4.4 Article

Expression profiles and associations of muscle regulatory factor (MRF) genes with growth traits in Tibetan chickens

期刊

BRITISH POULTRY SCIENCE
卷 59, 期 1, 页码 63-67

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/00071668.2017.1390212

关键词

Association analysis; growth traits; muscle regulatory factors; postnatal expression; Tibetan chicken

资金

  1. Key Technology R&D Breeding Program of Sichuan Province of China during the 13th 5-year plan period [2016NYZ0043]

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1. Muscle regulatory factors (MRFs), including Myf5, Myf6 (MRF4/herculin), MyoD and MyoG (myogenin), play pivotal roles in muscle growth and development. Therefore, they are considered as candidate genes for meat production traits in livestock and poultry.2. The objective of this study was to investigate the expression profiles of these genes in skeletal muscles (breast muscle and thigh muscle) at 5 developmental stages (0, 81, 119, 154 and 210 d old) of Tibetan chickens. Relationships between expressions of these genes and growth and carcass traits in these chickens were also estimated.3. The expression profiles showed that in the breast muscle of both genders the mRNA levels of MRF genes were highest on the day of hatching, then declined significantly from d 0 to d 81, and fluctuated in a certain range from d 81 to d 210. However, the expression of Myf5, Myf6 and MyoG reached peaks in the thigh muscle in 118-d-old females and for MyoD in 154-d-old females, whereas the mRNA amounts of MRF genes in the male thigh muscle were in a narrow range from d 0 to d 210.4. Correlation analysis suggested that gender had an influence on the relationships of MRF gene expression with growth traits. The RNA levels of MyoD, Myf5 genes in male breast muscle were positively related with several growth traits of Tibetan chickens (P<0.05). No correlation was found between expressions of MRF genes and carcass traits of the chickens.5. These results will provide a base for functional studies of MRF genes on growth and development of Tibetan chickens, as well as selective breeding and resource exploration.

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