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Comparison of Long Non-Coding RNA Expression Profiles of Cattle and Buffalo Differing in Muscle Characteristics

机译:牛和水牛长度非编码RNA表达谱的比较肌肉特征不同

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Buffalo meat consist good qualitative characteristics as it contains “thined tender” which is favorable for cardavascular system. However, the regulatory mechanisms of long non-coding RNA (lncRNA), differences in meat quality are not well known. The chemical-physical parameters revealed the muscle quality of buffalo that can be equivalent of cattle, but there are significant differences in shearing force and muscle fiber structure. Then, we examined lncRNA expression profiles of buffalo and cattle skeletal muscle that provide first insights into their potential roles in buffalo myogenesis. Here, we profiled the expression of lncRNA in cattle and buffalo skeletal muscle tissues, and 16,236 lncRNA candidates were detected with 865 up-regulated lncRNAs and 1,296 down-regulated lncRNAs when comparing buffalo to cattle muscle tissue. We constructed coexpression and ceRNA networks, and found lncRNA MSTRG.48330.7, MSTRG.30030.4, and MSTRG.203788.46 could be as competitive endogenous RNA (ceRNA) containing potential binding sites for miR-1/206 and miR-133a. Tissue expression analysis showed that MSTRG.48330.7, MSTRG.30030.4, and MSTRG.203788.46 were highly and specifically expressed in muscle tissue. Present study may be used as a reference tool for starting point investigations into the roles played by several of those lncRNAs during buffalo myogenesis.
机译:水牛肉包括良好的定性特征,因为它含有“突出的柔软”,这是有利于薄脑动物系统的。然而,长期非编码RNA(LNCRNA)的调节机制,肉质差异是众所周知的。化学物理参数揭示了可以相同的水牛的肌肉质量,但剪切力和肌纤维结构存在显着差异。然后,我们检查了水牛和牛骨骼肌的LNCRNA表达谱,提供了对其在水牛肌发育中的潜在作用的首先见解。在这里,我们在牛和水牛骨骼肌组织中突出了LNCrNA的表达,并且在将水牛对牛肌肉组织进行比较时,用865个上调的LNCRNA和1,296个下调的LNCRNA检测到16,236名候选物。我们构建了共表达和Cerna网络,发现LNCRNA MSTRG.48330.7,MSTRG.30030.4和MSTRG.203788.46可以是含有miR-1/206和miR-133a的潜在结合位点的竞争内源性RNA(Cerna)。组织表达分析表明,MSTRG.48330.7,MSTRG.30030.4和MSTRG.203788.46在肌肉组织中高度且特异性地表达。目前的研究可作为用于在水牛肌发育过程中几种LNCRNA中起作用的角色的参考工具。

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