Department of Animal Sciences, The Ohio State University, Columbus OH 43210, The United States.
Department of Animal Sciences, Kyungpook National University, Sangju 37224, South Korea.
Poult Sci. 2020 Jun;99(6):2926-2930. doi: 10.1016/j.psj.2019.12.069. Epub 2020 Mar 19.
Myostatin (MSTN) negatively regulates in muscle growth and development. Among alternative splicing isoforms of avian MSTN, MSTN-A has antimyogenic activities and MSTN-B functions as a promyogenic factor. In this study, different lines of Japanese quail were used: a random bred control (RBC) and a heavy weight (HW) quail line with muscle hypertrophy. The objectives of the current study are to compare temporal expression of the MSTN isoforms in pectoralis major muscle (PM) between 2 quail lines and to relate MSTN expression with temporal changes in muscle growth and total amounts of DNA in PM. Gains of body weight (BW) and PM weight were greater until posthatch day (D) 28 (P < 0.001), and the fold increases in total DNA contents of PM were greater in the HW line compared with the RBC line during D7 to D28 (P < 0.05). PCR analysis showed that MSTN-A expression was greater at 14 D (E14) of embryonic age (P < 0.01), D7 (P = 0.052), and D14 (P < 0.01) in the RBC line compared with the HW line. At D28 and D75, expression of MSTN-A was greater in the HW line compared with the RBC line (P < 0.05). MSTN-B expression was barely detectable from E14 to D14 and measurable from D28 to D75 in the muscle of both lines. Ratios of the MSTN-B/-A form ranging from 0.15 to 0.29 indicate a minor expression of the B form. Taken together, the lesser expression levels of MSTN-A at E14, D7, and D14 are associated with the fast growth of PM, and greater MSTN-A expression at D28 and D75 are associated with a slowdown of PM growth in the HW line. These data indicate a negative association of MSTN expression with PM growth and provide a scientific basis for potential usage of MSTN expression as a selection marker for greater muscle growth in poultry.
肌肉生长抑制素 (MSTN) 负调控肌肉生长和发育。在禽类 MSTN 的替代剪接异构体中,MSTN-A 具有抗肌生成活性,而 MSTN-B 则作为促肌生成因子发挥作用。在这项研究中,使用了不同品系的鹌鹑:随机繁殖对照 (RBC) 和肌肉肥大的重型鹌鹑 (HW) 品系。本研究的目的是比较 2 个鹌鹑品系胸肌 (PM) 中 MSTN 异构体的时间表达,并将 MSTN 表达与 PM 生长和总 DNA 量的时间变化相关联。体重 (BW) 和 PM 重量的增加一直持续到孵化后第 28 天 (P < 0.001),并且在 HW 品系中,PM 总 DNA 含量的增加倍数大于 RBC 品系,在第 7 天至第 28 天 (P < 0.05)。PCR 分析显示,在 RBC 品系中,MSTN-A 的表达在胚胎龄 14 天 (E14) (P < 0.01)、第 7 天 (P = 0.052) 和第 14 天 (P < 0.01) 时大于 HW 品系。在第 28 天和第 75 天,HW 品系中 MSTN-A 的表达大于 RBC 品系 (P < 0.05)。在两条肌肉线的 E14 至 D14 之间几乎无法检测到 MSTN-B 的表达,从 D28 到 D75 可以检测到。MSTN-B/-A 形式的比值范围为 0.15 至 0.29,表明 B 形式的表达较少。综上所述,在 E14、D7 和 D14 时 MSTN-A 的表达水平较低与 PM 的快速生长有关,而在 D28 和 D75 时 MSTN-A 的表达增加与 HW 品系中 PM 生长速度减慢有关。这些数据表明 MSTN 表达与 PM 生长呈负相关,并为 MSTN 表达作为家禽更大肌肉生长的选择标记提供了科学依据。