Chrisantus Khaoya Martine, Sarah Chepkwony, Dorcas Lusweti, Ramkat Rose Chepchirchir, Oduori Chrispus O A, Pili Njira Njira
Department of Biological Sciences Moi University Eldoret Kenya.
Department of Chemistry and Biochemistry Moi University Eldoret Kenya.
Plant Environ Interact. 2024 Aug 20;5(4):e70006. doi: 10.1002/pei3.70006. eCollection 2024 Aug.
Plant-parasitic nematodes pose a significant threat to finger millet crops, potentially causing yield reduction of up to 70%. Extracts derived from finger millet varieties contain potent bioactive compounds that can mitigate nematode damage and promote plant growth. This study aimed at isolating and characterizing bioactive compounds from the finger millet varieties Ikhulule, Okhale-1, and U-15; evaluating the impact of Ikhulule and U-15 extracts on the mortality of the root lesion nematode ; assessing the growth promotion effects of Ikhulule and U-15 extracts on the finger millet variety Okhale-1; and determining the efficacy of these extracts in managing plant-parasitic nematodes under greenhouse conditions. Extracts were obtained from both leaves and roots and tested in vitro for nematode mortality and in vivo for growth promotion and nematode control. The results showed that finger millet extracts exhibited strong nematicidal properties in vitro, achieving a mortality rate of up to 98% against nematodes. Applying these extracts to finger millet shoots significantly reduced nematode populations in both soil and roots and decreased the reproductive factor to below one (1), indicating an effective nematode control. The study attributes the enhanced nematicidal effects of finger millet extracts to their bioactive compounds, particularly dodecanoic acid, phytol, 1,1,4a-trimethyl-6-decahydro naphthalene, 2,3-dihydro-benzofuran, 2-methoxy-4-vinylphenol and ethyl ester, and hexadecanoic acid. These findings suggest that finger millet-derived extracts offer a natural solution for nematode management and broader agronomic benefits, ultimately contributing to overall plant health and productivity.
植物寄生线虫对黍稷作物构成重大威胁,可能导致产量降低高达70%。黍稷品种提取物含有能减轻线虫损害并促进植物生长的强效生物活性化合物。本研究旨在从黍稷品种伊胡卢勒、奥卡勒 - 1和U - 15中分离并鉴定生物活性化合物;评估伊胡卢勒和U - 15提取物对根腐线虫死亡率的影响;评估伊胡卢勒和U - 15提取物对黍稷品种奥卡勒 - 1的生长促进作用;并确定这些提取物在温室条件下防治植物寄生线虫的效果。从叶片和根部获取提取物,并在体外测试其对线虫死亡率的影响,在体内测试其对生长促进和线虫防治的效果。结果表明,黍稷提取物在体外表现出很强的杀线虫特性,对线虫的死亡率高达98%。将这些提取物施用于黍稷嫩枝显著减少了土壤和根部的线虫数量,并使繁殖系数降至1以下,表明对线虫有有效的防治作用。该研究将黍稷提取物增强的杀线虫作用归因于其生物活性化合物,特别是十二烷酸、叶绿醇、1,1,4a - 三甲基 - 6 - 十氢萘、2,3 - 二氢苯并呋喃、2 - 甲氧基 - 4 - 乙烯基苯酚及其乙酯以及十六烷酸。这些发现表明,黍稷提取物为线虫管理提供了一种天然解决方案,并具有更广泛的农艺效益,最终有助于整体植物健康和生产力。