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首页> 外文期刊>Development Genes and Evolution >Genomic identification, rapid evolution, and expression of Argonaute genes in the tilapia, Oreochromis niloticus
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Genomic identification, rapid evolution, and expression of Argonaute genes in the tilapia, Oreochromis niloticus

机译:罗非鱼尼罗罗非鱼Argonaute基因的基因组鉴定,快速进化和表达

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摘要

Argonaute proteins are key components of the small RNA-induced silencing complex and have multiple roles in RNA-directed regulatory pathways. Argonaute genes can be divided into two subfamilies: the Ago (interacting with microRNA/small interfering RNA) and Piwi subfamilies (interacting with piwi-interacting RNAs (piRNAs)). In the present study, genome-wide analyses firstly yielded the identification of different members of Agos and Piwis in the tilapia, coelacanth, spotted gar, and elephant shark. The additional teleost Ago3b was generated following the fish-specific genome duplication event. Selective pressure analysis on Agos and Piwis between cichlids and other teleosts showed an accelerated evolution of Piwil1 in the cichlid lineages, and the positive selected sites were located in the region of PIWI domain, suggesting that these amino acid substitutions are adapt to targeted cleavage of messenger RNA (mRNA) in cichlids. Ago1 and Ago4 were detected at higher levels at 5 days after hatching (dah) in both ovaries and testes compared with other stages, supporting the previously reported requirement of Ago-mediated pathways to clear the maternal mRNAs during the early embryogenesis. The Piwis were abundantly expressed in tilapia testes, indicating their essential roles in male germline, especially in spermatogenesis. Notable expression of Piwis was also detected in skeletal muscle, indicating that piRNA pathway may not only be confined to development and maintenance of the germline but may also play important roles in somatic tissues. The expression of Piwil1 and Piwil2 was examined by quantitative PCR (qPCR) and in situ hybridization (ISH) to validate the spatial and temporal expression profiles. Taken together, these results present a thorough overview of tilapia Argonaute family and provide a new perspective on the evolution and function of this family in teleosts.
机译:Argonaute蛋白是小RNA诱导的沉默复合物的关键成分,在RNA定向的调控途径中具有多种作用。 Argonaute基因可分为两个亚家族:Ago(与microRNA /小干扰RNA相互作用)和Piwi亚家族(与piwi相互作用RNA(piRNA)相互作用)。在本研究中,全基因组分析首先确定了罗非鱼,腔棘鱼,斑和象鲨中不同的Agos和Piwis成员。在鱼类特异性基因组复制事件之后,产生了另外的硬骨鱼Ago3b。对丽鱼和其他硬骨鱼之间的Agos和Piwis进行的选择性压力分析显示,丽鱼科谱系中Piwil1的进化加快,并且正向选择位点位于PIWI结构域区域,这表明这些氨基酸取代适合于信使蛋白的靶向裂解丽鱼科鱼中的RNA(mRNA)。与其他阶段相比,在卵巢和睾丸孵化(dah)后第5天,检测到较高水平的Ago1和Ago4,这与先前报道的Ago介导的途径在早期胚胎发生过程中清除母体mRNA的要求相符。 Piwis在罗非鱼的睾丸中大量表达,表明它们在雄性种系,尤其是精子发生中的重要作用。在骨骼肌中也检测到Piwis的显着表达,这表明piRNA途径不仅限于种系的发育和维持,而且在体细胞组织中也可能起重要作用。通过定量PCR(qPCR)和原位杂交(ISH)检查Piwil1和Piwil2的表达,以验证时空表达谱。综上所述,这些结果提供了罗非鱼Argonaute家族的全面概述,并为该家族在硬骨鱼中的进化和功能提供了新的视角。

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