首页> 外文期刊>International Journal of Molecular Sciences >A Soluble Pyrophosphatase Is Essential to Oogenesis and Is Required for Polyphosphate Metabolism in the Red Flour Beetle (Tribolium castaneum)
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A Soluble Pyrophosphatase Is Essential to Oogenesis and Is Required for Polyphosphate Metabolism in the Red Flour Beetle (Tribolium castaneum)

机译:可溶性焦磷酸酶是卵子发生所必需的,并且是红粉甲虫(Tribolium castaneum)中多磷酸盐代谢所必需的

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Polyphosphates have been found in all cell types examined to date and play diverse roles depending on the cell type. In eukaryotic organisms, polyphosphates have been mainly investigated in mammalian cells with few studies on insects. Some studies have demonstrated that a pyrophosphatase regulates polyphosphate metabolism, and most of them were performed on trypanosomatids. Here, we investigated the effects of sPPase gene knocked down in oogenesis and polyphosphate metabolism in the red flour beetle (Tribolium castaneum) A single sPPase gene was identified in insect genome and is maternally provided at the mRNA level and not restricted to any embryonic or extraembryonic region during embryogenesis. After injection of Tc-sPPase dsRNA, female survival was reduced to 15% of the control (dsNeo RNA), and egg laying was completely impaired. The morphological analysis by nuclear DAPI staining of the ovarioles in Tc-sPPase dsRNA-injected females showed that the ovariole number is diminished, degenerated oocytes can be observed, and germarium is reduced. The polyphosphate level was increased in cytoplasmic and nuclear fractions in Tc-sPPase RNAi; Concomitantly, the exopolyphosphatase activity decreased in both fractions. Altogether, these data suggest a role for sPPase in the regulation on polyphosphate metabolism in insects and provide evidence that Tc-sPPase is essential to oogenesis.
机译:迄今为止,已经在所有检查过的细胞类型中发现了多磷酸盐,并且根据细胞类型而发挥多种作用。在真核生物中,主要在哺乳动物细胞中研究了多磷酸盐,而对昆虫的研究却很少。一些研究表明焦磷酸酶调节多磷酸盐的代谢,并且大多数是对锥虫进行的。在这里,我们研究了在红粉甲虫(Tribolium castaneum)的卵子发生和多磷酸盐代谢中被击倒的sPPase基因的作用。在昆虫基因组中鉴定出了一个sPPase基因,该基因在母体水平上由母体提供,不限于任何胚胎或胚外胚发生过程中的区域。注射Tc-sPPase dsRNA后,雌性存活率降低至对照(dsNeo RNA)的15%,并且产卵完全受损。通过Tc-sPPase dsRNA注射的雌性卵巢的核DAPI染色的形态学分析表明,卵巢数目减少了,可以观察到退化的卵母细胞,并且减少了胚芽。 Tc-sPPase RNAi的胞质和核级分中的多磷酸盐水平增加;同时,胞外多磷酸酶活性在两个部分中均降低。总之,这些数据表明sPPase在昆虫多磷酸盐代谢调控中的作用,并提供证据表明Tc-sPPase对卵子发生至关重要。

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