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首页> 外文期刊>Insect Biochemistry and Molecular Biology >GC/MS-based metabolomics analysis reveals active fatty acids biosynthesis in the Filippi's gland of the silkworm, Bombyx mori, during silk spinning
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GC/MS-based metabolomics analysis reveals active fatty acids biosynthesis in the Filippi's gland of the silkworm, Bombyx mori, during silk spinning

机译:基于GC / MS的代谢组科分析显示,在丝绸纺纱期间,蚕丝蚕丝蚕丝腺体中的活性脂肪酸生物合成

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摘要

The Filippi's gland, also called the Lyonet's gland, is in truth a pair of tiny glands that are unique to lepidopteran insects. Although the ultrastructure of the Filippi's gland has been well-understood, the specific biological function of this gland in silk spinning is still unclear. Previous studies proposed a hypothesis that this gland might synthesize and secrete some substances into the anterior silk gland (ASG) to help silk spinning. In order to identify these metabolites, a GC/MS-based metabolomics technique was introduced. A total of 59 metabolites, including fatty acids, amino acids, and sugars, were identified in glands from silkworm larvae in the feeding and silk spinning stages. Abundance and pathway analyses revealed that these metabolites had different abundances during gland development and silk spinning, which may facilitate the transport of small molecules and ions. The most interesting result is that the Filippi's gland has a very active fatty acid biosynthesis process during spinning, suggesting that it may synthesize lipids or waxes and secrete them into the ASG to promote silk spinning. This data provides instructive insight into the biological functions of Filippi's gland from both silkworms and other lepidoptera.
机译:Filippi的腺体,也称为Lyonet的腺体,真是一对微小的腺,对鳞翅目昆虫独有。虽然Filippi的压盖的超微结构得到了很好的理解,但这种腺体在丝绸纺丝的具体生物功能仍然尚不清楚。以前的研究提出了一个假设,即这种腺体可能将一些物质分泌到前丝腺(ASG)中以帮助丝绸旋转。为了鉴定这些代谢物,介绍了GC / MS基代谢组技术。总共59种代谢物,包括脂肪酸,氨基酸和糖,在饲养和丝绸纺丝阶段的蚕丝幼虫中鉴定在蚕丝虫中。丰富和途径分析显示,这些代谢物在腺体开发和丝绸纺纱期间具有不同的丰富,这可能促进小分子和离子的运输。最有趣的结果是纺丝腺体在旋转过程中具有非常活跃的脂肪酸生物合成过程,表明它可以合成脂质或蜡,并将它们分泌到ASG中以促进丝绸纺丝。该数据提供了对来自蚕和其他鳞翅目的Filippi腺体的生物功能的有效洞察力。

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