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Growing backwards: an inverted role for the shrimp ortholog of vertebrate myostatin and GDF11

机译:向后生长:脊椎动物肌肉生长抑制素和GDF11的虾直系同源物的反向作用

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摘要

Myostatin (MSTN) and growth differentiation factor-11 (GDF11) are closely related proteins involved in muscle cell growth and differentiation as well as neurogenesis of vertebrates. Both MSTN and GDF11 negatively regulate their functions. Invertebrates possess a single ortholog of the MSTN/GDF11 family. In order to understand the role of MSTN/GDF11 in crustaceans, the gene ortholog was identified and characterized in the penaeid shrimp Penaeus monodon. The overall protein sequence and specific functional sites were highly conserved with other members of the MSTN/GDF11 family. Gene transcripts of pmMstn/Gdf11, assessed by real-time PCR, were detected in a variety of tissue types and were actively regulated in muscle across the moult cycle. To assess phenotypic function in shrimp, pmMstn/Gdf11 gene expression was downregulated by tail-muscle injection of sequence-specific double-stranded RNA. Shrimp with reduced levels of pmMstn/Gdf11 transcripts displayed a dramatic slowing in growth rate compared with control groups. Findings from this study place the MSTN/GDF11 gene at the centre of growth regulation in shrimp, but suggest that, compared with higher vertebrates, this gene has an opposite role in invertebrates such as shrimp, where levels of gene expression may positively regulate growth.
机译:Myostatin(MSTN)和生长分化因子11(GDF11)是与肌肉细胞生长和分化以及脊椎动物的神经发生密切相关的蛋白质。 MSTN和GDF11均对其功能产生负面影响。无脊椎动物拥有一个MSTN / GDF11家族的直系同源物。为了了解MSTN / GDF11在甲壳类动物中的作用,在对虾对虾斑节对虾中鉴定并鉴定了直系同源基因。整个蛋白质序列和特定功能位点与MSTN / GDF11家族的其他成员高度保守。通过实时PCR评估了pmMstn / Gdf11的基因转录本,可以在多种组织类型中检测到它们,并且在整个换毛周期中都积极调节肌肉中的转录本。为了评估虾的表型功能,通过尾肌肉注射序列特异性双链RNA来下调pmMstn / Gdf11基因表达。与对照组相比,pmMstn / Gdf11转录本水平降低的虾显示出生长速度显着下降。这项研究的发现将MSTN / GDF11基因置于虾的生长调节中心,但表明与高等脊椎动物相比,该基因在无脊椎动物(如虾)中具有相反的作用,在无脊椎动物中,基因表达水平可以正向调节生长。

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