4.4 Article

Mapping quantitative trait loci for T lymphocyte subpopulations in peripheral blood in swine

期刊

BMC GENETICS
卷 12, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/1471-2156-12-79

关键词

T lymphocyte subpopulations; quantitative trait loci; swine

资金

  1. National Natural Science Foundations of China [30972092]
  2. Natural Science Foundations of Beijing [6102016]
  3. New-Century Training Programme Foundation for the Talents by the State Education Commission of China [NETC-10-0783]
  4. Scientific Research Foundation for the Returned Overseas Chinese Scholars of State Education Ministry
  5. National High Technology Research and Development Program of China (863 Program) [2011AA100302]

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Background: Increased disease resistance through improved general immune capacity would be beneficial for the welfare and productivity of farm animals. T lymphocyte subpopulations in peripheral blood play an important role in immune capacity and disease resistance in animals. However, very little research to date has focused on quantitative trait loci (QTL) for T lymphocyte subpopulations in peripheral blood in swine. Results: In the study, experimental animals consist of 446 piglets from three different breed populations. To identify QTL for T lymphocyte subpopulations in peripheral blood in swine, the proportions of CD4+, CD8+, CD4+CD8+, CD4+CD8-, CD4-CD8+, and CD4-CD8-T cells and the ratio of CD4+:CD8+ T cells were measured for all individuals before and after challenge with modified live CSF (classical swine fever) vaccine. Based on the combined data of individuals from three breed populations, genome-wide scanning of QTL for these traits was performed based on a variance component model, and the genome wide significance level for declaring QTL was determined via permutation tests as well as FDR (false discovery rate) correction. A total of 27 QTL (two for CD4+CD8+, one for CD4+CD8-, three for CD4-CD8+, two for CD4-CD8-, nine for CD4+, two for CD8+, and eight for CD4+:CD8+ ratio) were identified with significance level of FDR < 0.10, of which 11 were significant at the level of FDR < 0.05, including the five significant at FDR < 0.01. Conclusions: Within these QTL regions, a number of known genes having potential relationships with the studied traits may serve as candidate genes for these traits. Our findings herein are helpful for identification of the causal genes underlying these immune-related trait and selection for immune capacity of individuals in swine breeding in the future.

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