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首页> 外文期刊>BMC Microbiology >Isolation and effect of Trichoderma citrinoviride Snef1910 for the biological control of root-knot nematode, Meloidogyne incognita
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Isolation and effect of Trichoderma citrinoviride Snef1910 for the biological control of root-knot nematode, Meloidogyne incognita

机译:Trichoderma Citrinoviride Snef1910对根结线虫生物控制的分离与效果,Meloidogyne incognita

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Root-knot nematode is one of the most significant diseases of vegetable crops in the world. Biological control with microbial antagonists has been emerged as a promising and eco-friendly treatment to control pathogens. The aim of this study was to screen and identify novel biocontrol agents against root-knot nematode, Meloidogyne incognita. A total of 890 fungal isolates were obtained from rhizosphere soil of different crops and screened by nematicidal activity assays. Snef1910 strain showed high virulence against second stage juveniles (J2s) of M. incognita and identified as Trichoderma citrinoviride by morphology analysis and biomolecular assay. Furthermore, T. citrinoviride Snef1910 significantly inhibited egg hatching with the hatching inhibition percentages of 90.27, 77.50, and 67.06% at 48, 72, and 96?h after the treatment, respectively. The results of pot experiment showed that the metabolites of T. citrinoviride Snef1910 significantly decreased the number of root galls, J2s, and nematode egg masses and J2s population density in soil and significantly promoted the growth of tomato plants. In the field experiment, the biocontrol application showed that the control efficacy of T. citrinoviride Snef1910 against root-knot nematode was more than 50%. Meanwhile, T. citrinoviride Snef1910 increased the tomato plant biomass. T. citrinoviride strain Snef1910 could be used as a potential biological control agent against root-knot nematode, M. incognita.
机译:根结Nematode是世界上最重要的蔬菜作物疾病之一。用微生物拮抗剂的生物对照被出现为对控制病原体的有前途和环保的治疗方法。本研究的目的是筛选并鉴定对根结线虫的新型生物控制剂,Meloidogyne incognita。从不同作物的根际土壤中获得总共890个真菌分离物,并通过征白活动测定筛选。 SNEF1910菌株显示对M. Incognita的第二阶段青少年(J2S)的高毒力,并通过形态学分析和生物分子测定鉴定为枸橼酸吡吡啉嘧啶。此外,T.柠檬腈苯胺SNEF1910分别在治疗后的孵化率为90.27,77.50和67.06%的阴影抑制百分比分别显着抑制卵孵化。锅实验的结果表明,柠檬腈苯胺苯胺1910的代谢产物显着降低了土壤中的根胆,J2s和线虫蛋质量和J2S种群密度的次数,并显着促进了番茄植物的生长。在现场实验中,生物控制应用表明,柠檬腈嘧啶SNEF1910对根结线虫的控制效果大于50%。同时,柠檬腈苯胺1910增加了番茄植物生物质。柠檬腈菌株SNEF1910可用作潜在的生物控制剂免受根结线虫的潜在生物控制剂,M。Incognita。

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