Morphological analysis and muscle-associated gene expression during different muscle growth phases of Megalobrama amblycephala
文献类型: 外文期刊
作者: Zhu, K. C. 1 ; Yu, D. H. 2 ; Zhao, J. K. 1 ; Wang, W. M. 1 ; Wang, H. L. 1 ;
作者机构: 1.Huazhong Agr Univ, Key Lab Freshwater Anim Breeding, Key Lab Agr Anim Genet Breeding & Reprod, Minist Educ,Coll Fishery, Wuhan, Peoples R China
2.Chinese Acad Fishery Sci, Key Lab South China Sea Fishery Resources Exploit, South China Sea Fisheries Res Inst, Minist Agr, Guangzhou, Guangdong, Peoples R China
3.Freshwater Aquaculture Collaborat Innovat Ctr Hub, Wuhan, Peoples R China
4.Freshwater Aquaculture Collaborat Innovat
关键词: Megalobrama amblycephala;Muscle fiber;Gene expression;Morphological analysis;Hyperplasia and hypertrophy
期刊名称:GENETICS AND MOLECULAR RESEARCH ( 影响因子:0.764; 五年影响因子:0.912 )
ISSN: 1676-5680
年卷期: 2015 年 14 卷 3 期
页码:
收录情况: SCI
摘要: Skeletal muscle growth is regulated by both positive and negative factors, such as myogenic regulatory factors (MRFs) and myostatin (MSTN), and involves both hyperplasia and hypertrophy. In the present study, morphological changes during muscle development in Megalobrama amblycephala were characterized and gene expression levels were measured by quantitative real-time polymerase chain reaction (qRT-PCR) analysis in juvenile [60, 90, 120, and 180 days post-hatching (dph)] and adult fish. Our results show that during muscle development, the frequency of muscle fibers with a diameter <20 mu m dramatically decreased in both red and white muscles, with a concomitant increase in the frequency of >30 mu m fibers in red muscle and >50 mu m fibers in white muscle. At 90-120 dph, the ratio of hyperplastic to hypertrophic areas in red and white muscles increased, but later decreased at 120-180 dph. The effect of hypertrophy was significantly larger than hyperplasia during these phases. qRT-PCR indicated MRF and MSTN (MSTNa and MSTNb) genes had similar expression patterns that peaked at 120 dph, with the exception of MSTNa. This new information on the molecular regulation of muscle growth and rapid growth phases will be of value to the cultivation of M. amblycephala.
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