Fang Weiguo, Feng Jin, Fan Yanhua, Zhang Yongjun, Bidochka Michael J, Leger Raymond J St, Pei Yan
Biotechnology Research Center, Southwest University, Beibei, Chongqing 400715, PR China.
J Invertebr Pathol. 2009 Oct;102(2):155-9. doi: 10.1016/j.jip.2009.07.013. Epub 2009 Aug 8.
Entomopathogenic fungi, such as Beauveria bassiana and Metarhizium anisopliae are being developed as alternatives to chemical insecticides. They infect insects by direct penetration of the cuticle using a combination of physical pressure and extracellular hydrolytic enzymes such as proteases and chitinases. Previously we found that overexpression of a subtilisin-like protease (Pr1A) or a chitinase (Bbchit1) resulted in increased virulence of M. anisopliae and B. bassiana, respectively. In this study, we found that a mixture of the B. bassiana Pr1A homolog (CDEP1) and Bbchit1 degraded insect cuticle in vitro more efficiently than either CDEP1 or Bbchit1 alone. Based on this we produced three plasmid constructs; (1) Bbchit1, (2) CDEP1, and (3) a fusion gene of Bbchit1 linked to CDEP1 each under the control of the constitutive gpd promoter from Aspergillus nidulans. B. bassiana transformants secreting the fusion protein (CDEP1:Bbchit1) penetrated the cuticle significantly faster than the wild type or transformants overexpressing either Bbchit1 or CDEP1. Compared to the wild type, the transformant overexpressing CDEP1 showed a 12.5% reduction in LT(50), without a reduction in LC(50). The LT(50) of the transformant expressing CDEP1:Bbchit1 was reduced by 24.9%. Strikingly, expression of CDEP1:Bbchit1 resulted in a 60.5% reduction in LC(50), more than twice the reduction obtained by overexpression of Bbchit1 (28.5%). This work represents a significant step towards the development of hypervirulent insect pathogens for effective pest control.
球孢白僵菌和绿僵菌等昆虫病原真菌正被开发用作化学杀虫剂的替代品。它们通过利用物理压力和诸如蛋白酶和几丁质酶等细胞外水解酶的组合直接穿透表皮来感染昆虫。此前我们发现,类枯草杆菌蛋白酶(Pr1A)或几丁质酶(Bbchit1)的过表达分别导致绿僵菌和球孢白僵菌的毒力增强。在本研究中,我们发现球孢白僵菌Pr1A同源物(CDEP1)和Bbchit1的混合物在体外降解昆虫表皮的效率比单独的CDEP1或Bbchit1更高。基于此,我们构建了三种质粒构建体;(1)Bbchit1,(2)CDEP1,以及(3)在构巢曲霉组成型gpd启动子控制下的与CDEP1相连的Bbchit1融合基因。分泌融合蛋白(CDEP1:Bbchit1)的球孢白僵菌转化体穿透表皮的速度明显快于野生型或过表达Bbchit1或CDEP1的转化体。与野生型相比,过表达CDEP1的转化体的LT(50)降低了12.5%,而LC(50)没有降低。表达CDEP1:Bbchit1的转化体的LT(50)降低了24.9%。令人惊讶的是,CDEP1:Bbchit1的表达导致LC(50)降低了60.5%,超过了过表达Bbchit1所获得降低率(28.5%)的两倍。这项工作代表了朝着开发用于有效害虫防治的高毒力昆虫病原体迈出的重要一步。