Cymbopogon citratus Allelochemical Volatiles as Potential Biopesticides against the Pinewood Nematode

Plants Pub Date : 2024-08-12 DOI:10.3390/plants13162233
Jorge M. S. Faria, Pedro Barbosa
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Abstract

Traditional pesticides are based on toxic compounds that can reduce biodiversity, degrade the environment, and contribute to less healthy living. Plant allelochemicals can provide more environmentally friendly and sustainable alternatives. Essential oils (EOs) are complex mixtures of plant secondary metabolites that show strong biological activities. In the present study, the EOs of Cymbopogon citratus were screened for activity against the pinewood nematode (PWN), the causal agent of pine wilt disease. To understand their nematicidal properties, EOs were fractioned into hydrocarbon molecules and oxygen-containing compounds, and their main compounds were acquired and tested separately against the PWN. The EO oxygen-containing molecules fraction was highly active against the PWN (EC50 = 0.279 µL/mL), with citral and geraniol showing higher activities (EC50 = 0.266 and 0.341 µL/mL, respectively) than emamectin benzoate (EC50 = 0.364 µL/mL), a traditional nematicide used against the PWN. These compounds were additionally reported to be less toxic to non-target organisms (fish, invertebrates, and algae) and safer to human health (with higher reported toxicity thresholds) and predicted to exert fewer environmental impacts than traditional nematicides. Resorting to approved natural compounds can quickly leverage the development of sustainable alternatives to traditional nematicides.
作为潜在生物杀虫剂防治松材线虫的香茅挥发物
传统杀虫剂以有毒化合物为基础,会减少生物多样性,恶化环境,降低生活健康水平。植物等位化学物质可以提供更环保、更可持续的替代品。精油(EOs)是植物次生代谢产物的复杂混合物,具有很强的生物活性。在本研究中,筛选了柠檬香蒲的 EOs 对松材线虫(PWN)(松树枯萎病的病原体)的活性。为了了解它们的杀线虫特性,研究人员将环氧乙烷分成碳氢化合物分子和含氧化合物,并获得其主要化合物,分别对其进行了抗松材线虫测试。环氧乙烷含氧分子部分对枯萎病菌具有很高的活性(EC50 = 0.279 µL/mL),其中柠檬醛和香叶醇的活性(EC50 = 0.266 和 0.341 µL/mL)高于苯甲酸阿维菌素(EC50 = 0.364 µL/mL),后者是一种用于防治枯萎病菌的传统杀线虫剂。此外,据报道这些化合物对非目标生物(鱼类、无脊椎动物和藻类)的毒性较低,对人类健康更安全(据报道毒性阈值较高),预计对环境的影响也小于传统的杀线虫剂。利用已获批准的天然化合物可迅速促进传统杀线虫剂可持续替代品的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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