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. 2018 Mar;31(3):379-385.
doi: 10.5713/ajas.17.0205. Epub 2017 Oct 20.

Sugarcane bagasse as exclusive roughage for dairy cows in smallholder livestock system

Affiliations

Sugarcane bagasse as exclusive roughage for dairy cows in smallholder livestock system

Gleidiana Amélia Pontes de Almeida et al. Asian-Australas J Anim Sci. 2018 Mar.

Abstract

Objective: The study aimed to evaluate sugarcane bagasse as roughage in lactating cow on feed intake, digestibility, ingestive behavior, milk production and composition, and microbial protein synthesis.

Methods: Ten Girolando cows at initial body weight of 450±25.6 kg and at 143.7±30.7 days in milk were assigned in two 5×5 Latin square designs. Five 21-day experimental periods were adopted (1° to 14-day: diets adaptation period; 15° to 21-day: data collection and sampling period). The diets consisted of four different levels of sugarcane bagasse (45%, 50%, 55%, and 60%) and a control diet, commonly adopted in the region, based on spineless cactus (25% sugarcane bagasse), formulated to meet 12 kg/d milk yield.

Results: The dry matter (DM), organic matter (OM), and total digestible nutrients intakes and DM and OM digestibilities observed for 45% and 50% bagasse inclusion were similar to control diet, while that 55% and 60% bagasse inclusion were lower. Cows fed control diet, and bagasse diets of 45%, and 50% levels had the nutritional requirements attended, that guaranteed 12 kg/d of milk yield. The crude protein intake and digestibility of cows fed 45%, 50%, and 55% of bagasse inclusion were similar to control diet. The neutral detergent fiber (NDF) intake and digestibility differ for all bagasse diets related to control diet, while the non-fiber carbohydrates intake and digestibility for cows fed 45% of bagasse were similar for control diet. The intakes and digestibilities of nutrients decreased linearly in function of bagasse inclusion; NDF and indigestible NDF intakes did not vary. The ruminating time, feeding and rumination efficiency, microbial protein synthesis and milk yield decreased linearly with sugarcane bagasse inclusion.

Conclusion: Sugarcane bagasse decreases milk production; however, its inclusion level in between 45% to 50% associated to concentrate could replace diets based on spineless cactus for crossbred dairy cow's producing 12 kg/d of milk.

Keywords: Alternative Roughage; Crossbred Dairy Cattle; Drought Season; Livelihoods; Microbial Protein.

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Conflict of interest statement

CONFLICT OF INTEREST

We certify that there is no conflict of interest with any financial organization regarding the material discussed in the manuscript.

References

    1. MDA – Ministério da Agricultura Familiar e do Desenvolvimento Agrário [Internet] UN reforces smallholder livestock system importance to the world. 2014 [cited 2017 Mar 15]. Available from: http://www4.planalto.gov.br/consea/comunicacao/noticias/2014/onu-reforca....
    1. Ben Salem H. Nutritional management to improve sheep and goat performances in semiarid regions. R Bras Zootec. 2010;39:337–47. (supl. especial)
    1. FAO (Food and Agriculture Organization) [Internet] Drylands, people and land use. 2008 [cited 2017 Mar 14]. Available from: http://www.fao.org/docrep/012/i0372e/i0372e01.pdf.
    1. Ferreira MA, Silva RR, Ramos AO, et al. Microbial protein synthesis and urea concentration for cows fed diets based on spineless cactus and different forages. R Bras Zootec. 2009;38:159–65.
    1. Hofsetz K, Silva MA. Brazilian sugarcane bagasse: Energy and non-energy consumption. Biomass Bioenergy. 2012;46:564–73.

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