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丝状真菌与葫芦素杀线虫剂对豇豆生长及[此处原文不完整,无法准确翻译缺失部分]抑制的交互作用

Interactive Effects of Filamentous Fungi and Cucurbitacin Phytonematicide on Growth of Cowpea and Suppression of .

作者信息

Pofu Kgabo Martha, Mashela Phatu William

机构信息

Plant Production, Soil Science and Agricultural Engineering, Green Biotechnologies Research Centre of Excellence, University of Limpopo, Sovenga, South Africa.

出版信息

Front Microbiol. 2022 Feb 8;13:765051. doi: 10.3389/fmicb.2022.765051. eCollection 2022.

Abstract

Cowpea [( (L.) Walp)] is highly susceptible to the emerging guava root-knot nematode, , with available management options being limited due to the withdrawal of effective fumigant nematicides from the agrochemical markets. Filamentous fungi, available as Biocult (a.i. species + Lieckf and Nirenberg) and Nemafric-BL phytonematicide (a.i. cucurbitacin B) each improves plant growth and suppresses nematode population densities. However, when filamentous fungi like Biocult are combined with other biocontrol agents, the combined effects either have synergestic or antagonistic effects on the test variables. The combined effects of Biocult and cucurbitacin phytonematicides on plant growth and nematode suppression remain undocumented. The objective of this study was therefore to determine the combined effects of Biocult and Nemafric-BL phytonematicide on growth of cowpea var. Eureka and suppression of population densities. Eureka was subjected to the effects of the two products in a 2 × 2 factorial experiment on a field infested with . At harvest, the interaction of Biocult and Nemafric-BL phytonematicide was highly significant ( ≤ 0.01) on plant and nematode variables, with a two-way table used to assess the findings. Relative to untreated control, Biocult alone increased plant growth variables from 15 to 74%. Similarly, NemafricBL phytonematicide increased plant variables from 14 to 61%, whereas the combined effects significantly increased dry shoot mass (19%) and dry harvestable leaf mass (21%), but did not have significant effects on plant height and stem diameter. Relative to untreated control, Biocult alone reduced nematode eggs in root (80%), J2 in root (84%) and J2 in soil (53%), whereas the combined relative effects of the two products did not have significant effects on nematode population densities. In conclusion, Biocult and Nemafric-BL phytonematicide had antagonistic effects on growth of cowpea and suppression of population densities and therefore, should be used separately in cowpea production.

摘要

豇豆[((L.)Walp)]对新出现的番石榴根结线虫高度敏感,由于有效的熏蒸性杀线虫剂从农用化学品市场撤出,现有的管理选择有限。丝状真菌,如作为Biocult(有效成分 种 + Lieckf和Nirenberg)和Nemafric - BL植物杀线虫剂(有效成分葫芦素B)可提高植物生长并抑制线虫种群密度。然而,当像Biocult这样的丝状真菌与其他生物防治剂联合使用时,联合效应要么对测试变量具有协同作用,要么具有拮抗作用。Biocult和葫芦素植物杀线虫剂对植物生长和线虫抑制的联合效应尚未见报道。因此,本研究的目的是确定Biocult和Nemafric - BL植物杀线虫剂对豇豆品种Eureka生长和 种群密度抑制的联合效应。在一个受 侵染的田间进行2×2析因试验,使Eureka受到这两种产品的影响。收获时,Biocult和Nemafric - BL植物杀线虫剂的相互作用对植物和线虫变量具有极显著影响( ≤ 0.01),用双向表来评估结果。相对于未处理的对照,单独使用Biocult可使植物生长变量提高15%至74%。同样,NemafricBL植物杀线虫剂可使植物变量提高14%至61%,而联合效应显著增加了干茎质量(19%)和可收获干叶质量(21%),但对株高和茎直径没有显著影响。相对于未处理的对照,单独使用Biocult可减少根内线虫卵(80%)、根内J2(84%)和土壤中J2(53%),而两种产品的联合相对效应对线虫种群密度没有显著影响。总之,Biocult和Nemafric - BL植物杀线虫剂对豇豆生长和 种群密度抑制具有拮抗作用,因此,在豇豆生产中应单独使用。

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