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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Effective RNA-silencing strategy of Lv-MSTN/GDF11 gene and its effects on the growth in shrimp, Litopenaeus vannamei
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Effective RNA-silencing strategy of Lv-MSTN/GDF11 gene and its effects on the growth in shrimp, Litopenaeus vannamei

机译:Lv-MSTN / GDF11基因的有效RNA沉默策略及其对虾南美白对虾的生长的影响

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摘要

Myostatin (MSTN), also known as GDF8, is a member of the transforming growth factor-beta (TGF-beta) superfamily and plays an important role in muscle growth, development, and differentiation. Recently, Ly-MSTN/GDF11, the primitive isoform of MSTN and GDF11, was identified from the shrimp Litopenaeus vannamei. The major production site for Ly-MSTN/GDF11 is in the heart, not the tail muscle, which differs from MSTNs in mammals. Among the three injected RNAs, long dsRNA was the most effective for Lv-MSTN/GDF11 knockdown and transcripts of Ly-MSTN/GDF11 decreased in both the heart (88.85%) and skeletal muscles (43.36%) 72 h after injection of 10 pmol of long dsRNA. We also found that higher doses of dsRNA did not lead to greater decreases in Lv-MSTN/GDF11 transcripts for amounts between 1 pmol and 100 pmol. Injection of Ly-MSTN/GDF11 dsRNA did not affect the upregulation of the skeletal actin gene (Lv-ACTINSK) in the tail muscle, but the expression of cytoplasmic and cardiac actins were upregulated in both the heart and tail muscle. Over the course of 8 weeks of dsRNA injection, considerably higher mortality (similar to 71%) was seen in the dsRNA-injected group compared to the control group (40%). Surviving shrimp in the dsRNA injected group had a lower growth rate due to the adverse effects of Lv-MSTN/GDF11 knockdown. Ly-MSTN/GDF11 appears to be involved in muscular or neuronal development, but not in doubling muscle fibers, as is the case with mammalian MSTN. (C) 2014 Elsevier Inc. All rights reserved.
机译:肌生长抑制素(MSTN),也称为GDF8,是转化生长因子β(TGF-beta)超家族的成员,在肌肉生长,发育和分化中起重要作用。最近,从虾南美白对虾中鉴定出了MSTN和GDF11的原始同工型Ly-MSTN / GDF11。 Ly-MSTN / GDF11的主要生产地点在心脏,而不是尾部肌肉,这与哺乳动物的MSTN不同。在三个注射的RNA中,长dsRNA对Lv-MSTN / GDF11敲除最有效,而在注射10 pmol的72小时后,心脏(88.85%)和骨骼肌(43.36%)的Ly-MSTN / GDF11转录本均下降。长dsRNA。我们还发现,较高剂量的dsRNA不会导致Lv-MSTN / GDF11转录本的更大降低,其数量介于1 pmol和100 pmol之间。注射Ly-MSTN / GDF11 dsRNA不会影响尾肌中骨骼肌肌动蛋白基因(Lv-ACTINSK)的上调,但是胞浆和心脏肌动蛋白的表达在心肌和尾肌中均上调。在dsRNA注射8周的过程中,与对照组(40%)相比,在dsRNA注射组中观察到了更高的死亡率(大约71%)。由于Lv-MSTN / GDF11敲低的不利影响,dsRNA注射组中存活的虾的生长速度较低。 Ly-MSTN / GDF11似乎与肌肉或神经元发育有关,但不像哺乳动物MSTN那样与肌肉纤维加倍有关。 (C)2014 Elsevier Inc.保留所有权利。

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