Petlamul Wanida, Prasertsan Poonsuk
Department of Industrial Biotechnology, Faculty of Agro-Industry, Prince of Songkla University, Hatyai, Songkhla 90112, Thailand.
Mycobiology. 2012 Jun;40(2):111-6. doi: 10.5941/MYCO.2012.40.2.111. Epub 2012 Jun 29.
Ten strains of the entomopathogenic fungi Metarhizium anisopliae and Beauveria bassiana were evaluated to find the most effective strain for optimization studies. The first criterion tested for strain selection was the mortality (> 50%) of Spodoptera litura larvae after inoculation of the fungus for 4 days. Results on several bioassays revealed that B. bassiana BNBCRC showed the most virulence on mortality S. litura larvae (80% mortality). B. bassiana BNBCRC also showed the highest germination rate (72.22%). However, its conidia yield (7.2 × 10(8) conidia/mL) was lower than those of B. bassiana B 14841 (8.3 × 10(8) conidia/mL) and M. anisopliae M6 (8.2 × 10(8) conidia/mL). The highest accumulative radial growth was obtained from the strain B14841 (37.10 mm/day) while the strain BNBCRC showed moderate radial growth (24.40 mm/day). M. anisopliae M6 possessed the highest protease activity (145.00 mU/mL) while M. anisopliae M8 possessed the highest chitinase activity (20.00 mU/mL) during 96~144 hr cultivation. Amongst these criteria, selection based on virulence and germination rate lead to the selection of B. bassiana BNBCRC. B. bassiana B14841 would be selected if based on growth rate while M. anisopliae M6 and M8 possessed the highest enzyme activities.
对10株昆虫病原真菌绿僵菌和白僵菌进行了评估,以找出最适合优化研究的菌株。菌株选择的首要测试标准是接种真菌4天后斜纹夜蛾幼虫的死亡率(>50%)。多项生物测定结果显示,白僵菌BNBCRC对斜纹夜蛾幼虫的致死率最高(死亡率80%)。白僵菌BNBCRC的萌发率也最高(72.22%)。然而,其分生孢子产量(7.2×10⁸分生孢子/mL)低于白僵菌B14841(8.3×10⁸分生孢子/mL)和绿僵菌M6(8.2×10⁸分生孢子/mL)。菌株B14841的累积径向生长最高(37.10毫米/天),而菌株BNBCRC的径向生长适中(24.40毫米/天)。在96~144小时培养期间,绿僵菌M6的蛋白酶活性最高(145.00 mU/mL),绿僵菌M8的几丁质酶活性最高(20.00 mU/mL)。在这些标准中,基于毒力和萌发率的选择导致选择了白僵菌BNBCRC。如果基于生长速率进行选择,则会选择白僵菌B14841,而绿僵菌M6和M8具有最高的酶活性。