首页> 外文期刊>World Journal of Microbiology & Biotechnology >Production of microsclerotia by Brazilian strains of Metarhizium spp. using submerged liquid culture fermentation
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Production of microsclerotia by Brazilian strains of Metarhizium spp. using submerged liquid culture fermentation

机译:巴西Metrahizium spp菌株产生的菌核。使用浸没液体培养发酵

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摘要

We investigated the potential production and desiccation tolerance of microsclerotia (MS) by Brazilian strains of Metarhizium anisopliae (Ma), M. acridum (Mc) and M. robertsii (Mr). These fungi were grown in a liquid medium containing 16 g carbon l(-1) with a carbon:nitrogen ratio of 50:1. One hundred milliliters cultures were grown in 250 ml Erlenmeyer flasks in a rotary incubator shaker at 28 A degrees C and 200 rpm for 5 days. Five-day-old MS were harvested, mixed with diatomaceous earth (DE) and air-dried for 2 days at 30 A degrees C. The air-dried MS-DE granular preparations were milled by mortar + pestle and stored in centrifuged tubes at either 26 or -20 A degrees C. Desiccation tolerance and conidia production were assessed for dried MS granules by measuring hyphal germination after incubation for 2 days on water agar plates at 26 A degrees C and for conidia production following 7 days incubation. Yields of MS by all strains of Metarhizium were 6.1-7.3 x 10(6) l(-1) after 3 days growth with maximum MS yields (0.7-1.1 x 10(7) l(-1)) after 5 days growth. No differences in biomass accumulation were observed after 3 days growth, whereas Ma-CG168 showed the highest biomass accumulation after 5 days growth. Dried MS-DE preparations of all fungal strains were equally tolerant to desiccation (a parts per thousand yen93 % germination) and the highest conidia production was obtained by MS granules of Mc-CG423 (4 x 10(9) conidia g(-1)). All MS granules showed similar stability after storage at either 26 or -20 A degrees C for 3.5 months.
机译:我们调查了巴西Metrahizium anisopliae(Ma),A。acridum(Mc)和M. robertsii(Mr)菌株对微核盘菌(MS)的潜在产量和干燥耐受性。这些真菌在含有16 g碳l(-1)的液体培养基中生长,碳:氮比为50:1。在旋转培养箱中的250 ml锥形瓶中,在28 A摄氏度和200 rpm的转速下,将100毫升培养物培养5天。收获五日龄的MS,与硅藻土(DE)混合,在30 A的温度下风干2天。将风干的MS-DE颗粒制剂用研钵+研杵研磨,并在离心管中储存于在26或-20 A的温度下进行干燥。通过在26 A的水琼脂板上孵育2天后测量菌丝萌发,评估干燥的MS颗粒的脱水耐受性和分生孢子,在孵育7天后评估其分生孢子。生长3天后,所有金属根菌株的MS产量为6.1-7.3 x 10(6)l(-1),而生长5天后,MS的最大产量为(0.7-1.1 x 10(7)l(-1)。生长3天后未观察到生物量积累的差异,而Ma-CG168显示生长5天后最高的生物量积累。所有真菌菌株的干燥MS-DE制剂对干燥具有相同的耐受性(每千日元份中有93%的萌发),并且通过Mc-CG423的MS颗粒(4 x 10(9)孢子g(-1)获得最高的分生孢子)。在26或-20 A的温度下存放3.5个月后,所有MS颗粒均显示出相似的稳定性。

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