Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.11960/4761
Title: Spineless Cactus (Opuntia stricta and Nopalea cochenillifera) with added sugar cane (Saccharum officinarum) bagasse silage as bovine feed in the brazilian semi-arid region
Authors: Torquato, Iran Alves
Costa, Cleber Thiago Ferreira
Jesus, Meirielly
Mata, Fernando
Santos, Joana
Santana, Hortência E. Pereira
Silva, Daniel Pereira
Ruzene, Denise Santos
Keywords: Animal nutrition
Cumulative gas production
Feed
Forage cactus
Semi-arid
Silage
Sugarcane bagasse
Issue Date: 2025
Citation: Torquato, I. A., Costa, C. T. F., Jesus, M. S., Mata, F., Santos, J., Santana, H. E. P., Silva, D. P., & Ruzene, D. S. (2025). Spineless Cactus (Opuntia stricta and Nopalea cochenillifera) with added sugar cane (Saccharum officinarum) bagasse silage as bovine feed in the brazilian semi-arid region. Ruminants, 5(3), Artigo e37. https://doi.org/10.3390/ruminants5030037
Abstract: The success of optimal ruminant production relies heavily on feed efficiency to deliver the necessary nutrients to animals. Nutritional deficiencies in livestock pose a significant challenge in regions experiencing prolonged fluctuations in resource availability and quality. In this context, the present study aimed to investigate the cumulative gas production (CGP) and in vitro degradability of silages made from spineless forage cactus (a native species) combined with high-fiber ingredients, to evaluate their viability as a sustainable, low-cost alternative to animal feed. The experiment involved ensiling spineless cactus genotypes with varying levels of sugarcane bagasse (0, 150, 300, 450, and 600 g/kg of dry matter) and a 1% urea–ammonium sulfate solution. The results indicated that for all genotypes studied, the CGP curves from silage composed solely of forage cactus differed significantly from those containing bagasse, which exhibited an initial phase characterized by little or no gas production. In vitro degradability was negatively influenced by the inclusion of bagasse at any level, resulting in decreased dry matter and organic matter degradability, as well as reduced CGP with increasing bagasse concentration. Therefore, the study demonstrated that the proposed combination of ingredients represents a promising sustainable feed supplement to enhance animal nutrition. Silage containing 150 g/kg of bagasse treated with urea offers a favorable balance between the energy required by rumen microflora and the benefits of fiber presence.
URI: http://hdl.handle.net/20.500.11960/4761
ISSN: 2673-933X
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ESTG - Publicações indexadas à WoS/Scopus

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