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不同浓度的2-十一酮对线虫引发驱避和杀线虫反应。

Different concentrations of 2-Undecanone triggers repellent and nematicidal responses in Caenorhabditis elegans.

作者信息

Dai Wei, Zhai Yile, Yang Fan, Chen Wen, Liu Chen, Tian Yaru, Huang Feng, Cai Minmin, Zheng Longyu, Cheng Wanli, Chen Weidong, Zhang Jibin

机构信息

National Key Laboratory of Agricultural Microbiology, College of Life Science and Technology, National Engineering Research Center of Microbial Pesticides, Huazhong Agricultural University, Wuhan, 430070, China.

The Second Hospital, Cheeloo College of Medicine, Shandong University, Jinan, 250033, Shandong, China.

出版信息

Sci Rep. 2025 Apr 23;15(1):14186. doi: 10.1038/s41598-025-95332-z.

Abstract

The compound 2-undecanone is widely distributed in the natural environment and exhibits a dual-action mechanism against nematodes. It demonstrates repellency and contact toxicity against both Caenorhabditis elegans and Meloidogyne incognita. However, research on the dual-function mechanism of 2-undecanone remains relatively limited. In this study, using chemotaxis experiments, we found that 2-undecanone (at concentrations of 1-5 mg/mL) signal is detected through AWB olfactory sensory neurons in nematode, and then transduced through the cGMP pathway to induce repellent behavior. Moreover, we observed that 2-undecanone (at concentrations of 0.06-0.08 mg/mL) induces intracellular calcium accumulation and causes lysosomal membrane rupture. We further identified Hsp70 A and V-ATPase A as the targets of 2-undecanone responsible for its contact killing effect. Furthermore, 2-undecanone was found to alter sphingomyelin metabolism in both wild-type C. elegans and hsp-1 mutants. This alteration led to decreased acid sphingomyelinase activity, reduced ceramide levels, and increased sphingomyelin levels. These results indicated that 2-undecanone has dual functions and two target receptors Hsp70 A and V-ATPase A against nematodes, and one AWB olfactory neuron repelled nematodes. The dual-action mode of 2-undecanone can decrease the nematodes' tolerance to the compound appropriately, extending its efficacy duration. Understanding the dual function mechanism of action of 2-undecanone will aid in devising innovative approaches for managing nematode control.

摘要

化合物2-十一酮广泛分布于自然环境中,对线虫具有双重作用机制。它对秀丽隐杆线虫和南方根结线虫均表现出驱避性和接触毒性。然而,关于2-十一酮双重功能机制的研究仍然相对有限。在本研究中,通过趋化性实验,我们发现2-十一酮(浓度为1-5毫克/毫升)信号通过线虫的AWB嗅觉感觉神经元被检测到,然后通过cGMP途径进行转导以诱导驱避行为。此外,我们观察到2-十一酮(浓度为0.06-0.08毫克/毫升)诱导细胞内钙积累并导致溶酶体膜破裂。我们进一步确定Hsp70 A和V-ATPase A是2-十一酮产生接触杀伤作用的靶点。此外,发现2-十一酮会改变野生型秀丽隐杆线虫和hsp-1突变体中的鞘磷脂代谢。这种改变导致酸性鞘磷脂酶活性降低、神经酰胺水平降低和鞘磷脂水平升高。这些结果表明,2-十一酮对线虫具有双重功能和两个靶标受体Hsp70 A和V-ATPase A,并且一个AWB嗅觉神经元可驱避线虫。2-十一酮的双重作用模式可适当降低线虫对该化合物的耐受性,延长其药效持续时间。了解2-十一酮的双重作用机制将有助于设计创新的线虫防治方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e9c/12019385/79c891f83fb6/41598_2025_95332_Fig1_HTML.jpg

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