Biological Robustness of Pigs

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Biological Robustness of Pigs Jan ten Napel Background Global trends in pig production Reduced margins Scale enlargement Less skilled labour available per animal Increased genetic potential for production Increasingly vulnerable to fluctuations in price Increasing concern for health & welfare problems Health & welfare problems Health & welfare problems Perception of the general public Problems are substantial Problems are associated with lack of robustness Lack of robustness is a breeding problem Pig farmers & veterinarians Robustness is irrelevant (for existing production systems) Protect pigs from threats & challenges! Pig breeding industry There is a need to resolve certain problems No need for over-all concept of robustness Scientists Academic discussion on meaning of robustness Policy makers Need for more sustainable pig industry (triple-p) Role for robust stock, but not clear how Dilemma: much talk, no progress Objective Conflicting interests and views Economic pressure Time horizons do not match No shared concept of causes and possible solutions to health & welfare problems There is a need for a structured discussion! 1. Provide a conceptual framework for keeping animals in balance with their 2. Apply this concept to pig production 1

High In balance with its Protection Low Pig and out of balance Pig and in balance The pig responds to a challenge and regains its homeostasis through adapting Stable at the surface, but dynamic below the surface In balance is not the same as insensitive Need to define range of threats and s Acceptable and profitable production systems Normally occurring disturbances Acceptable and normally are to be agreed on by all parties Low Robustness High A robust pig Maintaining homeostasis Genetic potential Ability to cope Support at the right time is structurally in balance with its in the normally occurring dynamics of acceptable and profitable production systems Experience Physiological State Restrict Threat Successful coping exposure Successfully coping with exposure to threats Protecting or allowing to cope successfully is a precondition, but not a guarantee of successfully coping with exposure Enable the pig to cope successfully where possible, in case a threat should occur System & management play a role at four levels Protect pig from threats Allow pig to adapt by providing support Allow pig to learn by doing Avoid temporary vulnerability (stress, overburdening) Support the pig in its attempts to adapt when the threat occurs Protect the pig from threats where it is easy or necessary 2

Problems associated with robustness of pigs Infectious diseases: current situation Infectious diseases Overburdening Metabolism & circulation Feet, legs, joints and muscles Behavioural pathologies Outbreaks of infectious diseases are a significant problem Diseases rarely fade away on a unit No evidence for increase in general sensitivity Potential impact is greater because of scale enlargement Infectious diseases: threats Infectious diseases: solutions I All ages at any point in time & high density Chronic stress suppresses immune response Hypothetically through resource allocation problems High rate of inbreeding may increase sensitivity to a specific disease Optimal biosecurity Crossbreeding Selection against any specific disease is possible Vaccination Natural exposure with protection Stable microflora Infectious diseases: solutions II Overburdening: current situation Increased ambient temperature (micro-climates?) Change of feed? Avoiding chronic stress Avoiding draught or being too cold Problems vary somewhat per line Metabolism & circulation Negative E and N balance, heart failure, low appetite, etc Not a substantial problem in pigs Conformation Problems with feet, legs, joints, muscle, back, etc Significant problem in pigs 3

Overburdening: threats Overburdening: solutions I High ambient temperatures Sub-optimal management Poor feed quality Poor housing facilities Hypothetically through resource allocation problems Strong selection for growth efficiency and milk production in favourable may increase sensitivity Adhere to minimum standards for housing, feeding and management Artificial selection on indicator traits Natural selection in representative selection Hypothetically: rearing & production in similarly challenging s Overburdening: solutions II Behaviour & chronic stress: current situation Improve conditions to relieve pressure on pig Protect pigs with a disease or injury Protect pigs in periods of peak demands Problems are substantial in most common production systems Behavioural pathologies Tail-biting Bar-chewing Chronic stress response: elevated cortisol levels Interpretation: arise from frustration Not being allowed to adapt Not being allowed to express behavioural needs Behaviour & chronic stress: threats Behaviour & chronic stress: solutions I Overstocking One single climate Indirect: inability to adapt because of painful feet or joints Indirect effect on coping style and fearfulness (hypothesis) Remove chronic nature of stressors Artificial selection against damaging behaviour Risk of selection for insensitivity to poor housing and management Allow the pig during rearing to get used to adapting to changes 4

Behaviour & chronic stress: solutions II Be aware Improve conditions to allow successful adaptation Protect pigs with a disease or injury Protect pigs in periods of peak demands This is an illustration of a concept as starting point of meaningful discussion Many aspects are hypotheses and need further study Many aspects require re-design of production systems for utilisation of robustness of pigs Utilising robust pigs can contribute to a more robust pig herd and pig industry, but no guarantee Conclusions Conclusions Utilising robust pigs is a problem of both potential and expression Aim is not robustness but structural balance Main areas are infectious diseases, overburdening and chronic stress Environment plays a role in keeping the balance in four different ways A robust pig Has the genetic potential to deal with challenges effectively Has learned to use its genetic potential effectively Is enabled to use its ability and experience whenever it is required A thank-you to Luc Janss Kees van Reenen Bas Kemp Karel de Greef among others for discussion 5