Department of Poultry Science, University of Georgia, Athens 30602, USA.
Poult Sci. 2010 Nov;89(11):2351-5. doi: 10.3382/ps.2010-00870.
A random-mating population was used to study the genetic interrelationship between phytate P (PPB), Ca (CaB), N (NB), and energy bioavailability (EB), BW at 4 wk of age, relative growth (RG), and feed conversion ratio (FCR). Heritability estimates for PPB, CaB, NB, and EB were 0.09, 0.13, 0.16, and 0.10, respectively, and those of BW, RG, and FCR were 0.66, 0.15, and 0.10, respectively. Genetic correlations between PPB and BW, and FCR were moderate and negative, suggesting that improvement in PPB will impair growth. The genetic correlations between PPB and CaB, and EB and RG were positive and moderate, indicating that improvement in PPB would also lead to improved CaB, EB, and RG. Energy bioavailability was positively correlated with CaB, NB, PPB, and BW. Even though the genetic correlation between EB and the other traits measured, except RG and FCR, ranged from low to moderate, improving the ability of birds to utilize caloric energy in the feed would consequently improve PPB as well as growth. Improving PPB would reduce the amount of P in excreta and provide an additional savings if exogenous phytase were not added to poultry feed. The genetic correlation between PPB and NB was low but positive, whereas NB had a positive genetic correlation with BW. Therefore, selecting on NB will result in positive correlated responses in BW and PPB. Improving PPB and NB will not only improve productivity, but also reduce the polluting effects of P and N on the environment.
采用随机交配群体研究植酸磷(PPB)、钙(CaB)、氮(NB)和能量生物学效价(EB)、4 周龄体重(BW)、相对生长率(RG)和饲料转化率(FCR)之间的遗传相互关系。PPB、CaB、NB 和 EB 的遗传力估计值分别为 0.09、0.13、0.16 和 0.10,BW、RG 和 FCR 的遗传力估计值分别为 0.66、0.15 和 0.10。PPB 与 BW 和 FCR 之间的遗传相关性为中度负相关,表明提高 PPB 会损害生长。PPB 与 CaB 和 EB 与 RG 之间的遗传相关性为正相关和中度,表明提高 PPB 也会导致 CaB、EB 和 RG 的提高。能量生物学效价与 CaB、NB、PPB 和 BW 呈正相关。尽管 EB 与除 RG 和 FCR 以外的其他测量性状之间的遗传相关性从低到中等,但提高鸟类利用饲料中热能的能力将相应提高 PPB 以及生长。提高 PPB 会减少排泄物中 P 的含量,如果不向家禽饲料中添加外源植酸酶,还会节省额外的 P。PPB 与 NB 之间的遗传相关性虽然较低,但为正相关,而 NB 与 BW 之间存在正遗传相关性。因此,选择 NB 将导致 BW 和 PPB 的正相关响应。提高 PPB 和 NB 不仅可以提高生产力,还可以减少 P 和 N 对环境的污染影响。