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在一个为低剩余饲料消耗而选育的品系中引入裸颈基因对温带或亚热带环境下性能的影响。

Effect of introducing the naked neck gene in a line selected for low residual feed consumption on performance in temperate or subtropical environments.

作者信息

Chen C F, Huang N Z, Gourichon D, Lee Y P, Tixier-Boichard M, Bordas A

机构信息

Department of Animal Science, National Chung-Hsing University, Taichung, Taiwan.

出版信息

Poult Sci. 2008 Jul;87(7):1320-7. doi: 10.3382/ps.2008-00002.

Abstract

The aim of this study was to investigate the possibility of combining the naked neck gene with a genetic background that has been optimized for feed efficiency of laying hens at moderate temperature. In 1997, the naked neck gene was introduced into a line selected for low residual feed intake. In 2003, after 6 generations of introgression, 8 males and 56 females heterozygous for the NANA mutation were used to generate all 3 genotypes (NAN/NAN, NANA/NAN, NANA/NANA), in 2 hatches, for rearing in Taiwan and France, respectively, at 3-wk intervals. Growth performance, anatomical traits, laying traits, and feed efficiency were recorded in each country. In addition, comb and rectal temperatures were measured in Taiwan. Performance was generally lower and mortality of laying hens was higher in Taiwan (11%) than in France (1%). Genotype x environment interactions were rare: genotype x environment was observed only for body weight at 10 wk of age and was close to significance for egg weight. The laying performance was significantly decreased in Taiwan by about 25%. The naked neck genotype had a negative effect on body weight and a positive effect of clutch length and egg weight. It also affected heat dissipation traits such as wattle length and rectal and surface temperature measurements. There was a clear additive and negative effect of the NANA mutation on rectal temperature. Feed intake and residual feed intake were increased in the homozygous carriers of the NANA mutation, which may improve heat tolerance of the low residual feed consumption (R-) line. Feed efficiency tended to be better in NANA/NANA hens in both environments. Thus, the introduction of the NANA mutation in the R- background appeared to be favorable from the viewpoint of feed efficiency, but it did not improve laying performance in a subtropical environment. Other factors than temperature, such as diet composition and lighting regimen, may be involved.

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