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1.
J. negat. no posit. results ; 7(3): 298-316, Jul-Sep. 2022. ilus, tab
Artigo em Espanhol | IBECS | ID: ibc-209555

RESUMO

El objetivo del presente trabajo es evaluar la microencapsulación de ácidos humícos y fúlvicos para ser empleados en la fertilización a través de la liberación controlada para plantas de ornato con un alto valor comercial, con ello se busca generar una alternativa de reducción en el impacto ambiental provocado por otros tipos de fertilizantes para los mismos fines, es importante mencionar que la producción de plantas de ornato es considerada como una industria que requiere de costos elevados durante su iniciación y mantenimiento, destacando el incremento de costos debido a la utilización de materiales importados tales como: vermiculitas, lana roca, turbas, muzgos, nitrato de potasio, nitrato de calcio y fosfonitratos, se debe tomar en cuenta que los productos comerciales más utilizados para la fertilización han demostrado poseer propiedades fisicoquímicas adecuadas para el desarrollo de los cultivos por lo tanto, el desarrollo de fertilizantes alternativos a los tradicionales habrán de cuidar de manera especial dichos aspectos, además de no ocasionar daño al suelo evitando así la generación de contaminantes residuales.(AU)


The objective of this work is to evaluate the microencapsulation of humic and fulvic acids to be used in fertilization through controlled release for ornamental plants with a high commercial value, thereby seeking to generate an alternative to reduce the impact environmental caused by other types of fertilizers for the same purposes, it is important to mention that the production of ornamental plants is considered as an industry that requires high costs during its initiation and maintenance, highlighting the increase in costs due to the use of imported materials such as: vermiculites, rock wool, peat, muzgos, potassium nitrate, calcium nitrate and phosphonitrate, it should be taken into account that the most used commercial products for fertilization have shown to have adequate physicochemical properties for the development of crops, therefore, the development of alternative fertilizers to the traditional ones will have to take special care of these aspects, in addition to not causing damage to the soil, thus avoiding the generation of residual contaminants.(AU)


Assuntos
Humanos , Composição de Medicamentos , Substâncias Húmicas , Fertilização , Produtos para Jardinagem , Fertilizantes , Meio Ambiente , Importação de Produtos , Matéria Orgânica , Solo , Desenvolvimento Vegetal
2.
Int. microbiol ; 16(2): 69-80, jun. 2013. ilus
Artigo em Inglês | IBECS | ID: ibc-126421

RESUMO

Trichoderma is a fungal genus of cosmopolitan distribution and high biotechnological value, with several species currently used as biological control agents. Additionally, the enzyme systems of the fungus are widely applied in industry. Species of Trichoderma protect plants against the attack of soil-borne plant pathogens by competing for nutrients and inhibiting or killing plant pathogenic fungi and oomycetes, through the production of antibiotics and/or hydrolytic enzymes. In addition to the role of Trichoderma spp. as biocontrol agents, they have other beneficial effects on plants, including the stimulation of plant defenses and the promotion of plant growth. In this review, we focus on the complex plant defense signaling network that allows the recognition of fungi as non-hostile microbes, including microbial-associated molecular patterns (MAMPs), damage associated molecular patterns (DAMPs) and secreted elicitors. We also examine how fungal interactions with plant receptors can activate induced resistance by priming and balancing plant defense and growth responses. Our observations are integrated into a model describing Trichoderma-plant hormone signaling network interactions (AU)


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Assuntos
Trichoderma , Desenvolvimento Vegetal , Plantas/microbiologia , Simbiose , Arabidopsis/crescimento & desenvolvimento , Reguladores de Crescimento de Plantas/análise , Fungos/crescimento & desenvolvimento
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