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Inoculation of sphagnum-based soil substrate with entomopathogenic fungus Isaria fumosorosea (Hypocreales: Cordycipitaceae)

机译:用昆虫疗法真菌患有虫害虫草虫草的接种(胆囊:冬虫绿)

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Convenient ecological alternative to broad-spectrum chemical pesticides is the utilization of natural enemies, like predators, parasitoids and microorganisms. A substantial number of microbial biopesticides based on entomopathogenic fungi have been developed worldwide since 1960s. Beauveria bassiana (Balsamo-Crivelli) Vuillemin, Metarhizium anisopliae (Metchnikoff) Sorokin, Isaria fumosorosea (Wize), and B. brongniartii (Saccardo) Petch are the most common species used in commercially produced mycopesticides. Besides direct biological pest control, these fungi could be also used in preventive application programs, particularly in ornamental or nursery plants to provide better control against pests. The aim of the present study was to investigate potential of pre-colonization of sphagnum-based soil substrate with I. fumosorosea strain CCM 8367 which was found earlier to be highly virulent against several pest species. We developed simple laboratory apparatus for application of fungal spore suspension into the substrate. Suspension was prepared from blastospores obtained by submerged cultivation on potato dextrose broth (PDB) medium using an orbital shaker. Inoculated substrate was placed into plastic bags and stored at constant temperature for six months. Every month, samples were analyzed for concentration of colony forming units (CFU) by elution and selective medium technique. The results showed that at 20°C the fungus successfully colonized the soil substrate and persisted there although the mean concentration slightly decreased from 5.89×10~4 to 2.76×10~4 CFU per milliliter of substrate during the experiment. Temperature 30°C had negative effect on survival of the fungus and is not recommended for long-term storage of pre-inoculated substrate. We can conclude that I. fumosorosea-colonized substrate can be convenient for preventive and permanent protection of various plants against soil-dwelling pests.
机译:广泛的广谱化学农药的方便生态替代品是利用天然敌人,如捕食者,寄生虫和微生物。自20世纪60年代以来,在全球范围内开发了基于昆虫致病真菌的大量微生物生物体。 Beauveria Bassiana(Balsamo-Crivelli)Vuillemin,Metarhizium Anisopliae(Metchnikoff)Sorokin,Isaria Fumosorosea(Wize)和B. Brongniartii(Saccardo)Petch是商业生产的肌肉类药物中最常见的物种。除了直接的生物害虫防治外,这些真菌也可用于预防性应用程序,特别是在观赏或幼儿园,以便对害虫提供更好的控制。本研究的目的是研究与I. Fumosorosea菌株CCM 8367的烟藓糖基土基质预调度的潜力,其早先发现对几种害虫具有高毒力。我们开发了将真菌孢子悬浮液应用到基材中的简单实验室。使用轨道振动器从用碎裂的右旋糖浆(PDB)培养基上通过浸没培养而获得的囊孢子制备悬浮液。将接种的底物置于塑料袋中并在恒定温度下储存六个月。每月,通过洗脱和选择性培养基分析菌落形成单位(CFU)的浓度来分析样品。结果表明,在20°C时,真菌成功地将土壤基质归因于土壤基质并持续存在于实验期间每毫升底物的5.89×10〜4至2.76×10〜4 CFU略微降低。温度30℃对真菌的存活产生负面影响,并且不推荐用于预接种基材的长期储存。我们可以得出结论,I. Fumosorosea-殖民化基材可以方便地对防治各种植物的预防和永久性保护。

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