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Zinc fate in animal husbandry systems.

A Romeo, V Vacchina, S Legros, E Doelsch
Review Metallomics : integrated biometal science 2014 25 citations
PubMed DOI
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Study Design

Type d'étude
Review
Population
Livestock animals
Intervention
Zinc fate in animal husbandry systems. None
Comparateur
None
Critère de jugement principal
Zinc fate and environmental impact in animal production
Direction de l'effet
Neutral
Risque de biais
Unclear

Abstract

Zinc (Zn) is considered in animal production systems as both an essential nutrient and a possible pollutant. While it is generally supplemented at low levels in animal diets, with less than 200 mg kg(-1) in complete feeds, it is under scrutiny due to potential accumulation in the environment. This explains why international regulations limit maximum supplementation levels in animal feeds in a stricter way. This article gives an overview of the current knowledge on the fate of zinc in animal production systems, from animal diets to animal wastes. Some analytical methods can be used for the quantification and qualification of Zn chemical forms: X-ray crystallography, electrospray tandem mass spectrometry, separation techniques, hyphenated techniques… Analysis of chelated forms issued from complex matrices, like hydrolysed proteins, remains difficult, and the speciation of Zn in diluted carriers (premix and feed) is a challenge. Our understanding of Zn absorption has made progress with recent research on ZnT/Zip families and metallothioneins. However, fine-tuned approaches towards the nutritional and metabolic interactions for Zn supplementation in farm conditions still require further studies. The speciation of zinc in pig manure and poultry litter has been a priority as monogastric animals are usually raised under intensive conditions and fed with high quantities of trace minerals, leading to high animal density and elevated quantities of zinc from animal wastes.

En bref

The understanding of Zn absorption has made progress, and fine-tuned approaches towards the nutritional and metabolic interactions for Zn supplementation in farm conditions still require further studies, according to an overview of the current knowledge on the fate of zinc.

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