首页> 外文期刊>British Microbiology Research Journal >In-vitro Evaluation of Antagonists and Fungicides in Controlling Citrus Gummosis Caused by Phytophthora, Phytopythium and Pythium species in Tunisia
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In-vitro Evaluation of Antagonists and Fungicides in Controlling Citrus Gummosis Caused by Phytophthora, Phytopythium and Pythium species in Tunisia

机译:对突尼斯植物植物,植物藻类,植物植物,植物植物和钙霉菌植物胶质剂的体外评价

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Aims:?This study investigated the efficiency of some bioagents and fungicides against causals agents of gummosis of citrus.Study Design:?Antifungal activities of bioagents and effect of fungicides.Place and Duration of Study:?Department of Biological Sciences and Plant Protection, Higher Institute of Agronomy of Chott Mariem, 4042, Sousse, Tunisia, between June 2015 and July 2015.Methodology:?Antifungal activity was carried out using dual culture and sandwich plate methods. Antibacterial activity was carried out using bacterial suspension; while fungicide effect was carried out using food poisoned technique. The mycoparasitim of fungal antagonists was also determined.Results:?The tested bioagents and fungicides showed significantly effect on mycelial growth inhibition of the pathogens compared to the control. In the dual culture assay, the highest percent of the mycelia growth inhibition (90%) was obtained by?T. viride?and?T. harzianum.?However,?P. digitatum?and?P. italicum?revealed to be the least effective with, respectively, 70% and 60% of growth inhibition. The effect of volatile substances of these bioagents showed also that?T. viride?exhibited the highest percent of inhibition (85%), followed by?T. harzianum?(75%),?P. digitatum?(60%) and?P. italicum?(50%). The mycoparasitim was also noted.?Bacillus?isolates were found significantly effective in reducing the mycelial growth of the?Oomycotaspecies, with a percent of mycelium inhibition verging from 95% to 54%. However, copper fungicides generated the highest percent of the mycelial growth inhibition (100%), following by the acid citric and borax fungicides which recorded a percent of the mycelial growth inhibition of 10.82% and 12.93%, respectively.Conclusion:?Thus the study indicated that the integration of bioagents can provide a better management of the gummosis of citrus.
机译:目的:本研究研究了一些生物蛋白质和杀菌剂对柑橘卵形的因果剂的效率.Study设计:?生物制剂的抗真菌活性和杀菌剂的作用。地区和持续时间:?生物科学系和植物保护部,更高Chott Mariem,4042,Sousse,突尼斯,突尼斯的农业学院,突尼斯于2015年之间和2015年7月。水域学:?使用双培养和夹心板方法进行抗真菌活性。使用细菌悬浮液进行抗菌活性;虽然使用食物中毒技术进行杀菌剂效果。还确定了真菌拮抗剂的霉菌素。结果:?与对照相比,测试的生物蛋白和杀菌剂对病原体的菌丝体生长抑制显着影响。在双重培养测定中,菌丝体抑制的最高百分比(90%)得到Δt。 vile?和?t。 Harzianum.?However ,?p。数字?和?p。斜体?显示出最不效率,分别为70%和60%的生长抑制。这些生物产生的挥发性物质的影响也显示出Δt。 viled?抑制百分比(85%),其次是Δt。 Harzianum?(75%),p。天数?(60%)和?p。 iTalicum?(50%)。还注意到了Mycoparasitim。在降低菌丝菌类药物的菌丝体生长中,发现菌丝杆菌酸盐显着有效,百分比抑制从95%〜54%的抑制率。然而,铜杀菌剂产生了菌丝体生长抑制(100%)的最高百分比,其酸柠檬酸和硼砂杀菌剂,分别记录了菌丝体生长抑制的百分比10.82%和12.93%。结论:因此研究表明生物植物的整合可以更好地管理柑橘的肠道。

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