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首页> 外文期刊>Journal of Agricultural Science >Effectiveness of Silver Nanoparticles against Root-Knot Nematode, Meloidogyne incognita Infecting Tomato under Greenhouse Conditions
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Effectiveness of Silver Nanoparticles against Root-Knot Nematode, Meloidogyne incognita Infecting Tomato under Greenhouse Conditions

机译:温室条件下银纳米颗粒对根结线虫,南方根结线虫感染番茄的有效性

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Root-knot nematode, Meloidogyne incognita is the most economically important plant parasitic nematode species that cause serious damage to most agricultural crops including tomato worldwide. Nematicides do not provide long-term suppression of root-knot nematodes, and environmental and human health concerns are resulting in increased restrictions on their use. A greenhouse experiment was conducted to evaluate the effect of silver nanoparticles (AgNPs) at concentrations of 0.25, 0.5 and 1 mM as a potential nematicide on M. incognita infecting tomato. AgNP was biologically and chemically synthesized by a reaction of silver nitrate with ginger ( Zingiber officinale ) rhizomes aqueous extract and sodium borohydride, respectively. Results indicated that application of AgNPs improved plant growth and reduced nematode infection in comparison to silver nitrate and control treatments. The highest increment of fresh weight as well as the lowest numbers of galls and egg-masses was obtained when tomato plants was treated with AgNP produced by ginger extract at 1 mM.
机译:根结线虫(Meloidogyne incognita)是经济上最重要的植物寄生线虫,对全世界包括番茄在内的大多数农作物造成严重破坏。杀线虫剂不能长期抑制根结线虫,对环境和人类健康的关注正导致对其使用的限制增加。进行了温室实验以评估浓度为0.25、0.5和1 mM的银纳米颗粒(AgNPs)作为潜在的杀线虫剂对感染番茄隐孢子虫的影响。 AgNP是通过硝酸银与生姜根茎水提物和硼氢化钠的反应生物学和化学合成的。结果表明,与硝酸银和对照处理相比,应用AgNPs可以改善植物生长并减少线虫感染。当用1 mM的姜提取物生产的AgNP处理番茄植株时,鲜重增加最高,胆汁和卵子数量最少。

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