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猪红细胞性状的数量性状位点

Quantitative trait loci for red blood cell traits in swine.

作者信息

Reiner G, Fischer R, Hepp S, Berge T, Köhler F, Willems H

机构信息

Department of Veterinary Clinical Sciences, University of Giessen, D-35392 Giessen, Germany.

出版信息

Anim Genet. 2007 Oct;38(5):447-52. doi: 10.1111/j.1365-2052.2007.01629.x. Epub 2007 Jul 13.

Abstract

Haematological traits are essential diagnostic parameters in veterinary practice but knowledge on the genetic architecture controlling variability of erythroid traits is sparse, especially in swine. To identify QTL for erythroid traits in the pig, haematocrit (HCT), haemoglobin (HB), erythrocyte counts (RBC) and mean corpuscular haemoglobin content (MCHC) were measured in 139 F(2) pigs from a Meishan/Pietrain family, before and after challenge with the protozoan pathogen Sarcocystis miescheriana. The pigs passed through three stages representing acute disease, reconvalescence and chronic disease. Forty-three single QTL controlling erythroid traits were identified on 16 chromosomes. Twelve of the QTL were significant at the genome-wide level while 31 were significant at a chromosome-wide level. Because erythroid traits varied with health and disease status, QTL influencing the erythroid phenotypes showed specific health/disease patterns. Regions on SSC5, 7, 8, 12 and 13 contained QTL for baseline erythroid traits, while the other QTL regions affected distinct stages of the disease model. Single QTL explained 9-17% of the phenotypic variance in the F(2) animals. Related traits were partly under common genetic influence. Our analysis confirms that erythroid trait variation differs between Meishan and Pietrain breeds and that this variation is associated with multiple chromosomal regions.

摘要

血液学特征是兽医实践中的重要诊断参数,但关于控制红细胞特征变异性的遗传结构的知识却很匮乏,尤其是在猪身上。为了鉴定猪红细胞特征的数量性状基因座(QTL),对梅山猪/皮特兰猪家系的139头F2代猪在感染原生动物病原体米氏肉孢子虫前后的血细胞比容(HCT)、血红蛋白(HB)、红细胞计数(RBC)和平均红细胞血红蛋白含量(MCHC)进行了测量。这些猪经历了代表急性疾病、恢复期和慢性疾病的三个阶段。在16条染色体上鉴定出43个控制红细胞特征的单一QTL。其中12个QTL在全基因组水平上显著,31个在染色体水平上显著。由于红细胞特征随健康和疾病状态而变化,影响红细胞表型的QTL呈现出特定的健康/疾病模式。SSC5、7、8、12和13号染色体上的区域包含基线红细胞特征的QTL,而其他QTL区域影响疾病模型的不同阶段。单个QTL解释了F2代动物表型变异的9-17%。相关性状部分受共同遗传影响。我们的分析证实,梅山猪和皮特兰猪品种之间红细胞特征变异不同,且这种变异与多个染色体区域相关。

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