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Revista Colombiana de Biotecnología

versão impressa ISSN 0123-3475

Resumo

CRUZ RAMIREZ, Carlos Alberto; GOMEZ RAMIREZ, Luis Fernando  e  URIBE-VELEZ, Daniel. Bio-based management of rice straw under different C:N ratios using microbial consortia and plant growth promoters. Rev. colomb. biotecnol [online]. 2017, vol.19, n.2, pp.47-62. ISSN 0123-3475.  https://doi.org/10.15446/rev.colomb.biote.v19n2.70168.

Rice straw is one of the most abundant lignocellulosic agricultural residues on the world, after residues produced by maize and wheat crops, with an estimated global production of 1000 million tones according to FAO statistics. In the context of modern agriculture, it is essential to achieve an environmentally sustainable management of this resource, through the incorporation of rice straw into the soil, in order to achieve nutrient recycling avoiding the incorporation of pathogens into the system and the losses of nitrogen due to soil microbial biomass immobilization. In this context, the objective of this work consisted in the evaluation of a mixed microbial inoculum with degrading potential of rice straw from commercial products based on the fungus Trichoderma spp. and aerobic endospore forming bacteria. It was also used a plant growth promoting bacteria at the time of planting, in order to take advantage of nutrients released from RS decomposition and improve its biological activity. These microbial treatments, were evaluated at different concentrations of inorganic nitrogen amendments that allowed different levels of rice straw´s C:N ratio, favoring the degradation process. Overall results allowed to identify that the application of a nitrogen amendment to rice straw up to C:N 35, plus an additional dose of urea at the time of rice seeds planting, was the most adequate treatment to potentiate the effect of the microorganisms and to increase or maintain the agronomic variables obtained through a conventional fertilization management of the crop.

Palavras-chave : Rice straw; C:N ratio; Trichoderma spp; nutrient recycling; rice growth promotion.

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