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首页> 外文期刊>Mycobiology >Alterations in Growth and Morphology of Ganoderma lucidum and Volvariella volvaceae in Response to Nanoparticle Supplementation
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Alterations in Growth and Morphology of Ganoderma lucidum and Volvariella volvaceae in Response to Nanoparticle Supplementation

机译:Ganoderma lucidum和Volvariella Volvaceae响应纳米粒子补充剂的增长和形态改变

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Use of nanoparticles (NPs) in several commercial products has led to emergence of novel contaminants of air, soil and water bodies. The NPs may exhibit greater ecotoxicity due to nano-scale dependent properties over their bulk counterparts. The present investigation explores the effect of in?vitro supplementation of TiOsub2/sub, silica and silver NPs on radial growth and ultrastructural changes in the hyphae and spores of two mushroom genera, Ganoderma lucidum and Volvariella volvaceae. A concentration dependent decrease in radial growth on NP amended potato dextrose agar medium was recorded. However, in comparison to control, there was decrease in radial diameter on supplementation with TiOsub2/sub NPs while an increase was recorded for silica and silver NPs amendments as compared to their bulk salts at same concentrations after 48?h of incubation. Optical microscopy studies showed decrease in the number of spores while increase in spore diameter and thinning of hyphal diameter on NPs supplementation. Scanning electron microscopy analysis of fungal growth showed presence of deflated and oblong spores in two fruiting strains of Ganoderma while Volvariella exhibited decreased sporulation. Further, hyphal thinning and branching was recorded in response to NP amendments in both the test mushrooms. Enhancement of protein content was observed on NP compared to bulk supplementation for all cultures, concentrations and hours of incubation except for TiOsub2/sub NPs. Likewise, bulk and NP supplementations (at 100?mg L sup?1/sup) resulted in enhanced laccase activity with occurrence of laccase specific protein bands on SDS-PAGE analysis.
机译:在几种商业产品中使用纳米颗粒(NPS)导致了空气,土壤和水体的新污染物的出现。由于纳米级依赖性在其散装对应物上,NPS可能表现出更大的生态毒性。本研究探讨了TiO 2 ,二氧化硅和银NPS对桡骨生长和超微结构变化的影响的疗效和两种蘑菇属,灵芝和Volvariella volvaceae的辐销生长和超微结构变化。记录了NP修正的马铃薯葡萄糖琼脂培养基上的径向生长浓度依赖性降低。然而,与对照相比,径向直径减少,在补充TiO 2 nps,同时与在48Ω·H后的浓度相同浓度的散装盐相比,对二氧化硅和银NPS修正进行了增加孵化。光学显微镜研究表明孢子的数量减少,同时增加孢子直径和悬垂直径的薄膜直径在NPS补充。扫描电子显微镜分析对真菌生长的分析显示出在Ganoderma的两种果实菌株中存在放气和椭圆形孢子,而Volvariella表现出降低孢子率。此外,响应于试验蘑菇中的NP修正,记录剪辑和分支。除了用于所有培养物,浓度和孵育以外的孵化外,在NP上观察到蛋白质含量的增强,除了TiO 2 NPS。同样,批量和NP补充(以100?Mg L β1)导致增强漆酶活性,并在SDS-PAGE分析上发生漆酶特异性蛋白质带。

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