Dalla Santa H S, Sousa N J, Brand D, Dalla Santa O R, Pandey A, Sobotka M, Paca J, Soccol C R
Laboratório de Microbiologia, Departament de Engenharia de Alimentos, CEDETEG/UniCentro, Camargo Varela de Sá, 85 040-080 Guarapuava, Paraná, Brazil.
Folia Microbiol (Praha). 2004;49(4):418-22. doi: 10.1007/BF02931603.
Conidia production of Beauveria sp. strain LAG by solid-state fermentation (SSF) using blends of agro-industrial residues (residual potatoes and sugar-cane bagasse) was optimized with respect to cultivation conditions and the composition of substrate mixture in Erlenmeyer flasks and column-type bioreactor. With a blend of 60 % residual potatoes and 40 % sugar-cane bagasse the optimum conditions achieved were: incubation temperature 26 degrees C, initial substrate pH 6, inoculum concentration 10(7) conidia per g substrate; optimal initial moisture of the substrate was 70 % for Erlenmeyer flasks, in column-type bioreactor (with forced aeration) the optimal initial moisture of the substrate was 65 % with airflow of 60 mL/min. The highest production (1.07 x 10(10) conidia per g dry substrate) was achieved after a 10-d fermentation. The conidia were used in laboratory assays against Thelosia camina and Hylesia sp., caterpillars that are serious pests of mate plants. The mortality of T. camina was >90 % 10 d after spraying caterpillars with 1 mL conidia suspension at a concentration 10(5)-10(8)/mL. For Hylesia sp., the mortality was 70 %, 7 d after immersion in the conidia suspension containing 108 conidia per mL. Therefore, the Beauveria sp. LAG can be considered to be an important biocontrol instrument in the prospect of the Integrated Pest Management for mate plants.
利用农业工业残渣(残余马铃薯和甘蔗渣)混合物通过固态发酵(SSF)生产球孢白僵菌LAG菌株的分生孢子,针对锥形瓶和柱式生物反应器中的培养条件及底物混合物组成进行了优化。在残余马铃薯与甘蔗渣按60%和40%混合的情况下,达到的最佳条件为:培养温度26℃,底物初始pH值6,接种物浓度为每克底物10⁷个分生孢子;对于锥形瓶,底物的最佳初始含水量为70%,在柱式生物反应器(强制通气)中,底物的最佳初始含水量为65%,气流速度为60 mL/min。经过10天发酵后产量最高(每克干底物1.07×10¹⁰个分生孢子)。这些分生孢子用于针对茶树害虫茶毒蛾和绒蛾幼虫的实验室测定。用浓度为10⁵-10⁸/mL的1 mL分生孢子悬浮液喷洒茶毒蛾幼虫10天后,死亡率>90%。对于绒蛾幼虫,在浸入每毫升含10⁸个分生孢子的分生孢子悬浮液7天后,死亡率为70%。因此,在茶树害虫综合防治前景中,球孢白僵菌LAG菌株可被视为一种重要的生物防治手段。