2019
DOI: 10.29312/remexca.v10i8.1558
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Inoculación de hongos solubilizadores de fósforo y micorrizas arbusculares en plantas de jitomate

Abstract: La necesidad de reducir el uso de fertilizantes químicos demanda la creación de estrategias alternativas que mantengan una producción vegetal competitiva sin deterioro del ambiente. En este estudio, se evaluó la efectividad de la inoculación de hongos micorrícicos y solubilizadores de fósforo (solos y en consorcios) sobre la micorrización, el contenido de fósforo en la parte aérea, la altura, y longitud de la raíz de las plantas de jitomate. Los tratamientos incluyeron tres cepas de hongos solubilizadores (Asp… Show more

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Cited by 5 publications
(4 citation statements)
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“…The Aspergillus genus comprises several species with different capacities. For example, A. niger has synergistic effects with mycorrhizae, which can promote the growth of tomato plants, since it increases the availability and transport of phosphorus [57]; A. flavus and A. ochraceus apparently protect the orchids Bulbophyllum neilgherrense and Vanda testacea from herbivores [53], and have been evaluated for the production of toxins with an entomopathogenic effect. However, the properties and potential of the endophytic fungi that interact with G. skinneri are still unknown.…”
Section: Discussionmentioning
confidence: 99%
“…The Aspergillus genus comprises several species with different capacities. For example, A. niger has synergistic effects with mycorrhizae, which can promote the growth of tomato plants, since it increases the availability and transport of phosphorus [57]; A. flavus and A. ochraceus apparently protect the orchids Bulbophyllum neilgherrense and Vanda testacea from herbivores [53], and have been evaluated for the production of toxins with an entomopathogenic effect. However, the properties and potential of the endophytic fungi that interact with G. skinneri are still unknown.…”
Section: Discussionmentioning
confidence: 99%
“…Velázquez et al (2005), en plantas de tomate informaron incrementos del 13 % al utilizar Glomus mosseae y Aspergillus niger. Resultados con efectos antagónicos fueron descritos en plantas de maíz y lechuga (McAllister et al 1995), con efectos neutros en frijol caupí (Ramírez-Gil et al 2013), en café (Perea-Rojas et al 2019) y en jitomate (Arias et al 2019). Cabe señalar que en estos últimos utilizaron el mismo consorcio de HMA y la cepa P. brevicompactum.…”
Section: Discussionunclassified
“…Diversos estudios han evidenciado los efectos positivos de las co-inoculaciones de microorganismos solubilizadores de P y HMA en tomate (Velázquez et al 2005), frijol (Zaidi & Khan 2006), trébol (Souchie et al 2006), bambú (Babu & Reddy 2011), anacardo (Rodrigues-Cabral et al 2012, chile (Castillo et al 2013), aguacate (Serna 2013), frijol caupí (Ramírez-Gil et al 2013), garbanzo (Saxena et al 2015), lechuga (Velázquez et al 2017); Coffea arabica (Perea-Rojas et al 2019); jitomate (Arias et al 2019). Sin embargo, otros estudios han reportado efectos negativos (McAllister et al 1995, Gryndler et al 2002 o neutros (Edwards et al 2010).…”
unclassified
“…'La Selva'. Researchers classified the species as moderately dependent on its association with mycorrhizae with 0.002 mg L −1 de P, with a tendency to decrease when there is an increase in the concentration of P in the soil solution [64]. Other researchers such as [65] evaluated the colonization of the mycorrhizae of G. mosseae and E. colombiana in the papaya (Carica papaya L.) var.…”
Section: Mycorrhizal Colonizationmentioning
confidence: 99%