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首页> 外文期刊>Egyptian Journal of Biological Pest Control >Optimizing biological control agents for controlling nematodes of tomato in Egypt
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Optimizing biological control agents for controlling nematodes of tomato in Egypt

机译:优化埃及线虫控制线虫的生物控制剂

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Tomato is a major vegetable crop in Egypt and worldwide. Yet, many plant-parasitic nematodes (PPNs), especially Meloidogyne spp. and Rotylenchulus reniformis are a devastating threat to tomato cultivation in Egypt. This review addresses their biology, ecology, and economic importance from the standpoint of pest management. Soil treatment with synthetic nematicides has given some protection and enhanced tomato yields, but health hazards and environmental pollution are obstructing their intensive use. Moreover, some of such nematicides are being banned from the market. Therefore, safe biological control agents (BCAs) and their bioactive compounds should better be researched and developed to effectively replace hazardous nematicides. Abamectin, produced during the fermentation process of the actinomycete Streptomyces avermitilis, is recommended to manage PPNs of tomato in Egypt but further exploration should allocate where BCAs can reliably act with other agricultural inputs. Examples are given herein to streamline their development via synergistic interaction with compatible inputs such as chemicals and organic manure. Moreover, optimizing their delivery, interaction, and persistence under field conditions through novel ways such as the use of endophytic fungi and bacteria as well as bioactive molecules/nano-particles that have systemic activity in the nematode-infected plants should further be investigated and broadly disseminated.
机译:番茄是埃及和全球的主要蔬菜作物。然而,许多植物寄生线虫(PPN),特别是Meloidogyne SPP。而Rotylechululululuenis是对埃及番茄栽培的毁灭性威胁。本次审查解决了害虫管理观点的生物学,生态和经济意义。用合成界毒剂处理的土壤处理具有一些保护和增强的番茄产量,但健康危害和环境污染正在阻碍他们的密集使用。此外,一些这些境征被禁止从市场禁止。因此,应更好地研究和开发安全的生物对照剂(BCAS)及其生物活性化合物以有效取代危险的杀虫剂。在Actinomycete Streptomyces Avermitilis的发酵过程中产生的Abamectin建议在埃及管理番茄的PPN,但进一步的探索应该在BCA可以与其他农业投入可靠行动。本文给出了实施例,通过与诸如化学品和有机粪肥的相容输入的协同相互作用来简化其开发。此外,通过新颖的方式优化现场条件下的递送,相互作用和持续性,例如使用内生真菌和细菌以及在线虫感染的植物中具有全身活性的生物活性分子/纳米颗粒,并广泛地研究传播。

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