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Prospects for the Analysis and Reduction of Damaging Behaviour in Group-Housed Livestock, With Application to Pig Breeding

  • Laurianne Canario
  • , Piter Bijma
  • , Ingrid David
  • , Irene Camerlink
  • , Alexandre Martin
  • , Wendy Mercedes Rauw
  • , Loic Flatres-Grall
  • , Lisette van der Zande
  • , Simon P. Turner
  • , Catherine Larzul
  • , Lotta Rydhmer

    Publication: Contribution to journalReview articlepeer-review

    Abstract

    Innovations in the breeding and management of pigs are needed to improve the performance and welfare of animals raised in social groups, and in particular to minimise biting and damage to group mates. Depending on the context, social interactions between pigs can be frequent or infrequent, aggressive, or non-aggressive. Injuries or emotional distress may follow. The behaviours leading to damage to conspecifics include progeny savaging, tail, ear or vulva biting, and excessive aggression. In combination with changes in husbandry practices designed to improve living conditions, refined methods of genetic selection may be a solution reducing these behaviours. Knowledge gaps relating to lack of data and limits in statistical analyses have been identified. The originality of this paper lies in its proposal of several statistical methods for common use in analysing and predicting unwanted behaviours, and for genetic use in the breeding context. We focus on models of interaction reflecting the identity and behaviour of group mates which can be applied directly to damaging traits, social network analysis to define new and more integrative traits, and capture-recapture analysis to replace missing data by estimating the probability of behaviours. We provide the rationale for each method and suggest they should be combined for a more accurate estimation of the variation underlying damaging behaviours.
    Original languageEnglish
    Article number611073
    Number of pages19
    JournalFrontiers in Genetics
    Volume11
    DOIs
    Publication statusPublished - 2020

    Keywords

    • aggression
    • genetics
    • savaging
    • social interactions
    • Sus scrofa
    • model
    • breeding
    • tail biting

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