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超氧化物歧化酶 6 在三化螟变态过程中对于正常可动腿的发育是必需的。

Superoxide dismutase 6 is required during metamorphosis for the development of properly movable legs in Tribolium castaneum.

机构信息

Department of United Graduate School of Agricultural Science, Tokyo University of Agriculture and Technology, 3-5-8 Saiwai-cho, Fuchu, Tokyo, 183-8509, Japan.

Institute of Global Innovation Research, Tokyo University of Agriculture and Technology, 3-5-8 Saiwai-cho, Fuchu, Tokyo, 183-8509, Japan.

出版信息

Sci Rep. 2022 Apr 27;12(1):6900. doi: 10.1038/s41598-022-10166-3.

Abstract

The body form of holometabolous insects dramatically transforms from larval to adult stages during metamorphosis that occurs in the pupal stage. The larval disorganization and then new adult tissues are built up at this time. In motoneuron, larval neuronal cells degenerate, and new adult neurons are remodeled. Finally, adult neurons reconnect to new adult muscles. However, the factors that control metamorphosis have not yet been fully elucidated. Here, we show that an antioxidant enzyme, Tribolium castaneum superoxide dismutase 6 (TcSOD6), is secreted into the haemolymph and is required for proper movable legs during metamorphosis. TcSOD6 has a unique domain architecture and is mainly expressed in the pupal stage. The depletion of TcSOD6 expression in the pupa inhibits normal axon development and results in adults that display dysfunctional leg motions, suggesting that SOD6 expression is required for the development of properly movable legs. Therefore, we speculate that TcSOD6 might participate in some of the processes for larval neurons to be remodelled to new adult functions in the legs during metamorphosis, providing new insight into the evolution of SOD functions.

摘要

在变态过程中,全变态昆虫的身体形态从幼虫阶段到成虫阶段发生显著变化,变态发生在蛹期。此时,幼虫组织解体,然后新的成虫组织构建。在运动神经元中,幼虫神经元细胞退化,新的成年神经元被重塑。最后,成年神经元重新连接到新的成年肌肉上。然而,控制变态的因素尚未完全阐明。在这里,我们表明一种抗氧化酶,即 TcSOD6(黑腹果蝇超氧化物歧化酶 6),分泌到血淋巴中,并在变态过程中对正常的可动腿是必需的。TcSOD6 具有独特的结构域架构,主要在蛹期表达。在蛹中耗尽 TcSOD6 的表达会抑制正常的轴突发育,导致成虫出现运动功能障碍的腿部运动,这表明 SOD6 的表达对于可动腿的正常发育是必需的。因此,我们推测 TcSOD6 可能参与了一些过程,使幼虫神经元在变态过程中重塑为新的成年功能,为 SOD 功能的进化提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d374/9046187/6e6da6ae6586/41598_2022_10166_Fig1_HTML.jpg

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