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RESEARCH ARTICLE

Rumen degradability characteristics of five starch-based concentrate supplements used on Australian dairy farms

R. P. McDonnell A C , M. vH. Staines A , M. L. Douglas B , M. J. Auldist B , J. L. Jacobs B and W. J. Wales B
+ Author Affiliations
- Author Affiliations

A Western Dairy Research Development & Extension Hub, Verschuer Place, Bunbury, WA 6230, Australia.

B Agriculture Research Division, Department of Economic Development, Jobs, Transport and Resources, Ellinbank, Vic. 3821, Australia.

C Corresponding author. Email: Ruairi.mcdonnell@westerndairy.com.au

Animal Production Science 57(7) 1512-1519 https://doi.org/10.1071/AN16466
Submitted: 19 July 2016  Accepted: 21 December 2016   Published: 23 February 2017

Abstract

This experiment compared the rumen degradability characteristics of five starch-based concentrate supplements used by Western Australia (WA) dairy producers. Six rumen-fistulated, non-lactating, Holstein-Friesian cows were used to measure the in sacco rumen degradability of maize grain, oats, wheat, sodium hydroxide-treated wheat (NaOH wheat) and Maximize® (a commercial pellet commonly used by WA dairy producers). Cows were offered a basal diet of custom-made cubes (60 : 40 lucerne hay : wheat grain) at maintenance feeding level. Rumen disappearance of dry matter (DM), starch and crude protein was determined for each concentrate at 0, 1, 2, 4, 8, 16, 24, 36, 48 and 72 h, and fitted to an exponential model to estimate degradation kinetics. Effective degradability coefficients were then calculated at three rumen solid-outflow rates (0.02, 0.05 and 0.08/h). Degradability of DM at 0.08/h was lowest (P < 0.001) in maize grain (0.64) and oats (0.68) and greatest in wheat (0.83), with that in NaOH wheat (0.80) and Maximize (0.76) being intermediate. Starch degradability at 0.08/h was also lowest (P < 0.001) in maize grain (0.70), intermediate for NaOH wheat (0.83) and Maximize (0.87), and greatest for wheat (0.96) and oats (0.98). Degradability of crude protein was lowest (P = 0.001) in Maximize (0.66) and NaOH wheat (0.69), greatest in oats (0.85), with that in maize grain (0.72) and wheat (0.79) being intermediate. For producers where availability of maize grain for dairy cow rations is limited, such as in WA, these results indicated that NaOH wheat and Maximize may be considered as alternative starch sources to increase post-ruminal digestion of starch, although the magnitude of this increase will still not be as great as for maize grain.

Additional keywords: maize grain, Maximize, oats, sodium hydroxide, wheat.


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