State Key Laboratory of North China Crop Improvement and Regulation/Hebei Bioinformatic Utilization and Technological Innovation Center for Agricultural Microbes, Hebei Agricultural University, Hebei 071001, China.
Shijiazhuang Agricultural Technology Extension Center, Shijiazhuang, 050051, China.
Int J Biol Macromol. 2024 Oct;278(Pt 1):134328. doi: 10.1016/j.ijbiomac.2024.134328. Epub 2024 Aug 3.
Rhizoctonia solani is a soil-borne pathogen with 14 anastomosis groups (AGs), and different subgroups are genetically diverse. However, the genetic factors contributing to the pathogenicity of the fungus have not been well characterized. In this study, the genome of R. solani AG1-ZJ was sequenced. As the result, a 41.57 Mb draft genome containing 12,197 putative coding genes was obtained. Comparative genomic analysis of 11 different AGs revealed conservation and unique characteristics between the AGs. Furthermore, a novel effector family containing a 68 amino acid conserved domain unique in basidiomycetous fungi was characterized. Two effectors containing the conserved domain in AG4-JY were identified, and named as RsUEB1 and RsUEB2. Furthermore, the spray-induced gene silencing strategy was used to generate a dsRNA capable of silencing the conserved domain sequence of RsUEB1 and RsUEB2. This dsRNA can significantly reduce the expression of RsUEB1 and RsUEB2 and the pathogenicity of AG4-JY on foxtail millet, maize, rice and wheat. In conclusion, this study provides significant insights into the pathogenicity mechanisms of R. solani. The identification of the conserved domain and the successful use of dsRNA silencing of the gene containing the conserved domain will offer a new strategy for controlling sheath blight in cereal crops.
立枯丝核菌是一种土壤传播病原体,具有 14 个吻合群(AG),不同亚群在遗传上具有多样性。然而,导致真菌致病性的遗传因素尚未得到很好的描述。在这项研究中,我们对立枯丝核菌 AG1-ZJ 的基因组进行了测序。结果获得了一个包含 12197 个推定编码基因的 41.57 Mb 草案基因组。对 11 个不同 AG 的比较基因组分析揭示了 AG 之间的保守性和独特特征。此外,还鉴定了一个包含在担子菌真菌中独特的 68 个氨基酸保守结构域的新型效应子家族。在 AG4-JY 中鉴定到两个含有保守结构域的效应子,并分别命名为 RsUEB1 和 RsUEB2。进一步采用喷雾诱导基因沉默策略,生成一种能够沉默 RsUEB1 和 RsUEB2 保守结构域序列的 dsRNA。这种 dsRNA 可以显著降低 RsUEB1 和 RsUEB2 的表达水平,以及 AG4-JY 对谷子、玉米、水稻和小麦的致病性。总之,本研究为立枯丝核菌的致病性机制提供了重要的见解。保守结构域的鉴定以及成功利用 dsRNA 沉默含保守结构域的基因,为控制谷类作物纹枯病提供了一种新策略。