Johjima Toru, Taprab Yaovapa, Noparatnaraporn Napavarn, Kudo Toshiaki, Ohkuma Moriya
International Cooperative Research Project, Japan Science and Technology Agency (JST-ICORP), Wako, Saitama, 351-0198, Japan.
Appl Microbiol Biotechnol. 2006 Nov;73(1):195-203. doi: 10.1007/s00253-006-0570-8. Epub 2006 Oct 5.
Fungus-growing termites have a symbiotic relationship with the basidiomycetes of the genus Termitomyces. This symbiotic system is able to degrade dead plant material efficiently. We conducted expressed sequence tag (EST) analysis of a symbiotic Termitomyces fungus degrading plant material in a field nest of the termite Macrotermes gilvus. A subtractive cDNA library was also investigated to facilitate the discovery of genes expressed specifically under the symbiotic conditions. A total of 2,613 ESTs were collected and resulted in 1,582 nonredundant tentative consensus sequences, of which approximately 59% showed significant similarity to known protein sequences. A number of homologous sequences to genes involved in plant cell wall degradation were identified and a majority of them encoded putative pectinolytic enzymes. Real-time quantitative reverse transcriptase polymerase chain reaction analyses confirmed significant upregulation of putative stress response genes under symbiotic conditions. The present ESTs database provides a valuable resource for molecular biological study of plant material degradation in the symbiosis between termites and fungi.
培菌白蚁与白蚁伞属的担子菌存在共生关系。这种共生系统能够高效降解死亡的植物材料。我们对白蚁(黑翅土白蚁)野外巢穴中降解植物材料的共生白蚁伞真菌进行了表达序列标签(EST)分析。还研究了一个消减cDNA文库,以促进发现共生条件下特异性表达的基因。共收集到2613个EST,得到1582个非冗余的初步一致性序列,其中约59%与已知蛋白质序列具有显著相似性。鉴定出许多与参与植物细胞壁降解的基因同源的序列,其中大多数编码假定的果胶分解酶。实时定量逆转录聚合酶链反应分析证实,共生条件下假定的应激反应基因显著上调。目前的EST数据库为白蚁与真菌共生关系中植物材料降解的分子生物学研究提供了宝贵资源。