伽马 Ir 1 辐射(60Co)和毛霉菌对黄瓜镰刀菌和白粉病诱发病害的缓解作用

IF 0.9 4区 农林科学 Q4 PLANT SCIENCES
Hasret Gunes, Murside Hatipoglu, Muhsin Yildiz, Selma Kipcak Bitik, Ceknas Erdinc, Semra Demir
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引用次数: 0

摘要

黄瓜(Cucumis sativus L.)因其农业、经济和营养价值而在世界范围内广泛种植。近年来,随着黄瓜种植面积的增加,土传病害(如霉病和枯萎病)给黄瓜生产者造成了重大的经济损失。众所周知,丝状木霉真菌和伽马辐射能够刺激许多植物与病原体真菌的相互作用,植物对这些真菌的防御机制(拮抗、竞争等)和植物生长。本研究旨在研究哈茨木霉(Trichoderma harzianum)和绿木霉(Trichoderma virens)对黄瓜木霉(F. oxysporum F. sp.黄瓜木霉(P. aphanidermatum)病原菌的可持续防治效果,以及伽马射线(0、50、100、150、200和250 Gy)对植物生理生化过程的影响,并研究其与病原菌的相互作用。结果表明,射线与木霉的交互作用使黄瓜植株鲜重、干重、茎长和根长增加,病害程度降低。当比较哈兹木霉(影响% 51% -% 78%)和维氏木霉(影响% 40% -% 67%)时,确定它们对植物生长和疾病严重程度的影响根据参数和γ剂量而变化。这些结果表明,γ突变可能会提高哈氏弓形虫和绿芽弓形虫的生物防治性能。根据这项研究的结果,伽马射线可以与木霉一起用于可持续农业实践,作为一种生物制剂来对抗引起黄瓜枯萎和根腐病的病原体[F]。黄瓜尖孢霉(72%)和黄瓜皮霉(66%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mitigation effects of gamma Ir 1 radiation (60Co) and Trichoderma species against Fusarium- and Pythium-induced diseases in cucumber

Mitigation effects of gamma Ir 1 radiation (60Co) and Trichoderma species against Fusarium- and Pythium-induced diseases in cucumber

Cucumber (Cucumis sativus L.) is a vegetable widely grown worldwide for its agricultural, economic and nutritional value. With the increase in cucumber cultivation areas in recent years, soil-borne plant disease such as Pythium spp. and Fusarium wilt (FW) have caused significant economic losses for producers. Filamentous Trichoderma fungi and gamma radiation are well known for their ability to stimulate many plant-pathogen fungal interactions, plant defense mechanisms against these fungi (antagonistic, competitive, etc.), and plant growth. This study aims to examine the effects of Trichoderma spp. (Trichoderma harzianum and Trichoderma virens), which are among the sustainable practices against F. oxysporum f. sp. cucumerinum and P. aphanidermatum pathogens, and the effects of gamma rays (0, 50, 100, 150, 200, and 250 Gy), which are used as a reliable method for changing physiological and biochemical processes in plants and investigating their interactions with pathogens. The results revealed that the interaction between gamma rays and Trichoderma species increased the fresh and dry weights and shoot and root length values of the cucumber plants and decreased the disease severity. When Trichoderma harzianum (%51-%78 impact) and Trichoderma virens (%40-%67 impact) were compared, their effects on plant growth and disease severity were determined to vary according to parameters and gamma doses. These results indicate that gamma mutations may improve the biocontrol properties of T. harzianum and T. virens. According to the results of this study, gamma rays can be used in sustainable agricultural practices together with Trichoderma spp. as a bioformulation against pathogens that cause wilt and root rot in cucumber [F. oxysporum f. sp. cucumerinum (72%) and P. aphanidermatum (66%)] against.

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来源期刊
Australasian Plant Pathology
Australasian Plant Pathology 生物-植物科学
CiteScore
2.90
自引率
0.00%
发文量
51
审稿时长
3 months
期刊介绍: Australasian Plant Pathology presents new and significant research in all facets of the field of plant pathology. Dedicated to a worldwide readership, the journal focuses on research in the Australasian region, including Australia, New Zealand and Papua New Guinea, as well as the Indian, Pacific regions. Australasian Plant Pathology is the official journal of the Australasian Plant Pathology Society.
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