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对致病信号的感知启动了代际保护。

Perception of a pathogenic signature initiates intergenerational protection.

作者信息

Pender Corinne L, Dishart Julian G, Gildea Holly K, Nauta Kelsie M, Page Emily M, Siddiqi Talha F, Cheung Shannon S, Joe Larry, Burton Nicholas O, Dillin Andrew

机构信息

Department of Molecular & Cellular Biology, University of California, Berkeley, Berkeley, CA 94720, USA.

Helen Wills Neuroscience Institute, University of California, Berkeley, Berkeley, CA 94720, USA.

出版信息

Cell. 2025 Feb 6;188(3):594-605.e10. doi: 10.1016/j.cell.2024.11.026. Epub 2024 Dec 24.

Abstract

Transmission of immune responses from one generation to the next represents a powerful adaptive mechanism to protect an organism's descendants. Parental infection by the natural C. elegans pathogen Pseudomonas vranovensis induces a protective response in progeny, but the bacterial cues and intergenerational signal driving this response were previously unknown. Here, we find that animals activate a protective stress response program upon exposure to P. vranovensis-derived cyanide and that a metabolic byproduct of cyanide detoxification, β-cyanoalanine, acts as an intergenerational signal to protect progeny from infection. Remarkably, this mechanism does not require direct parental infection; rather, exposure to pathogen-derived volatiles is sufficient to enhance the survival of the next generation, indicating that parental surveillance of environmental cues can activate a protective intergenerational response. Therefore, the mere perception of a pathogen-derived toxin, in this case cyanide, can protect an animal's progeny from future pathogenic challenges.

摘要

免疫反应从一代传递到下一代是一种强大的适应性机制,可保护生物体的后代。秀丽隐杆线虫的天然病原体弗拉诺夫假单胞菌感染亲代,会在子代中诱导出一种保护反应,但此前驱动这种反应的细菌信号和代际信号尚不清楚。在这里,我们发现动物在接触源自弗拉诺夫假单胞菌的氰化物后会激活一种保护性应激反应程序,并且氰化物解毒的一种代谢副产物β-氰基丙氨酸作为一种代际信号,保护子代免受感染。值得注意的是,这种机制不需要亲代直接感染;相反,接触病原体衍生的挥发物就足以提高下一代的存活率,这表明亲代对环境信号的监测可以激活一种保护性的代际反应。因此,仅仅感知到一种病原体衍生的毒素,在这种情况下是氰化物,就可以保护动物的后代免受未来致病挑战。

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