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Total crude protein extract of Trichoderma spp. induces systemic resistance in pearl millet against the downy mildew pathogen

机译:木霉属的总粗蛋白提取物。诱导小米对霜霉病病原体的系统抗性

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摘要

Several proteins and peptides of microbial origin are reported for their elicitor properties, which play a vital role in the development of local and systemic resistances in plants. In this study, the efficacy of total crude proteins (TCP) extracted from six different Trichoderma spp. (T. asperellum, T. harzianum, T. atroviride, T. virens, T. longibrachiatum, and T. brevicompactum) was evaluated for their ability to elicit defense responses in pearl millet against downy mildew disease. Priming of pearl millet seeds (with or without mannitol) with different concentrations of TCP from Trichoderma spp. does not affect the seed germination and seedling vigor significantly. Under greenhouse conditions, a varied level of disease protection was recorded with TCP of different Trichoderma spp., and furthermore, its efficacy was found increased when treated with mannitol. Total crude protein extracts of T. atroviride (75 µg/ml) with mannitol recorded significantly higher disease protection of 53.6% in comparison with respective controls. Furthermore, this observation was supported by elevated levels of peroxidase (7.7 U @ 36 h after inoculation) and lipoxygenase (29.5 U @ 48 h after inoculation) and hypersensitive necrotic spots (56% @ 24 h after inoculation). The present study illustrated the capability of TCP extracted from different Trichoderma spp. to elicit the disease resistance mechanism in pearl millet seedlings against Sclerospora graminicola.
机译:据报道,几种微生物来源的蛋白质和肽具有激发子特性,它们在植物局部和系统抗性的形成中起着至关重要的作用。在这项研究中,从六种不同木霉属物种中提取的总粗蛋白(TCP)的功效。评估了米曲霉(T. asperellum),哈茨木霉(T. harzianum),阿曲韦雷德氏菌(T. atroviride),维氏梭菌(T. virens),长曲霉(T. longibrachiatum)和短杆菌(T. brevicompactum)在珍珠小米中引起霜霉病的防御反应能力。用不同浓度的木霉属物种的TCP引发小米种子(有或没有甘露醇)。不会显着影响种子发芽和幼苗活力。在温室条件下,使用不同木霉属物种的TCP记录了不同水平的疾病防护,此外,发现用甘露醇治疗时其功效增强。与甘露醇相比,阿特罗韦特罗德韦德氏菌(75 µg / ml)的总粗蛋白提取物与相应对照相比,其对疾病的保护显着更高,为53.6%。此外,过氧化物酶(接种后36 h @ 7.7 U)和脂氧合酶(接种后48 h @ 29.5 U)和过敏性坏死斑点(接种后24 h @ 56%)的升高为这一观察提供了支持。本研究说明了从不同木霉属物种提取的TCP的能力。以诱导珍珠小米幼苗对葡萄核菌的抗病机理。

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