...
首页> 外文期刊>Genetics, selection, evolution >Detection of QTL controlling feed efficiency and excretion in chickens fed a wheat-based diet
【24h】

Detection of QTL controlling feed efficiency and excretion in chickens fed a wheat-based diet

机译:检测以小麦为基础的日粮控制鸡饲料效率和排泄的QTL

获取原文
           

摘要

Background Improving feed efficiency is a major goal in poultry production in order to reduce production costs, increase the possibility of using alternative feedstuffs and decrease the volume of manure. However, in spite of their economic and environmental impact, very few quantitative trait loci (QTL) have been reported on these traits. Thus, we undertook the detection of QTL on 820 meat-type chickens from a F2 cross between D? and D+ lines that were divergently selected on low or high digestive efficiency at 3?weeks of age. Birds were measured for growth between 0 and 23?days, feed intake and feed conversion ratio between 9 and 23?days, breast and abdominal fat yields at 23?days, and the anatomy of their digestive tract (density, relative weight and length of the duodenum, jejunum, ileum, and ratio of proventriculus to gizzard weight) was examined. To evaluate excretion traits, fresh and dry weight, water content, pH, nitrogen to phosphorus ratio from 0 to 23?days, and pH of gizzard and jejunum contents at 23?days were measured. A set of 3379 single nucleotide polymorphisms distributed on 28 Gallus gallus (GGA) autosomes, the Z chromosome and one unassigned linkage group was used for QTL detection. Results Using the QTLMap software developed for linkage analyses by interval mapping, we detected 16 QTL for feed intake, 13 for feed efficiency, 49 for anatomy-related traits, seven for growth, six for body composition and ten for excretion. Nine of these QTL were genome-wide significant (four for feed intake on GGA1, one for feed efficiency on GGA2, and four for anatomy on GGA1, 2, 3 and 4). GGA16, 19, and 26 carried many QTL for different types of traits that co-localize at the same position. Conclusions This study identified several QTL regions that are involved in the control of digestive efficiency in chicken. Further studies are needed to identify the genes that underlie these effects, and to validate these in other commercial populations and for different breeding environments.
机译:背景技术提高饲料效率是家禽生产的主要目标,以降低生产成本,增加使用替代饲料的可能性并减少粪便量。然而,尽管它们对经济和环境造成了影响,但关于这些性状的数量性状基因座(QTL)报道却很少。因此,我们进行了从D1之间的F2杂交对820只肉类鸡进行QTL检测。在3周龄时,根据消化效率的高低选择不同的D和D +品系。在0至23天之间测量家禽的生长,在9至23天之间测量家禽的采食量和饲料转化率,在23天时测量母乳和腹部脂肪的产量,并对它们的消化道进行解剖(密度,相对体重和体长)。检查十二指肠,空肠,回肠以及前胃与g重量的比率)。为了评估排泄特性,测量了0至23天的鲜重和干重,水含量,pH,氮磷比以及23天时的izz和空肠pH值。一组分布在28个Gallus gallus(GGA)常染色体,Z染色体和一个未分配的连锁基团上的3379个单核苷酸多态性用于QTL检测。结果使用为间隔映射进行连锁分析而开发的QTLMap软件,我们检测到16个QTL的采食量,13个采食效率,49个与解剖相关的性状,7个生长,六个身体组成和10个排泄物。这些QTL中有9个在全基因组中具有重要意义(GGA1上四个采食量,GGA2上一个采食效率,GGA1、2、3和4上四个用于解剖学)。 GGA16、19和26携带了许多QTL,这些QTL用于共同定位在同一位置的不同类型的性状。结论本研究确定了几个QTL区域,这些区域参与了鸡消化效率的控制。需要进一步的研究来鉴定构成这些作用的基因,并在其他商业种群和不同的育种环境中对其进行验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号