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Differential effects of silencing crustacean hyperglycemic hormone gene expression on the metabolic profiles of the muscle and hepatopancreas in the crayfish Procambarus clarkii

机译:沉默甲壳类高血糖激素基因表达对小龙虾克氏原螯虾肌肉和肝胰脏代谢谱的影响

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摘要

In order to functionally characterize the metabolic roles of crustacean hyperglycemic hormone (CHH), gene expression of CHH in the crayfish (Procambarus clarkii) was knocked down by in vivo injection of CHH double-stranded RNA (dsRNA), followed by metabolomic analysis of 2 CHH target tissues (the muscle and hepatopancreas) using nuclear magnetic resonance spectroscopy. Compared to the levels in untreated and saline-injected (SAI) animals, levels of CHH transcript, but not those of molt-inhibiting hormone (a CHH-family peptide), in the eyestalk ganglia of CHH dsRNA-injected (DSI) animals were significantly decreased at 24, 48, and 72 hour post injection (hpi), with concomitant changes in levels of CHH peptide in the sinus gland (a neurohemal organ) and hemolymph. Green fluorescence protein (GFP) dsRNA failed to affect levels of CHH transcript in the eyestalk ganglia of GFP DSI animals. Number of metabolites whose levels were significantly changed by CHH dsRNA was 149 and 181 in the muscle and 24 and 12 in the hepatopancreas, at 24 and 48 hpi, respectively. Principal component analysis of these metabolites show that metabolic effects of silencing CHH gene expression were more pronounced in the muscle (with the cluster of CHH DSI group clearly being separated from that of SAI group at 24 hpi) than in the hepatopancreas. Moreover, pathway analysis of the metabolites closely related to carbohydrate and energy metabolism indicate that, for CHH DSI animals at 24 hpi, metabolic profile of the muscle was characterized by reduced synthesis of NAD+ and adenine ribonucleotides, diminished levels of ATP, lower rate of utilization of carbohydrates through glycolysis, and a partially rescued TCA cycle, whereas that of the hepatopancreas by unaffected levels of ATP, lower rate of utilization of carbohydrates, and increased levels of ketone bodies. The combined results of metabolic changes in response to silenced CHH gene expression reveal that metabolic functions of CHH on the muscle and hepatopancreas are more diverse than previously thought and are differential between the two tissues.
机译:为了在功能上表征甲壳类高血糖激素(CHH)的代谢作用,通过体内注射CHH双链RNA(dsRNA)来敲除小龙虾(Procambarus clarkii)中CHH的基因表达,然后进行代谢组学分析2 CHH使用核磁共振波谱法靶向组织(肌肉和肝胰腺)。与未经治疗和注射生理盐水(SAI)的动物相比,在注射过CHH dsRNA(DSI)的动物的眼球神经节中,CHH转录本的水平,但不是蜕皮抑制激素(CHH家族肽)的水平在注射后24、48和72小时(hpi)显着下降,并伴随着窦腺(一种神经血性器官)和血淋巴中CHH肽水平的变化。绿色荧光蛋白(GFP)dsRNA无法影响GFP DSI动物的眼球神经节中CHH转录水平。在24 h和48 hpi时,CHH dsRNA显着改变其水平的代谢物的数量分别为肌肉中的149和181,肝胰腺中的24和12。这些代谢物的主成分分析表明,沉默CHH基因表达的代谢效应在肌肉中(在24 hpi时,CHH DSI组与SAI组明显分开)比肝胰腺中更为明显。此外,与碳水化合物和能量代谢密切相关的代谢物的途径分析表明,对于CHH DSI动物,在24 hpi时,肌肉的代谢特征以NAD + 和腺嘌呤核糖核苷酸的合成减少,减少为特征。 ATP的水平,通过糖酵解作用降低的碳水化合物利用率和部分挽救的TCA周期,而ATP的水平未受影响,碳水化合物的利用率降低和酮体水平升高,使肝胰腺的ATP下降。响应沉默的CHH基因表达的代谢变化的综合结果表明,CHH在肌肉和肝胰腺上的代谢功能比以前认为的要多样化,并且在两种组织之间存在差异。

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