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Low Protein Diets Reduce Nitrogen Emissions
2012-07-13

Feeding low protein diets to pigs can reduce nitrogen excretion, new research has found. This is encouraging for pig producers who will come under increasing pressure to reduce nitrogen emissions, although the impact on growth and fat deposition must also be taken into account.

photo © Jennifer MacKenzie

pigs

Three different diets were fed to finisher pigs of a lean genotype, between 40kg and 115kg, and pig growth and carcase quality were measured. A high-protein, standard commercial diet was compared with two low-protein diets: one (LP1) which reduced nitrogen intake by 11% while maintaining dietary amino acid levels and the other (LP2) which reduced nitrogen intake by 16% but did not maintain essential amino acids in the later stages of growth.

Growth measurements showed that growth rate for pigs fed the LP1 diet was the same as the standard commercial diet but feed conversion was slightly worse.

Professor Jeff Wood from the University of Bristol explained: “This was due to slightly greater fat deposition, especially within-muscle fat which creates marbling. Growth rate was lower in LP2 pigs and they also became much fatter.

“Both LP1 and LP2 regimes would cost producers more than typical higher-protein diets at present because of the higher cost of fortifying the diets using amino acids and the poorer growth performance, especially with LP2.”

“However, tighter controls on nitrogen emissions in the future may mean pig producers will need to make use of this knowledge and alter feeding regimes. And, given the LP2 diet was shown to improve pork eating quality, greater incentives for quality would make this regime more attractive.”

It may also be possible to reduce nitrogen intakes even more in the future and lower the cost of these diets.

For more information, visit the BPEX website: www.bpex.org.uk/R-and-D/R-and-D/Lowproteindiets.aspx

This research was jointly funded by Defra’s Sustainable Livestock Production LINK programme and the following project partners: University of Bristol (BU), Scottish Agricultural College (SAC), BPEX, QMS, JSR Genetics, Tulip Ltd, ABN and Forum Products.

link Kiotechagil Improves Neutox Integrated Mycotoxin Elimination System
link Wetter than Milk! Beware the Impact of Wet Grass on Dairy Cows
link Optivite Ultrabond: Effective Protection Against Mycotoxins

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