Shin Teak Soo, Yu Nan Hee, Lee Jaeho, Choi Gyung Ja, Kim Jin-Cheol, Shin Chul Soo
R&D Center of Green Biotech Co., Paju 10911, Korea.
Department of Biotechnology, Yonsei University, Seoul 03722, Korea.
Plant Pathol J. 2017 Jun;33(3):337-344. doi: 10.5423/PPJ.FT.04.2017.0087. Epub 2017 Jun 1.
To develop a commercial product using the mycoparasitic fungus BCP, the scaleup of conidia production from a 5-l jar to a 5,000-l pilot bioreactor, optimization of the freeze-drying of the fermentation broth, and preparation of a wettable powder-type formulation were performed. Then, its disease control efficacy was evaluated against gray mold diseases of tomato and ginseng plants in field conditions. The final conidial yields of BCP were 3.3 × 10 conidia/ml for a 5-l jar, 3.5 × 10 conidia/ml for a 500-l pilot vessel, and 3.1 × 10 conidia/ml for a 5,000-l pilot bioreactor. The conidial yield in the 5,000-l pilot bioreactor was comparable to that in the 5-l jar and 500-l pilot vessel. On the other hand, the highest conidial viability of 86% was obtained by the freeze-drying method using an additive combination of lactose, trehalose, soybean meal, and glycerin. Using the freeze-dried sample, a wettable powder-type formulation (active ingredient 10%; BCP-WP10) was prepared. A conidial viability of more than 50% was maintained in BCP-WP10 until 22 weeks for storage at 40°C. BCP-WP10 effectively suppressed the development of gray mold disease on tomato with control efficacies of 64.7% and 82.6% at 500- and 250-fold dilutions, respectively. It also reduced the incidence of gray mold on ginseng by 65.6% and 81.3% at 500- and 250-fold dilutions, respectively. The results indicated that the new microbial fungicide BCP-WP10 can be used widely to control gray mold diseases of various crops including tomato and ginseng.
为了开发一种使用寄生真菌BCP的商业产品,进行了从5升罐到5000升中试生物反应器的分生孢子扩大生产、发酵液冷冻干燥的优化以及可湿性粉剂型制剂的制备。然后,在田间条件下评估了其对番茄和人参植物灰霉病的病害防治效果。BCP在5升罐中的最终分生孢子产量为3.3×10个分生孢子/毫升,在500升中试容器中为3.5×10个分生孢子/毫升,在5000升中试生物反应器中为3.1×10个分生孢子/毫升。5000升中试生物反应器中的分生孢子产量与5升罐和500升中试容器中的相当。另一方面,使用乳糖、海藻糖、豆粕和甘油的添加剂组合通过冷冻干燥法获得了最高86%的分生孢子活力。使用冷冻干燥样品,制备了一种可湿性粉剂型制剂(活性成分10%;BCP-WP10)。在40°C储存至22周时,BCP-WP10中的分生孢子活力保持在50%以上。BCP-WP10有效抑制了番茄灰霉病的发展,在500倍和250倍稀释时的防治效果分别为64.7%和82.6%。它还分别在500倍和250倍稀释时将人参灰霉病的发病率降低了65.6%和81.3%。结果表明,新型微生物杀菌剂BCP-WP10可广泛用于防治包括番茄和人参在内的各种作物灰霉病。