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Thermal conditioning of quail embryos has transgenerational and reversible long-term effects

摘要Background In the current context of global warming,thermal manipulation of avian embryos has received increasing attention as a strategy to promote heat tolerance in avian species by simply increasing the egg incubation temperature.However,because of their likely epigenetic origin,thermal manipulation effects may last more than one generation with consequences for the poultry industry.In this work,a multigenerational and transgenerational analysis of thermal manipulation during embryogenesis was performed to uncover the long-term effects of such procedure.Results Thermal manipulation repeated during 4 generations had an effect on hatchability,body weight,and weight of eggs laid in Japanese quails,with some effects increasing in importance over generations.Moreover,the effects on body weight and egg weight could be transmitted transgenerationally,suggesting non-genetic inheritance mechanisms.This hypothesis is reinforced by the observed reversion of the effect on growth after five unexposed generations.Interestingly,a beneficial effect of thermal manipulation on heat tolerance was observed a few days after hatching,but this effect was not transgenerational.Conclusions Our multigenerational study showed that thermal conditioning of quail embryos has a beneficial effect on post-hatch heat tolerance hampered by transgenerational but reversible defects on growth.Assuming that no genetic variability underlies these changes,this study provides the first demonstration of epigenetic inherit-ance of traits induced by environmental temperature modification associated with long-term impacts in an avian species.

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作者 Ana?s Vitorino Carvalho [1] Christelle Hennequet-Antier [2] Romuald Rouger [3] Jo?l Delaveau [4] Thierry Bordeau [5] Sabine Crochet [5] Nathalie Couroussé [5] Frederique Pitel [6] Anne Collin [5] Vincent Coustham [7] 学术成果认领
作者单位 INRAE,Université de Tours,BOA,37380 Tours,Nouzilly,France;INRAE,CNRS,IFCE,Université de Tours,PRC,37380 Tours,Nouzilly,France [1] INRAE,Université de Tours,BOA,37380 Tours,Nouzilly,France;Université Paris-Saclay,INRAE,MaIAGE,78350 Jouy-en-Josas,France;INRAE,BioinfOmics,Université Paris-Saclay,MIGALE Bioinformatics Facility,78350 Jouy-en-Josas,France [2] SYSAAF,37380 Nouzilly,France [3] INRAE,PEAT,37380 Nouzilly,France [4] INRAE,Université de Tours,BOA,37380 Tours,Nouzilly,France [5] INRAE,INPT,ENVT,Université de Toulouse,GenPhySE,31326 Castanet-Tolosan,France [6] INRAE,Université de Tours,BOA,37380 Tours,Nouzilly,France;INRAE,Université de Pau & Pays de L'Adour,NuMeA,E2S UPPA,Aquap?le,64310 Saint-Pée-Sur-Nivelle,France [7]
DOI 10.1186/s40104-023-00924-2
发布时间 2023-12-26(万方平台首次上网日期,不代表论文的发表时间)
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畜牧与生物技术杂志(英文版)

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