Functional characterization of Lipid storage droplets 1 (LSD1) in growth and lipolysis of Hermetia illucens

Yuguo Jiang, Zongqing Kou, Bihui Chen, Yongping Huang
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Abstract

As intracellular organelles in adipose tissue, lipids droplets manage the balance between triglyceride accumulation and energy consumption in animals. Perilipin family members, associated with surface of lipid droplets, participate the regulation of lipid metabolism. Lipid storage droplet-1 (LSD1)/Perilipin-1 acts as a gatekeeper for adipose lipid storage in animals. Despite extensive studies in fruit fly, the function of LSD1 in insect larval stage remain indistinct. In this study, we characterized the function of LSD1 in black soldier fly Hermetia illucens, a nova resource insect to recycle organic wastes. We found that LSD1 was broadly present in dipteran species and evolved with divergence between mosquitos and flies. We further constructed in vivo mutagenesis mediated by CRISPR/Cas9 and found that mutations in LSD1 increased the larval weight and did not bring any defects in development. Raw fat content was also not significantly influenced in late larval stage and new-emerged adults. Our results not only extend our knowledge of LSD1 in insects, but also help for better understanding of the lipid homeostasis in BSF.
脂质贮存液滴 1 (LSD1) 在赫梅蒂亚麻属植物生长和脂肪分解过程中的功能表征
脂滴作为脂肪组织的细胞内细胞器,负责管理动物体内甘油三酯积累和能量消耗之间的平衡。与脂滴表面相关的 Perilipin 家族成员参与了脂质代谢的调控。脂质储存液滴-1(LSD1)/ Perilipin-1 是动物脂肪脂质储存的看门人。尽管对果蝇进行了大量研究,但 LSD1 在昆虫幼虫阶段的功能仍不明确。在本研究中,我们研究了LSD1在黑兵器蝇(Hermetia illucens)中的功能,黑兵器蝇是一种回收有机废物的新资源昆虫。我们发现 LSD1 广泛存在于双翅目昆虫中,并随着蚊子和苍蝇的分化而进化。我们进一步构建了由 CRISPR/Cas9 介导的体内诱变,发现 LSD1 的突变增加了幼虫的体重,并且不会带来任何发育缺陷。在幼虫晚期和刚出生的成虫中,原始脂肪含量也没有受到明显影响。我们的研究结果不仅扩展了我们对昆虫中 LSD1 的认识,而且有助于更好地理解 BSF 的脂质平衡。
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