Pathan Akbar Ali Khan, Uma Devi Koduru, Vogel Heiko, Reineke Annette
Department of Botany, Andhra University, Visakhapatnam, AP 530003, India.
Fungal Genet Biol. 2007 Dec;44(12):1231-41. doi: 10.1016/j.fgb.2007.07.002. Epub 2007 Jul 20.
The entomopathogen Beauveria bassiana has an extremely diverse insect host range in addition to a saprophytic phase. The molecular basis for this plasticity was investigated by a comparative analysis of gene expression patterns through cDNA-AFLPs of a B. bassiana isolate grown on cuticular extracts of insects of diverse orders as well as synthetic medium. For some of the fragments, expression patterns were verified by Q-RT-PCR. Among the differentially expressed genes two proteases were identified, which are known to be directly involved in the process of pathogenesis in entomopathogenic fungi. However, the majority of the transcript derived fragments identified have a rather indirect function in fungal pathogenesis, as they are involved in the regulation of gene expression, signal transduction, cytoskeleton formation or secretion. In general, the gene expression profile of the fungal isolate on cuticular extracts of diverse insects was pretty similar. This sheds light on the putative generalist nature of B. bassiana with its ability to penetrate many different insect cuticles possibly due to a rather stereotype gene expression program.
昆虫病原真菌球孢白僵菌除了腐生阶段外,具有极其多样的昆虫宿主范围。通过对在不同目昆虫的表皮提取物以及合成培养基上生长的球孢白僵菌分离株进行cDNA-AFLP分析,比较基因表达模式,研究了这种可塑性的分子基础。对于一些片段,通过定量逆转录PCR验证了表达模式。在差异表达的基因中,鉴定出两种蛋白酶,已知它们直接参与昆虫病原真菌的致病过程。然而,鉴定出的大多数转录衍生片段在真菌致病过程中具有相当间接的功能,因为它们参与基因表达调控、信号转导、细胞骨架形成或分泌。总体而言,真菌分离株在不同昆虫表皮提取物上的基因表达谱非常相似。这揭示了球孢白僵菌可能具有通才性质,因其能够穿透许多不同昆虫的表皮,这可能归因于一个相当刻板的基因表达程序。