首页> 美国卫生研究院文献>Journal of Insect Science >The Modulation of Trehalose Metabolism by 20-Hydroxyecdysone in Antheraea pernyi (Lepidoptera: Saturniidae) During its Diapause Termination and Post-Termination Period
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The Modulation of Trehalose Metabolism by 20-Hydroxyecdysone in Antheraea pernyi (Lepidoptera: Saturniidae) During its Diapause Termination and Post-Termination Period

机译:在其延迟终止和终止后期间20-羟基德科酮(Lepidoptera)(Lepidoptera:Saturniidae)的海藻糖代谢调制

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摘要

Trehalose plays a crucial role in the diapause process of many insects, serving as an energy source and a stress protectant. Trehalose accumulation has been reported in diapause pupae of Antheraea pernyi; however, trehalose metabolic regulatory mechanisms associated with diapause termination remain unclear. Here, we showed that the enhanced trehalose catabolism was associated with an increase in endogenous 20-hydroxyecdysone (20E) in hemolymph of A. pernyi pupae during their diapause termination and posttermination period. Injection of 20E increased the mRNA level of trehalase 1A (ApTre-1A) and trehalase 2 (ApTre-2) of A. pernyi diapause pupae in a dose-dependent manner but did not affect the mRNA level of trehalase 1B (ApTre-1B). Meanwhile, exogenous 20E increased the enzyme activities of soluble and membrane-bound trehalase, leading to a decline in hemolymph trehalose. Conversely, the expression of ApTre-1A and ApTre-2 were down-regulated after the ecdysone receptor gene (ApEcRB1) was silenced by RNA interference or by injection of an ecdysone receptor antagonist cucurbitacin B (CucB), which inhibits the 20E pathway. Moreover, CucB treatment delayed adult emergence, which suggests that ApEcRB1 might be involved in regulating pupal-adult development of A. pernyi by mediating ApTre-1A and ApTre-2 expressions. This study provides an overview of the changes in the expression and activity of different trehalase enzymes in A. pernyi in response to 20E, confirming the important role of 20E in controlling trehalose catabolism during A. pernyi diapause termination and posttermination period.
机译:海藻糖在许多昆虫的延伸过程中起着至关重要的作用,用作能源和应力保护剂。在Antheraea Pernyi的延伸蛹中报道了海藻糖积累;然而,与延伸终止相关的海藻糖代谢调节机制仍不清楚。在这里,我们表明,增强的海藻糖分解代谢与A.Plynyi蛹的血淋巴瘤中的内源20-羟基粥样酮(20e)的增加有关。 20E以剂量依赖性方式注射20E的MREP酶1A(APTRE-1A)和海藻酶2(APTRE-2)的MRNA水平,但不影响海藻酶1B的mRNA水平(APTRE-1B) 。同时,外源20E增加了可溶性和膜结合的海藻糖酶的酶活性,导致血淋巴海藻糖下降。相反,在蜕膜受体基因(APECRB1)通过RNA干扰或注射抑制20E途径的蜕皮受体拮抗剂葫芦酰胺B(CUCB)后,将Aptre-1a和Aptre-2的表达下调。此外,CUCB治疗延迟了成虫出苗,这表明APECRB1可以参与通过介导APTRE-1A和APTRE-2表达来调节A.Pernyi的蛹成人开发。该研究概述了A.Pernyi在响应于20E的不同海藻酶酶的表达和活性的变化概述,确认20E在治疗A.Cernyi延伸终止和晚期时间内的海藻糖分解代谢方面的重要作用。

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