Identification of bioactive compounds in cavalcade leaves for nematicidal activity against Hirschmanniella mucronata and Meloidogyne graminicola using LC-QTOF-MS

IF 2.5 2区 农林科学 Q1 AGRONOMY Crop Protection Pub Date : 2024-08-02 DOI:10.1016/j.cropro.2024.106875
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Abstract

Hirschmanniella mucronata and Meloidogyne graminicola are the main plant-parasitic nematodes found in paddy fields in Thailand causing significant rice production yield losses. Although these nematodes are found widely in fields, an effective management method has not been documented. Here, we examined the nematicidal effects of different cavalcade leaf ages (1-, 2- and 3-month-old), used as aqueous extracts and soil amendments, on H. mucronata and M. graminicola. In vitro tests evidenced maximum mortality of H. mucronata (55.6–60.0%) in 50 mg ml−1 extract from all leaf ages, while mortality (65.9%) and hatchability (67.0%) of M. graminicola second-stage juveniles were observed in 50 mg ml−1 extract from 1-month-old leaves only. Moreover, aqueous extracts of cavalcade showed a repellent effect on both nematodes. Similarly, greenhouse experiments showed a significant reduction of H. mucronata population densities and reproduction of M. graminicola in soil amended with 0.5 and 1.0% (w/w) from each leaf age. LC-QTOF-MS analysis determined that three bioactive compounds, including quercetin, rutin, and kaempferol, are associated with the nematicidal activity of cavalcade against H. mucronata and M. graminicola. The information derived from this study indicates that the leaves of cavalcade are a source of promising phytonematicidals. This is the first study to assess and document its potential for nematicidal activity against H. mucronata and M. graminicola in Thailand. However, further research is needed to evaluate their efficacy under paddy field conditions.

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利用 LC-QTOF-MS 鉴别鱼腥草叶片中的生物活性化合物对粘毛蓟马和禾谷圆线虫的杀线虫活性
泰国水稻田中发现的主要植物寄生线虫是 Hirschmanniella mucronata 和 Meloidogyne graminicola,它们对水稻产量造成了重大损失。虽然这些线虫广泛存在于田间,但有效的管理方法尚未见诸文献。在此,我们研究了不同叶龄(1 个月、2 个月和 3 个月)的鱼腥草叶片作为水提取物和土壤改良剂对 H. mucronata 和 M. graminicola 的杀线虫效果。体外测试表明,在所有叶龄的 50 mg ml-1 提取物中,粘虫的死亡率最高(55.6-60.0%),而在 50 mg ml-1 的 1 个月叶龄提取物中,禾谷蝇第二阶段幼虫的死亡率(65.9%)和孵化率(67.0%)均有所提高。此外,鱼腥草的水提取物对这两种线虫都有驱避作用。同样,温室实验表明,在添加了 0.5% 和 1.0% (重量/重量)各龄叶片提取物的土壤中,粘盘线虫的种群密度和禾谷线虫的繁殖率都显著降低。LC-QTOF-MS 分析表明,槲皮素、芦丁和山柰酚等三种生物活性化合物与鱼腥草对粘孢子虫和禾谷丝核菌的杀线虫活性有关。这项研究得出的信息表明,鱼腥草的叶子是一种很有前景的植物杀线虫素的来源。这是泰国首次评估和记录其对粘孢子虫和禾谷介壳虫的潜在杀线虫活性的研究。不过,还需要进一步研究,以评估其在稻田条件下的功效。
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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来源期刊
Crop Protection
Crop Protection 农林科学-农艺学
CiteScore
6.10
自引率
3.60%
发文量
200
审稿时长
29 days
期刊介绍: The Editors of Crop Protection especially welcome papers describing an interdisciplinary approach showing how different control strategies can be integrated into practical pest management programs, covering high and low input agricultural systems worldwide. Crop Protection particularly emphasizes the practical aspects of control in the field and for protected crops, and includes work which may lead in the near future to more effective control. The journal does not duplicate the many existing excellent biological science journals, which deal mainly with the more fundamental aspects of plant pathology, applied zoology and weed science. Crop Protection covers all practical aspects of pest, disease and weed control, including the following topics: -Abiotic damage- Agronomic control methods- Assessment of pest and disease damage- Molecular methods for the detection and assessment of pests and diseases- Biological control- Biorational pesticides- Control of animal pests of world crops- Control of diseases of crop plants caused by microorganisms- Control of weeds and integrated management- Economic considerations- Effects of plant growth regulators- Environmental benefits of reduced pesticide use- Environmental effects of pesticides- Epidemiology of pests and diseases in relation to control- GM Crops, and genetic engineering applications- Importance and control of postharvest crop losses- Integrated control- Interrelationships and compatibility among different control strategies- Invasive species as they relate to implications for crop protection- Pesticide application methods- Pest management- Phytobiomes for pest and disease control- Resistance management- Sampling and monitoring schemes for diseases, nematodes, pests and weeds.
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