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在实验和商业鸡系中均证实了对沙门氏菌带菌状态的抗性的 QTL。

QTL for resistance to Salmonella carrier state confirmed in both experimental and commercial chicken lines.

机构信息

INRA, Unité de Recherches Avicoles, 37380 Nouzilly, France.

出版信息

Anim Genet. 2009 Oct;40(5):590-7. doi: 10.1111/j.1365-2052.2009.01884.x. Epub 2009 Apr 24.

DOI:10.1111/j.1365-2052.2009.01884.x
PMID:19422366
Abstract

The ability of chickens to carry Salmonella without displaying disease symptoms is responsible for Salmonella propagation in poultry stocks and for subsequent human contamination through the consumption of contaminated eggs or meat. The selection of animals more resistant to carrier state might be a way to decrease the propagation of Salmonella in poultry stocks and its transmission to humans. Five QTL controlling variation for resistance to carrier state in a chicken F(2) progeny derived from the White Leghorn inbred lines N and 6(1) had been previously identified using a selective genotyping approach. Here, a second analysis on the whole progeny was performed, which led to the confirmation of two QTL on chromosomes 2 and 16. To assess the utility of these genomic regions for selection in commercial lines, we tested them together with other QTL identified in an [Nx6(1)] x N backcross progeny and with the candidate genes SLC11A1 and TLR4. We used a commercial line divergently selected for either low or high carrier-state resistance both in young chicks and in adult hens. In divergent chick lines, one QTL on chromosome 1 and one in the SLC11A1 region were significantly associated with carrier-state resistance variations; in divergent adult lines, one QTL located in the major histocompatibility complex on chromosome 16 and one in the SLC11A1 region were involved in these variations. Genetic studies conducted on experimental lines can therefore be of potential interest for marker-assisted selection in commercial lines.

摘要

鸡携带沙门氏菌而不表现疾病症状的能力是导致家禽群中沙门氏菌传播的原因,也是人类通过食用受污染的鸡蛋或肉类而受到污染的原因。选择更能抵抗带菌状态的动物可能是减少家禽群中沙门氏菌传播及其向人类传播的一种方法。先前使用选择性基因分型方法在来自白来航系内群 N 和 6(1)的鸡 F2 后代中鉴定了五个控制对带菌状态抗性的 QTL。在这里,对整个后代进行了第二次分析,这导致在染色体 2 和 16 上确认了两个 QTL。为了评估这些基因组区域在商业品系中的选择应用价值,我们将它们与在[Nx6(1)]xN 回交后代中鉴定的其他 QTL 以及候选基因 SLC11A1 和 TLR4 一起进行了测试。我们使用商业系进行了分歧选择,这些商业系要么在雏鸡中,要么在成年母鸡中具有低或高的带菌状态抗性。在分歧的雏鸡系中,1 号染色体上的一个 QTL 和 SLC11A1 区域的一个 QTL 与带菌状态抗性变化显著相关;在分歧的成年系中,16 号染色体上的主要组织相容性复合体中的一个 QTL 和 SLC11A1 区域中的一个 QTL 与这些变化有关。因此,在实验品系上进行的遗传研究可能对商业品系的标记辅助选择具有潜在的兴趣。

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