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杀线虫剂查耳酮在不破坏土壤微生物多样性且对人类细胞毒性有限的情况下具有协同作用。

Nematicide Chalcones Act Synergistically on and Without Disrupting Soil Microbial Diversity and with Limited Toxicity to Human Cells.

作者信息

Calderón-Urrea Alejandro, Shinde Shantanu, Kendoyan Sosse, Jovanovic Vukasin M, Ryu Seungmi, Tristan Carlos A

机构信息

Department of Biology, California State University, Fresno, CA 93740, USA.

Department of Biology, Madera Community College, Madera, CA 93638, USA.

出版信息

Molecules. 2025 Sep 5;30(17):3624. doi: 10.3390/molecules30173624.

Abstract

Plant Parasitic Nematodes (PPNs), such as , cause significant agricultural losses worldwide. Conventional nematicides like methyl bromide are being phased out due to environmental and health concerns, prompting the search for safer alternatives. In previous studies, chalcones , , and , flavonoid compounds, were shown to effectively kill the model nematode at concentrations of 10 M. However, the potential of these chalcones to act synergistically at lower concentrations has not been explored. In this study, the nematicidal efficacy of chalcones , , and was evaluated individually and in combination at concentrations as low as 10 M. The results demonstrate a strong synergistic effect, with combinations achieving 90-100% mortality in within 3 days. Additionally, the combination index method revealed significant toxic effects against with chalcones and in binary and ternary combinations. To assess the effects of these chalcones on nontarget organisms, chalcones were also tested for antimicrobial activity against soil bacteria; analysis of soil microbiota using 16S rRNA sequencing indicated that chalcones did not significantly disrupt microbial populations. Furthermore, tests on human pluripotent stem cells (hPSCs) reveal no major effects on the viability of these cells at concentrations as high as the concentrations needed to kill nematodes. These findings highlight the potential of chalcones , , and for effective nematode control without harming soil bacteria or human cells.

摘要

植物寄生线虫(PPNs),如 ,在全球范围内造成了重大的农业损失。由于环境和健康问题,像甲基溴这样的传统杀线虫剂正在逐步淘汰,这促使人们寻找更安全的替代品。在先前的研究中,查耳酮 、 和 (黄酮类化合物)在10 μM的浓度下被证明能有效杀死模式线虫 。然而,这些查耳酮在较低浓度下协同作用的潜力尚未得到探索。在本研究中,对查耳酮 、 和 的杀线虫效果进行了单独评估,并在低至10 μM的浓度下进行了组合评估。结果显示出很强的协同效应,组合在3天内对 实现了90 - 100%的死亡率。此外,组合指数法揭示了查耳酮 和 在二元和三元组合中对 具有显著的毒性作用。为了评估这些查耳酮对非靶标生物的影响,还测试了查耳酮对土壤细菌的抗菌活性;使用16S rRNA测序对土壤微生物群进行分析表明,查耳酮不会显著破坏微生物种群。此外,对人类多能干细胞(hPSCs)的测试表明,在高达杀死线虫所需的浓度下,这些细胞的活力没有受到重大影响。这些发现突出了查耳酮 、 和 在有效控制线虫方面的潜力,同时不会伤害土壤细菌或人类细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5975/12430292/d671481c2339/molecules-30-03624-g001.jpg

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