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豌豆蚜产后翅型调节血淋巴海藻糖水平。

Postnatal Wing Morph of Pea Aphids Regulates Hemolymph Trehalose Levels.

机构信息

College of Agriculture, Ibaraki University, Ibaraki, Japan.

出版信息

Arch Insect Biochem Physiol. 2024 Oct;117(2):e22156. doi: 10.1002/arch.22156.

Abstract

Trehalose, a nonreducing disaccharide composed of two glucose molecules, functions as a critical energy source in various insect tissues and organs and is the predominant sugar component of the hemolymph. The pea aphid, Acyrthosiphon pisum, exhibits higher hemolymph trehalose levels than other insects. However, the dynamics of hemolymph trehalose levels throughout its life stages remain unclear owing to the challenges associated with obtaining hemolymph from these small insects. Therefore, this study was conducted to quantify hemolymph trehalose levels in A. pisum using a fluorescent trehalose sensor (Tre-C04), which enhances green fluorescent protein fluorescence through the binding of trehalose to a ligand-binding protein fused to the fluorophore. Trehalose levels were successfully quantified in minimal hemolymph samples from individual aphids, with measurements spanning from the first nymphal stage to the adult stage in both the winged and wingless forms of A. pisum. Hemolymph trehalose levels remained relatively stable throughout the life cycle but exhibited a gradual increase with each developmental stage. Notably, adult winged aphids exhibited significantly higher hemolymph trehalose levels than wingless aphids. Given that wing morph determination occurs early in the nymphal stage, these findings suggest that hemolymph trehalose levels are regulated post-wing morph development. Further investigation of the expression of genes associated with trehalose metabolism revealed that trehalose phosphate synthase 2 levels were downregulated in early-stage wingless adults, whereas insulin-related peptide 5 levels were upregulated in wingless aphids. These findings indicate that A. pisum synthesizes trehalose during the winged adult stage to serve as an energy source for flight.

摘要

海藻糖是一种由两个葡萄糖分子组成的非还原二糖,在各种昆虫组织和器官中起着关键的能量源作用,并且是血淋巴的主要糖分成分。豌豆蚜(Acyrthosiphon pisum)的血淋巴海藻糖水平高于其他昆虫。然而,由于从小型昆虫中获取血淋巴存在挑战,因此其各个生命阶段的血淋巴海藻糖水平动态仍不清楚。因此,本研究使用荧光海藻糖传感器(Tre-C04)来定量测定 A. pisum 的血淋巴海藻糖水平,该传感器通过将海藻糖与融合到荧光团的配体结合蛋白结合来增强绿色荧光蛋白的荧光。成功地从单个蚜虫的最小血淋巴样本中定量测量了海藻糖水平,测量范围从第一龄期到 A. pisum 的有翅和无翅形式的成虫阶段。血淋巴海藻糖水平在整个生命周期中相对稳定,但随着每个发育阶段逐渐增加。值得注意的是,成年有翅蚜虫的血淋巴海藻糖水平明显高于无翅蚜虫。鉴于翅型决定发生在若虫早期,这些发现表明血淋巴海藻糖水平是在翅型发育后进行调节的。进一步研究与海藻糖代谢相关的基因表达发现,无翅成虫早期的海藻糖磷酸合酶 2 水平下调,而无翅蚜虫的胰岛素相关肽 5 水平上调。这些发现表明,A. pisum 在有翅成虫阶段合成海藻糖作为飞行的能量来源。

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