Zhao Xueyi, Chai Junfa, Wang Fang, Jia Yanxia
College of Agriculture, Ningxia University, Yinchuan 750021, China.
Institute of Plant Protection, Ningxia Academy of Agriculture and Forestry Sciences, Yinchuan 750002, China.
Microorganisms. 2023 Jan 12;11(1):190. doi: 10.3390/microorganisms11010190.
(JMF-01), as an entomopathogenic fungus, can effectively control agricultural pests and has the potential to be a biocontrol agent. To promote mycelial growth and sporulation, we investigated the optimal submerged culture conditions for . In this study, we used the single-factor method and Box-Behnken design and determined the virulence of the submerged culture against after optimization. As a result, the highly significant factors affecting the spore concentration of strain JMF-01 were the primary inoculum density and the initial pH, and the highly significant factor affecting the mycelial biomass was the medium-to-flask ratio. The highest mycelial biomass value was 0.35 g when the incubation time was 5.68 days, the initial pH was 5.11, the medium-to-flask ratio was 0.43, and 1 mL of the primary inoculum with spore density of 0.97 × 10 conidia/mL was added. When the incubation time was 6.32 days, the initial pH was 4.46, the medium-to-flask ratio was 0.35, the primary inoculum density was 1.32 × 10 conidia/mL of 1 mL, and the highest spore concentration of 6.49 × 10 blastospores/mL was obtained. Compared with the unoptimized medium conditions, the optimized submerged culture had the highest mycelial biomass and spore concentration, which were 3.46 and 2.06 times higher, respectively. The optimized submerged culture was highly pathogenic toward , reaching a 95% mortality rate. Our results provide optimal submerged culture conditions for and lay the basis for later research to expand production for pest control.
(JMF - 01)作为一种昆虫病原真菌,能够有效控制农业害虫,具有成为生物防治剂的潜力。为了促进菌丝生长和孢子形成,我们研究了其最佳液体深层培养条件。在本研究中,我们采用单因素法和Box - Behnken设计,并在优化后测定了液体深层培养物对[具体害虫名称未给出]的毒力。结果表明,影响JMF - 01菌株孢子浓度的极显著因素是初始接种密度和初始pH值,影响菌丝生物量的极显著因素是培养基与三角瓶的比例。当培养时间为5.68天、初始pH值为5.11、培养基与三角瓶的比例为0.43且加入1 mL孢子密度为0.97×10[具体数值未给出]分生孢子/mL的初始接种物时,菌丝生物量最高值为0.35 g。当培养时间为6.32天、初始pH值为4.46、培养基与三角瓶的比例为0.35、初始接种密度为1.32×10[具体数值未给出]分生孢子/mL的1 mL时,获得了最高孢子浓度6.49×10[具体数值未给出]芽生孢子/mL。与未优化的培养基条件相比,优化后的液体深层培养具有最高的菌丝生物量和孢子浓度,分别高出3.46倍和2.06倍。优化后的液体深层培养对[具体害虫名称未给出]具有高致病性,死亡率达到95%。我们的结果为[JMF - 01]提供了最佳液体深层培养条件,并为后续扩大害虫防治生产的研究奠定了基础。