Khairi Mohamad Hazwan Fikri, Nor Muhammad Nor Azlan, Bunawan Hamidun, Abdul Murad Abdul Munir, Ramzi Ahmad Bazli
Institute of Systems Biology, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.
Department of Biological Sciences and Biotechnology, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.
J Fungi (Basel). 2022 Jul 29;8(8):793. doi: 10.3390/jof8080793.
is the major causal agent of basal stem rot (BSR) disease in oil palm, causing the progressive rot of the basal part of the stem. Despite its prominence, the key pathogenicity determinants for the aggressive nature of hemibiotrophic infection remain unknown. In this study, genome sequencing and the annotation of T10 were carried out using the Illumina sequencing platform, and comparative genome analysis was performed with previously reported strains (NJ3 and G3). The pan-secretome of was constructed and comprised 937 core orthogroups, 243 accessory orthogroups, and 84 strain-specific orthogroups. In total, 320 core orthogroups were enriched with candidate effector proteins (CEPs) that could be classified as carbohydrate-active enzymes, hydrolases, and non-catalytic proteins. Differential expression analysis revealed an upregulation of five CEP genes that was linked to the suppression of PTI signaling cascade, while the downregulation of four CEP genes was linked to the inhibition of PTI by preventing host defense elicitation. Genome architecture analysis revealed the one-speed architecture of the genome and the lack of preferential association of CEP genes to transposable elements. The findings obtained from this study aid in the characterization of pathogenicity determinants and molecular biomarkers of BSR disease.
是油棕基部茎腐病(BSR)的主要致病因子,导致茎基部逐渐腐烂。尽管其很突出,但半活体营养型感染的侵袭性关键致病决定因素仍不清楚。在本研究中,使用Illumina测序平台对T10进行了基因组测序和注释,并与先前报道的菌株(NJ3和G3)进行了比较基因组分析。构建了该菌的泛分泌组,包括937个核心直系同源组、243个辅助直系同源组和84个菌株特异性直系同源组。总共320个核心直系同源组富含可归类为碳水化合物活性酶、水解酶和非催化蛋白的候选效应蛋白(CEP)。差异表达分析显示,五个CEP基因上调与PTI信号级联的抑制有关,而四个CEP基因下调与通过阻止宿主防御激发来抑制PTI有关。基因组结构分析揭示了该菌基因组的单速结构以及CEP基因与转座元件缺乏优先关联。本研究获得的结果有助于表征BSR病的致病决定因素和分子生物标志物。