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日本鹌鹑中肌肉生长抑制素突变导致胫骨尺寸增大及质量改善。

Increased sizes and improved qualities of tibia bones by myostatin mutation in Japanese quail.

作者信息

Lee Joonbum, Tompkins Yuguo, Kim Dong-Hwan, Kim Woo Kyun, Lee Kichoon

机构信息

Department of Animal Sciences, The Ohio State University, Columbus, OH, United States.

Department of Poultry Science, University of Georgia, Athens, GA, United States.

出版信息

Front Physiol. 2023 Jan 4;13:1085935. doi: 10.3389/fphys.2022.1085935. eCollection 2022.

Abstract

Production of large amounts of meat within a short growth period from modern broilers provides a huge economic benefit to the poultry industry. However, poor bone qualities of broilers caused by rapid growth are considered as one of the problems in the modern broilers industry. After discovery and investigation of myostatin (MSTN) as an anti-myogenic factor to increase muscle mass by targeted knockout in various animal models, additional positive effects of MSTN mutation on bone qualities have been reported in MSTN knockout mice. Although the same beneficial effects on muscle gain by MSTN mutation have been confirmed in MSTN mutant quail and chickens, bone qualities of the MSTN mutant birds have not been investigated, yet. In this study, tibia bones were collected from MSTN mutant and wild-type (WT) quail at 4 months of age and analyzed by Micro-Computed Tomography scanning to compare size and strength of tibia bone and quality parameters in diaphysis and metaphysis regions. Length, width, cortical thickness, and bone breaking strength of tibia bones in the MSTN mutant group were significantly increased compared to those of the WT group, indicating positive effects of MSTN mutation on tibia bone sizes and strength. Furthermore, bone mineral contents and bone volume of whole diaphysis, diaphyseal cortical bone, whole metaphysis, and metaphyseal trabecular and cortical bones were significantly increased in the MSTN mutant group compared to the WT group, indicating increased mineralization in the overall tibia bone by MSTN mutation. Especially, higher bone mineral density (BMD) of whole diaphysis, higher total surface of whole metaphysis, and higher BMD, trabecular thickness, and total volume of metaphyseal trabecular bones in the MSTN mutant group compared to the WT group suggested improvements in bone qualities and structural soundness of both diaphysis and metaphysis regions with significant changes in trabecular bones by MSTN mutation. Taken together, MSTN can be considered as a potential target to not only increase meat yield, but also to improve bone qualities that can reduce the incidence of leg bone problems for the broiler industry.

摘要

现代肉鸡在短时间内生长就能产出大量肉类,这为家禽业带来了巨大的经济效益。然而,快速生长导致的肉鸡骨骼质量差被认为是现代肉鸡产业面临的问题之一。在各种动物模型中,通过靶向敲除发现并研究了肌肉生长抑制素(MSTN)作为一种抗肌生成因子可增加肌肉量之后,在MSTN基因敲除小鼠中已报道了MSTN突变对骨骼质量的其他积极影响。尽管在MSTN突变鹌鹑和鸡中已证实MSTN突变对肌肉增长具有相同的有益作用,但尚未对MSTN突变禽类的骨骼质量进行研究。在本研究中,收集了4月龄MSTN突变鹌鹑和野生型(WT)鹌鹑的胫骨,通过微计算机断层扫描进行分析,以比较胫骨的大小、强度以及骨干和干骺端区域的质量参数。与WT组相比,MSTN突变组胫骨的长度、宽度、皮质厚度和骨断裂强度显著增加,表明MSTN突变对胫骨大小和强度有积极影响。此外,与WT组相比,MSTN突变组整个骨干、骨干皮质骨、整个干骺端以及干骺端小梁骨和皮质骨的骨矿物质含量和骨体积显著增加,表明MSTN突变使整个胫骨的矿化增加。特别是,与WT组相比,MSTN突变组整个骨干的骨矿物质密度(BMD)更高,整个干骺端的总表面积更大,干骺端小梁骨的BMD、小梁厚度和总体积更高,这表明MSTN突变改善了骨干和干骺端区域的骨骼质量和结构完整性,小梁骨有显著变化。综上所述,MSTN不仅可被视为提高肉产量的潜在靶点,还可作为改善骨骼质量的潜在靶点,从而降低肉鸡行业腿部骨骼问题的发生率。

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