Rumen Solubility of Copper, Manganese and Zinc and the Potential Link between the Source and Rumen Function: A Systematic Review

Author:

Vigh Antal1ORCID,Criste Adriana Dalila1ORCID,Corcionivoschi Nicolae234ORCID,Gerard Christine5ORCID

Affiliation:

1. Faculty of Animal Science and Biotechnologies, University of Agricultural Sciences and Veterinary Medicine, 400372 Cluj-Napoca, Romania

2. Bacteriology Branch, Veterinary Sciences Division, Agri-Food and Biosciences Institute, Belfast BT4 3SD, UK

3. Faculty of Bioengineering of Animal Resources, University of Life Sciences King Mihai I from Timisoara, 300645 Timisoara, Romania

4. Academy of Romanian Scientists, Ilfov Street, No. 3, 050044 Bucharest, Romania

5. SIPENA, 35400 Saint-Malo, France

Abstract

The dietary inclusion of trace minerals (TMs), such as copper (Cu), manganese (Mn) and zinc (Zn), is of importance to cover the ever-evolving requirements for growth, production and reproduction in ruminants. Various sources of TMs are commercially available, such as inorganic (ITM), organic (OTM) or hydroxy (HTM) forms; however, their bioavailability and efficiency to improve ruminant zootechnical parameters may be highly influenced by ruminal solubility and effects on the rumen environment. The objective of this review was to compile the most up-to-date information on the ruminal solubility of ITMs, OTMs and HTMs and their effects on fermentation parameters and rumen microbiota, aiming to support specialists from the animal feed industry when choosing TM products for ruminant supplementation. Some commonly used ITM sources, like sulfates, have a high ruminal solubility, while oxides are less soluble. The ruminal solubility of OTMs is mostly found to be high; however, data on these TM forms are still lacking. Regarding HTMs, ruminal solubility is reported to be low; nevertheless, results are inconsistent. Considering rumen fermentation, ITMs show a negative effect, OTMs might improve, while HTMs do not affect parameters like dry matter degradability, volatile fatty acid production, pH or microbial protein synthesis. As for rumen microbiota, ITMs do not affect microbial populations; OTMs could decrease the abundance of some specific bacteria, like fibrolytic microorganisms, while studies with HTMs are missing or inconclusive. Further research is necessary to better understand the ruminal solubility kinetics of TM sources and the different interactions with fermentation parameters and rumen microbiota to successfully apply the precision TM supplementation of ruminants, tackling deficiency occurrences.

Funder

Romanian Ministry of Research and Innovation

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference70 articles.

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2. Byrne, L., and Murphy, R.A. (2022). Relative Bioavailability of Trace Minerals in Production Animal Nutrition: A Review. Animals, 12.

3. Noziere, P., Sauvant, D., and Delaby, L. (2018). Inra, 2018. Alimentation des Ruminants, Editions Quae.

4. National Academies of Sciences, Engineering (2021). Medicine Nutrient Requirements of Dairy Cattle: Eighth Revised Edition, The National Academies Press.

5. Trumeau, D. (2014). Les Oligo-Éléments En Élevage Bovin. Analyse Descriptive Des Profils Métaboliques En Oligo-Éléments Établis En Laboratoire d’analyse et Liens Avec Les Aspects Cliniques. [Ph.D. Thesis, ONIRIS].

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