Animal Nutrition and Feed Technology
SCOPUS
  • Year: 2013
  • Volume: 13
  • Issue: 3

Influence of Exogenous Enzymes on In Vitro Ruminal Degradation of Ensiled Rice Straw with DDGS#

  • Author:
  • H.M. Gado1, A.Z.M. Salem, L.M. Camacho2, M.M.Y. Elghandour, M.C. Salazar2
  • Total Page Count: 6
  • Page Number: 569 to 574

1Department of Animal Production, Faculty of Agriculture, Ain Shams University, Cairo, Egypt

2Facultad de Medicina Veterinaria y Zootecnia, Carretera Altamirano-Iguala, Km3 CP40660, Cd. Altamirano Guerrero, México

Facultad de Medicina Veterinaria y Zootecnia, Universidad Autónoma del Estado de México, Estado de México, México

*Corresponding author: asalem70@yahoo.com

#This paper is part of the special issue entitled: Exogenous Enzymes in Animal Nutrition - Benefits and Limitations, Guest Edited by A.Z.M. Salem and N. Odongo, and Editor for Animal Nutrition and Feed Technology, A.K. Pattanaik

Abstract

The objective of this study was to determine the effect of exogenous enzymes (ENZ) on nutrient profile and ruminal degradability of rice straw (RS), distillers dried grains with solubles (DDGS) and their mixture (RS with 10% DDGS). Ten samples of each fibrous feed were mixed with ZAD® (mixture of cellulases, xylanaxes, proteases and alpha amylase). ENZ was added at 0, 1 and 3 L to one ton of the fibrous feeds and the mixture was ensiled for 30 days. Feed samples were incubated for 72 h in rumen liquor of sheep to determine the degradability of DM, NDF and ADF. Pretreatment of feeds and their mixture (RS and DDGS) with ENZ at 3 L were increased (P<0.01) the degradation of NDF and ADF. Degradation fractions (a, b, (a+b) and c) of feeds were improved (P<0.01) at 3 L of ENZ, except the c of NDF and ADF of RS which were not affected by ENZ treatment. The results suggested a strong potential in improving digestion of RS and DDGS as well as their mixture with the pretreatment with ENZ. The dose of 3 L/ton of fibrous product improved the DM, NDF and ADF degradability.

Keywords

DDGS, Degradability, Exogenous enzymes, Fiber fractions, Rice straw