Abstract

Features of intensive farming can seriously threaten pig homeostasis, well-being and productivity. Disease tolerance of an organism is the adaptive ability in preserving homeostasis and at the same time limiting the detrimental impact that infection can inflict on its health and performance without affecting pathogen burden per se. While disease resistance (DRs) can be assessed measuring appropriately the pathogen burden within the host, the tolerance cannot be quantified easily. Indeed, it requires the assessment of the changes in performance as well as the changes in pathogen burden. In this paper, special attention is given to criteria required to standardize methodologies for assessing disease tolerance (DT) in respect of infectious diseases in pigs. The concept is applied to different areas of expertise and specific examples are given. The basic physiological mechanisms of DT are reviewed. Disease tolerance pathways, genetics of the tolerance-related traits, stress and disease tolerance, and role of metabolic stress in DT are described. In addition, methodologies based on monitoring of growth and reproductive performance, welfare, emotional affective states, sickness behavior for assessment of disease tolerance, and methodologies based on the relationship between environmental challenges and disease tolerance are considered. Automated Precision Livestock Farming technologies available for monitoring performance, health and welfare-related measures in pig farms, and their limitations regarding DT in pigs are also presented. Since defining standardized methodologies for assessing DT is a serious challenge for biologists, animal scientists and veterinarians, this work should contribute to improvement of health, welfare and production in pigs.

Highlights

  • Features of intensive farming can seriously threaten pig homeostasis, causing diseases that are mainly infectious

  • To describe how animals cope with these challenges, four related theoretical concepts are used: robustness (Ro), disease resilience (DRe), disease resistance (DRs) and disease tolerance (DT)

  • Discussion of breeding for Dre or DT in selection of pigs for improved coping with health and environmental challenges can be found in the paper by Guy et al [23]

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Summary

Methodologies for Assessing Disease Tolerance in Pigs

Edited by: Massimo Amadori, Istituto Zooprofilattico Sperimentale della Lombardia e dell’Emilia Romagna Bruno Ubertini (IZSLER), Italy. Disease tolerance of an organism is the adaptive ability in preserving homeostasis and at the same time limiting the detrimental impact that infection can inflict on its health and performance without affecting pathogen burden per se. While disease resistance (DRs ) can be assessed measuring appropriately the pathogen burden within the host, the tolerance cannot be quantified . It requires the assessment of the changes in performance as well as the changes in pathogen burden. Special attention is given to criteria required to standardize methodologies for assessing disease tolerance (DT) in respect of infectious diseases in pigs. Since defining standardized methodologies for assessing DT is a serious challenge for biologists, animal scientists and veterinarians, this work should contribute to improvement of health, welfare and production in pigs

Disease Tolerance in Pigs
INTRODUCTION
CONCEPTS AND DEFINITIONS OF DISEASE TOLERANCE
CONCEPTUAL FRAMEWORK FOR ASSESSING DISEASE TOLERANCE IN PIGS
Genetic biomarkers for disease tolerance
Genetic Biomarkers for Disease Tolerance
Environmental Challenges and Disease Tolerance
Stress and Disease Tolerance
Understanding the relationship between different production parameters and DT
Automated Precision Livestock Farming technologies and their limitations
CONCLUSIONS
AUTHOR CONTRIBUTIONS
Full Text
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