首页> 美国卫生研究院文献>Scientific Reports >Trichogenic-selenium nanoparticles enhance disease suppressive ability of Trichoderma against downy mildew disease caused by Sclerospora graminicola in pearl millet
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Trichogenic-selenium nanoparticles enhance disease suppressive ability of Trichoderma against downy mildew disease caused by Sclerospora graminicola in pearl millet

机译:富硒硒纳米颗粒增强木霉对珍珠小米中灰霉菌引起的霜霉病的抑制能力

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摘要

Trichoderma spp. are well known biocontrol agents used against phytopathogens. In the present work Trichoderma-mediated Selenium nanoparticles (SeNPs) were synthesized and extent of downy mildew (DM) disease control in pearl millet (PM) was studied. Six species of Trichoderma namely, T. asperellum, T. harzianum, T. atroviride, T. virens, T. longibrachiatum and T. brevicompactum were evaluated in the form of culture filtrate (CF), cell lysate (CL) and crude cell wall (CW) to synthesize SeNPs. All these components produced SeNPs, but CF was significant than CL and CW. The size of SeNPs ranged from 49.5 to 312.5 nm with zeta potential of +3.3 mv to −200 mv. The nanoparticles suppressed the growth, sporulation and zoospore viability of Sclerospora graminicola and these biological activities were inversely proportional to the size of SeNPs. Under greenhouse conditions, application of SeNPs and T. asperellum together enhanced the early plant growth and suppressed DM incidence as compared to their individual application. This study demonstrated the ability of Trichogenic-SeNPs to suppress growth and proliferation of S. graminicola, the incitant of DM of PM and their activity is inversely proportional to size of nanoparticles.
机译:木霉属。众所周知的用于防治植物病原体的生物防治剂。在本工作中,合成了木霉属介导的硒纳米颗粒(SeNPs),并研究了珍珠粟(PM)中霜霉病(DM)疾病控制的程度。以培养滤液(CF),细胞裂解液(CL)和粗制细胞壁的形式评估了六个木霉菌,即曲霉木霉,哈茨木霉,阿曲韦林木,毒理木霉,长曲霉和短紧凑木霉。 (CW)合成SeNP。所有这些成分都产生了SeNPs,但CF比CL和CW显着。 SeNPs的大小范围为49.5至312.5 nm,ζ电位为+3.3 mv至-200 mv。纳米颗粒抑制了葡萄孢菌的生长,孢子形成和游动孢子的活力,并且这些生物活性与SeNP的大小成反比。在温室条件下,应用SeNPs和 T 。与单独施用相比, asperellum 共同促进了植物的早期生长并抑制了DM的发生。这项研究证明了促发性SeNPs抑制 S 的生长和增殖的能力。 graminicola ,PM的DM的诱因及其活性与纳米颗粒的大小成反比。

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