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有益土壤真菌通过转运至动物肠道的脱氢肽杀死捕食性线虫。

Beneficial Soil Fungus Kills Predatory Nematodes with Dehydropeptides Translocating into the Animal Gut.

作者信息

Büttner Hannah, Rassbach Johannes, Schultz Constanze, Popp Jürgen, Gressler Markus, Hertweck Christian

机构信息

Leibniz Institute for Natural Product Research and Infection Biology, Hans Knöll Institute, Beutenbergstraße 11a, 07745 Jena, Germany.

Institute of Pharmacy, Pharmaceutical Microbiology, Faculty of Biological Sciences, Friedrich Schiller University Jena, 07743 Jena, Germany.

出版信息

J Am Chem Soc. 2024 Dec 18;146(50):34702-34710. doi: 10.1021/jacs.4c12989. Epub 2024 Dec 9.

Abstract

is a mold fungus that has gained attention for its positive correlation with soil health, plant growth, and applications as a crop biocontrol agent to suppress the threats of nematode pests. To date, the mechanisms underlying the protective traits of against these plant parasites have remained elusive. Here we report that abundantly produced peptidic biosurfactants, malpinin A-D, exhibit robust inhibitory activity against nematodes. Nematode assays with malpinin congeners and chemically synthesized analogues revealed that the dehydro amino acid is critical for activity, whereas the -terminal amino acid residues modulate the lipophilicity. Complementary imaging by fluorescence microscopy and Raman microspectroscopy, using externally fluorescence-labeled, semisynthetic malpinin or a biosynthetically alkyne-tagged probe generated by precursor-directed biosynthesis, visualized the translocation and enrichment of malpinin in the gut of the model nematode . Our findings provide valuable insight into the use of as a biocontrol agent, emphasizing the ecologically significant role of malpinins as a protective trait. In addition to solving a long-standing riddle, these findings have translational value for applications in agriculture.

摘要

是一种霉菌,因其与土壤健康、植物生长的正相关关系以及作为作物生物防治剂抑制线虫害虫威胁的应用而受到关注。迄今为止,其对抗这些植物寄生虫的保护特性背后的机制仍不清楚。在这里,我们报告大量产生的肽类生物表面活性剂马尔皮宁A-D对线虫具有强大的抑制活性。用马尔皮宁同系物和化学合成类似物进行的线虫试验表明,脱氢氨基酸对活性至关重要,而末端氨基酸残基调节亲脂性。通过荧光显微镜和拉曼显微光谱进行的补充成像,使用外部荧光标记的半合成马尔皮宁或通过前体导向生物合成产生的生物合成炔烃标记探针,可视化了马尔皮宁在模式线虫肠道中的转运和富集。我们的发现为将其用作生物防治剂提供了有价值的见解,强调了马尔皮宁作为一种保护特性的生态重要作用。除了解决一个长期存在的谜团外,这些发现对农业应用具有转化价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/656d/11664578/75e6c345a2d4/ja4c12989_0001.jpg

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