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在表现出肌纤维增生的鹌鹑品系中,体节形成延迟伴随着生肌调节因子和肌球蛋白重链的表达延迟。

Delayed somite formation in a quail line exhibiting myofiber hyperplasia is accompanied by delayed expression of myogenic regulatory factors and myosin heavy chain.

作者信息

Coutinho L L, Morris J, Marks H L, Buhr R J, Ivarie R

机构信息

Department of Genetics, University of Georgia, Athens.

出版信息

Development. 1993 Feb;117(2):563-9. doi: 10.1242/dev.117.2.563.

Abstract

A myofiber hyperplastic quail line P has been developed through selection for heavy body weight. Since the number of muscle fibers is determined early in development and skeletal muscle originates from somites, we compared somite formation and muscle-specific gene expression in P- and control C-line quail embryos. At 47 hours of incubation, C embryos had 18 somite pairs and P embryos had 14.3. By 72 and 120 hours, both lines appeared to be at the same stage of somite development. To determine whether the delay in the formation of the brachial somites was accompanied by alterations in muscle-specific gene expression, we conducted whole-mount in situ hybridization and immunofluorescence studies. At 47 hours of incubation, C embryos were expressing qmf1 in the first 12 somites, while in P embryos only the first 7 somites showed qmf1 activation. Delays in expression were also observed for qmf3 at 43 hours and for all three myogenic factors (qmf1, qmf2 and qmf3) at 60 hours. At 65 hours, C embryos expressed myosin heavy chain in the first 15 somite pairs and P embryos in the first 7. At 72 hours, the transient delay in somite formation had disappeared and there was no lag in myosin heavy chain expression between the lines. The phase delay in brachial somite formation, myogenic factors and myosin heavy chain expression may be associated with the observed myofiber hyperplasia in P-line quail by allowing an increase in the muscle stem cell population.

摘要

通过对体重较重的鹌鹑进行选育,培育出了一个肌纤维增生的鹌鹑品系P。由于肌纤维数量在发育早期就已确定,且骨骼肌起源于体节,因此我们比较了P系和对照C系鹌鹑胚胎的体节形成和肌肉特异性基因表达情况。在孵化47小时时,C系胚胎有18对体节,P系胚胎有14.3对。到72小时和120小时时,两个品系的体节发育似乎处于同一阶段。为了确定臂部体节形成延迟是否伴随着肌肉特异性基因表达的改变,我们进行了全胚胎原位杂交和免疫荧光研究。在孵化47小时时,C系胚胎在前12个体节中表达qmf1,而在P系胚胎中只有前7个体节显示qmf1激活。在43小时时,qmf3的表达也出现延迟,在60小时时,所有三个生肌因子(qmf1、qmf2和qmf3)的表达均出现延迟。在65小时时,C系胚胎在前15对体节中表达肌球蛋白重链,P系胚胎在前7对体节中表达。在72小时时,体节形成的短暂延迟消失,两个品系之间肌球蛋白重链表达没有滞后现象。臂部体节形成、生肌因子和肌球蛋白重链表达的阶段延迟可能通过增加肌肉干细胞数量,与P系鹌鹑中观察到的肌纤维增生有关。

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