Bioinformatics Laboratory, School of Agriculture, Meiji University, 1-1-1 Higashi-Mita, Kawasaki, 214-8571, Japan.
Rice Research Institute, Sichuan Agricultural University, 211 Huiminglu, Wenjiang, Chengdu, China.
Sci Rep. 2019 Apr 10;9(1):5888. doi: 10.1038/s41598-019-42231-9.
Circular patterns called "fairy rings" in fields are a natural phenomenon that arises through the interaction between basidiomycete fungi and plants. Acceleration or inhibition of plant vegetative growth and the formation of mushroom fruiting bodies are both commonly observed when fairy rings form. The gene of an enzyme involved in the biosynthesis of these regulators was recently isolated in the fairy ring-forming fungus, Lepista sordida. To identify other genes involved in L. sordida fairy ring formation, we used previously generated sequence data to produce a more complete draft genome sequence for this species. Finally, we predicted the metabolic pathways of the plant growth regulators and 29 candidate enzyme-coding genes involved in fairy-ring formation based on gene annotations. Comparisons of protein coding genes among basidiomycete fungi revealed two nitric oxide synthase gene candidates that were uniquely encoded in genomes of fairy ring-forming fungi. These results provide a basis for the discovery of genes involved in fairy ring formation and for understanding the mechanisms involved in the interaction between fungi and plants. We also constructed a new web database F-RINGS ( http://bioinf.mind.meiji.ac.jp/f-rings/ ) to provide the comprehensive genomic information for L. sordida.
田间呈环形的“仙人环”是一种自然现象,它是由担子菌真菌与植物相互作用而产生的。在仙人环形成时,通常会观察到植物营养生长的加速或抑制以及蕈类果实的形成。最近,在形成仙人环的真菌 Lepista sordida 中分离到了参与这些调节剂生物合成的一种酶的基因。为了鉴定其他参与 L. sordida 仙人环形成的基因,我们利用之前生成的序列数据,为该物种生成了更完整的基因组草图序列。最后,我们根据基因注释预测了植物生长调节剂的代谢途径和 29 个参与仙人环形成的候选酶编码基因。担子菌真菌中蛋白质编码基因的比较显示,有两个一氧化氮合酶基因候选物在形成仙人环的真菌基因组中是独特编码的。这些结果为发现参与仙人环形成的基因以及理解真菌与植物相互作用的机制提供了依据。我们还构建了一个新的网络数据库 F-RINGS(http://bioinf.mind.meiji.ac.jp/f-rings/),为 L. sordida 提供了全面的基因组信息。