National Joint Local Engineering Laboratory for High-Efficient Preparation of Biopesticide, School of Forestry and Biotechnology, Zhejiang Agricultural and Forestry University, Lin'an, People's Republic of China.
Department of Biological Sciences, University of Wisconsin, Milwaukee, WI, USA.
Pest Manag Sci. 2018 Jul;74(7):1677-1686. doi: 10.1002/ps.4861. Epub 2018 Feb 28.
Conidiobolus obscurus is a widespread fungal entomopathogen with aphid biocontrol potential. This study focused on a de novo transcriptomic analysis of C. obscurus.
A number of pathogenicity-associated factors were annotated for the first time from the assembled 17 231 fungal unigenes, including those encoding subtilisin-like proteolytic enzymes (Pr1s), trypsin-like proteases, metalloproteases, carboxypeptidases and endochitinases. Many of these genes were transcriptionally up-regulated by at least twofold in mycotized cadavers compared with the in vitro fungal cultures. The resultant transcriptomic database was validated by the transcript levels of three selected pathogenicity-related genes quantified from different in vivo and in vitro material in real-time quantitative polymerase chain reaction (PCR). The involvement of multiple Pr1 proteases in the first stage of fungal infection was also suggested. Interestingly, a unique cytolytic (Cyt)-like δ-endotoxin gene was highly expressed in both mycotized cadavers and fungal cultures, and was more or less distinct from its homologues in bacteria and other fungi.
Our findings provide the first global insight into various pathogenicity-related genes in this obligate aphid pathogen and may help to develop novel biocontrol strategy against aphid pests. © 2018 Society of Chemical Industry.
暗绿僵菌是一种广泛分布的真菌昆虫病原物,具有防治蚜虫的潜力。本研究专注于对暗绿僵菌进行从头转录组分析。
从组装的 17231 个真菌基因中首次注释了许多与致病性相关的因子,包括编码枯草杆菌蛋白酶样蛋白酶(Pr1s)、胰蛋白酶样蛋白酶、金属蛋白酶、羧肽酶和内切几丁质酶的基因。与体外真菌培养相比,在真菌化的尸体中,这些基因中有许多转录水平上调了至少两倍。从实时定量聚合酶链反应(PCR)中从不同的体内和体外材料定量的三个选定的致病性相关基因的转录水平验证了所得转录组数据库。还表明了多种 Pr1 蛋白酶参与真菌感染的第一阶段。有趣的是,一种独特的细胞溶解(Cyt)样δ-内毒素基因在真菌化的尸体和真菌培养物中均高度表达,或多或少与细菌和其他真菌中的同源物不同。
我们的研究结果首次提供了对这种专性蚜虫病原体中各种与致病性相关的基因的全面了解,这可能有助于开发针对蚜虫害虫的新型生物防治策略。 © 2018 化学工业协会。