./Mejoramiento genético y desarrollo de ideotipos de cultivos industriales (CI) caña, maní, yerba, mandioca, stevia, quinua y te para sistemas productivos resilientes | es_AR |
dc.rights | info:eu-repo/semantics/openAccess | es_AR |
dc.rights.uri | http://creativecommons.org/licenses/by-nc-sa/4.0/ | |
dc.source | Legumes - Volume 1 / editors: Jimenez-Lopez Jose Carlos, Clemente Alfonso. IntechOpen, 2022. p. 1-36 | es_AR |
dc.subject | Sustainable Agriculture | eng |
dc.subject | Abiotic Stress | eng |
dc.subject | Biotic Stress | e |
dc.subject | Food Security | eng |
dc.subject | Agricultura Sostenible | es_AR |
dc.subject | Estrés Abiótico | es_AR |
dc.subject | Estrés Biótico | es_AR |
dc.subject | Seguridad Alimentaria | es_AR |
dc.subject | Endofitas | es_AR |
dc.subject | Leguminosas | es_AR |
dc.subject.other | Abiotic and Biotic Stresses Protection | eng |
dc.subject.other | Endophytic Bacteria | eng |
dc.subject.other | Synthetic Communities | eng |
dc.title | Synthetic Communities of Bacterial Endophytes to Improve the Quality and Yield of Legume Crops | es_AR |
dc.type | info:ar-repo/semantics/parte de libro | es_AR |
dc.type | info:eu-repo/semantics/bookPart | es_AR |
dc.type | info:eu-repo/semantics/acceptedVersion | es_AR |
dc.rights.license | Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0) | |
dc.description.origen | Instituto de Patología Vegetal | es_AR |
dc.description.fil | Fil: Monteoliva, Mariela Ines. Instituto Nacional de Tecnología Agropecuaria (INTA). Instituto de Fisiología y Recursos Genéticos Vegetales; Argentina | es_AR |
dc.description.fil | Fil: Monteoliva, Mariela Ines. Consejo Nacional de Investigaciones Científicas y Técnicas. Unidad de Estudios Agropecuarios (UDEA) ; Argentina | es_AR |
dc.description.fil | Fil: Valetti, Lucio. Instituto Nacional de Tecnología Agropecuaria (INTA). Instituto de Patología Vegetal; Argentina | es_AR |
dc.description.fil | Fil: Valetti, Lucio. Consejo Nacional de Investigaciones Científicas y Técnicas. Unidad de Fitopatología y Modelización Agrícola (UFyMA); Argentina | es_AR |
dc.description.fil | Fil: Taurian, Tania. Universidad Nacional de Río Cuarto (UNRC). Facultad de Ciencias Exactas, Físico-Químicas y Naturales. Departamento de Ciencias Naturales; Argentina | es_AR |
dc.description.fil | Fil: Taurian, Tania. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Investigaciones Agrobiotecnológicas; Argentina | es_AR |
dc.description.fil | Fil: Crociara, Clara Sonia. Consejo Nacional de Investigaciones Científicas y Técnicas. Unidad de Fitopatología y Modelización Agrícola (UFyMA); Argentina | es_AR |
dc.description.fil | Fil: Crociara, Clara Sonia. Instituto Nacional de Tecnología Agropecuaria (INTA). Instituto de Patología Vegetal; Argentina | es_AR |
dc.description.fil | Fil: Guzzo, María Carla. Instituto Nacional de Tecnología Agropecuaria (INTA). Instituto de Fisiología y Recursos Genéticos Vegetales; Argentina | es_AR |
dc.description.fil | Fil: Guzzo, María Carla. Consejo Nacional de Investigaciones Científicas y Técnicas. Unidad de Estudios Agropecuarios (UDEA) ; Argentina | es_AR |
dc.subtype | libro |
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