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Mass Production, Yield, Quality, Formulation andEfficacy of Entomopathogenic Metarhiziumanisopliae Conidia

机译:昆虫致病性间生分生孢子分生孢子的大批量生产,产量,质量,配方和功效

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Aims: The aim of this study was to develop an easy but robust method for mass production, to formulate and compare the efficacy of mass produced conidia of a local isolate Metarhizium anisopliae against aphids and oil-formulated conidia against whiteflies.Study Design: The randomized complete block design with replications.Place and Duration of Study: 2012-2014, Laboratory of Crop Protection Department, Faculty of Agricultural Engineering and Veterinary Medicine, Lebanese University.Methodology: Isolate of fungal entomopathogen M. anisopliae (Metschn.) Sorokin (LIM1) was grown on cooked rice, wheat, vegetable peels and burgul in roasting bags to produce and harvest spore powder. The cultures were dried and total yield of harvested conidia was determined. After harvesting, spores were submitted to quality control to assess concentration, germination, purity, moisture content and pathogenicity against rose aphid, Macrosiphum rosae L., mealy plum aphid, Hyalopterus pruni and melon aphid, Aphis gossypii Glover. Formulated in different oils, conidia were stored at different temperatures for 16 weeks. Oil-formulated conidia were tested against whiteflies under field conditions.Results: Among the substrates studied, burgul had the highest yield (21 g/100 g substrate). The optimum time for harvesting was 3 weeks. C:N ratio was also the lowest for conidia produced on burgul which caused the highest mortalities and thus appeared the most virulent against all tested insects. Sunflower oil formulated conidia retained viability for at least 16 weeks at room temperature. The preliminary results indicated some but not significant control of whiteflies in the pot experiments.Conclusion: M. anisopliae could be mass produced in large quantities on burgul substrate. The quality of produced inocula as measured by endogenous C:N ratios would be largely affected by substrate used for mass production. The quality would also influence the efficacy against target insects. Mass produced conidia could also be stored as dry or formulated in sunflower oil at room temperature up to 16 weeks. Use of endogenous C:N ratio as quality control indicator for high quality inocula is highly recommended. Use of vegetable peels as potential substrate for mass production combined with a recyclable oil as formulant could be a low cost and environmentally sustainable technology for future mass production of entomogenous fungi.
机译:目的:本研究的目的是开发一种简单但稳健的批量生产方法,以制定和比较局部分离的分离的拟南芥对蚜虫和油状分生孢子对粉虱的分生孢子功效。研究设计:随机研究地点和持续时间:2012-2014,黎巴嫩大学农业工程与兽医学院作物保护系实验室。方法:分离真菌性昆虫病原菌M. anisopliae(Metschn。)Sorokin(LIM1)用烤袋在煮熟的米饭,小麦,蔬菜皮和小菜上生长,以生产和收获孢子粉。将培养物干燥并确定收获的分生孢子的总产量。收获后,将孢子送入质量控制体系,以评估其对玫瑰蚜,蔷薇果,粉李,蚜虫,瓜和甜菜蚜,蚜虫的浓度,发芽率,纯度,水分含量和致病性。用不同的油配制的分生孢子在不同的温度下保存16周。结果:在所研究的基质中,盗贼的产量最高(21 g / 100 g基质)。最佳收获时间为3周。 C:N比也是在爆破中产生的分生孢子最低的,它导致最高的死亡率,因此对所有测试的昆虫表现出最强的毒性。葵花籽油配制的分生孢子在室温下至少保留了16周的活力。初步结果表明,盆栽试验对粉虱有一定的控制作用,但没有明显的控制作用。结论:沙门氏菌可以在盗窃底物上大量生产。通过内源性C:N比值​​测量的接种物质量会在很大程度上受到用于大规模生产的底物的影响。质量也将影响针对目标昆虫的功效。批量生产的分生孢子也可以干燥保存或在向日葵油中在室温下保存长达16周。强烈建议使用内源性C:N比作为高质量接种的质量控制指标。使用蔬菜皮作为大规模生产的潜在底物,再加上可循环利用的油作为配方,可能是一种低成本且对环境可持续的技术,可用于未来大规模生产昆虫致病真菌。

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