Kaushik Abhinav, Roberts Daniel P, Ramaprasad Abhinay, Mfarrej Sara, Nair Mridul, Lakshman Dilip K, Pain Arnab
Biological and Environmental Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal, Saudi Arabia.
Sustainable Agricultural Systems Laboratory, United States Department of Agriculture-Agricultural Research Service (USDA-ARS), Beltsville, MD, United States.
Front Microbiol. 2022 Mar 25;13:839524. doi: 10.3389/fmicb.2022.839524. eCollection 2022.
Rhizoctonia solani is a collective group of genetically and pathologically diverse basidiomycetous fungi that damage economically important crops. Its isolates are classified into 13 Anastomosis Groups (AGs) and subgroups having distinctive morphology and host ranges. The genetic factors driving the unique features of pathology are not well characterized due to the limited availability of its annotated genomes. Therefore, we performed genome sequencing, assembly, annotation and functional analysis of 12 isolates covering 7 AGs and select subgroups (AG1-IA; AG1-IB; AG1-IC; AG2-2IIIB; AG3-PT, isolates Rhs 1AP and the hypovirulent Rhs1A1; AG3-TB; AG4-HG-I, isolates Rs23 and R118-11; AG5; AG6; and AG8), in which six genomes are reported for the first time. Using a pangenome comparative analysis of 12 isolates and 15 other Basidiomycetes, we defined the unique and shared secretomes, CAZymes, and effectors across the AGs. We have also elucidated the -derived factors potentially involved in determining AG-specific host preference, and the attributes distinguishing them from other Basidiomycetes. Finally, we present the largest repertoire of genomes and their annotated components as a comprehensive database, viz. RsolaniDB, with tools for large-scale data mining, functional enrichment and sequence analysis not available with other state-of-the-art platforms.
立枯丝核菌是一组遗传和病理特征多样的担子菌真菌,会损害具有重要经济价值的作物。其分离株被分为13个融合群(AGs)和亚群,具有独特的形态和寄主范围。由于其注释基因组的可用性有限,驱动其独特病理特征的遗传因素尚未得到充分表征。因此,我们对涵盖7个AGs和选定亚群(AG1-IA;AG1-IB;AG1-IC;AG2-2IIIB;AG3-PT,分离株Rhs 1AP和低毒力的Rhs1A1;AG3-TB;AG4-HG-I,分离株Rs23和R118-11;AG5;AG6;和AG8)的12个分离株进行了基因组测序、组装、注释和功能分析,其中6个基因组是首次报道。通过对12个分离株和其他15种担子菌进行泛基因组比较分析,我们定义了各AGs中独特和共有的分泌蛋白组、碳水化合物活性酶(CAZymes)和效应子。我们还阐明了可能参与决定AG特异性寄主偏好的衍生因素,以及将它们与其他担子菌区分开来的特征。最后,我们展示了最大的基因组及其注释成分库,作为一个综合数据库,即RsolaniDB,它具有其他先进平台所没有的大规模数据挖掘、功能富集和序列分析工具。