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Biocontrol of tomato plant diseases caused by Fusarium solani using a new isolated Aspergillus tubingensis CTM 507 glucose oxidase

机译:使用新型分离的油曲霉CTM 507葡萄糖氧化酶对番茄枯萎病菌引起的番茄植物病害进行生物防治

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The present study focuses on the potential of glucose oxidase (GOD) as a promising biocontrol agent for fungal plant pathogens. In fact, a new GOD producing fungus was isolated and identified as an Aspergillus tubingensis. GOD (125 AU) has been found to inhibit Fusarium solani growth and spore production. Indeed, GOD caused the reduction of spores, the formation of chlamydospores, the induction of mycelial cords and the vacuolization of mycelium. In vivo assays, GOD acted as a curative treatment capable of protecting the tomato plants against F. solani diseases. In fact, the incidence was null in the curative treatment with GOD and it is around 45% for the preventive treatment. The optimization of media composition and culture conditions led to a 2.6-fold enhancement in enzyme activity, reaching 81.48 U/mL. This study has demonstrated that GOD is a potent antifungal agent that could be used as a new biofungicide to protect plants from diseases. (C) 2015 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:本研究的重点是葡萄糖氧化酶(GOD)作为真菌植物病原体的有前途的生物防治剂的潜力。实际上,分离出一种新的产生GOD的真菌并将其鉴定为管曲霉。已发现GOD(125 AU)会抑制茄镰孢的生长和孢子产生。确实,GOD引起孢子的减少,衣原体的形成,菌丝体的诱导和菌丝体的空泡化。在体内测定中,GOD充当了能够保护番茄植株免受sol.F. solani病害侵害的治疗方法。实际上,用GOD进行根治性治疗的发生率是零,而预防性治疗的发生率约为45%。培养基组成和培养条件的优化导致酶活性提高了2.6倍,达到81.48 U / mL。这项研究表明,GOD是一种有效的抗真菌剂,可以用作保护植物免受疾病侵害的新型生物杀真菌剂。 (C)2015年科学研究院。由Elsevier Masson SAS发布。版权所有。

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