Key Laboratory of Green Control of Crop Pests in Hunan Higher Education, and Hunan Provincial Collaborative Innovation Center for Field Weeds Control, Hunan University of Humanities, Science and Technology, Loudi, 417000, China.
Loudi Institute of Agricultural and Sciences, Loudi, 417000, China.
Mol Biol Rep. 2024 Mar 6;51(1):390. doi: 10.1007/s11033-024-09330-x.
Paecilomyces variotii has important economic value in stimulating crop growth, biodegradation, and other aspects. Up to now, there are no research reports on its mitochondrial genome.
The mitochondrial genome of Paecilomyces variotii was determined with the next-generation sequencing method (Illumina, NovaSeq), and its characteristics were analyzed using various bioinformatics approaches. The length of complete mitochondrial genome sequence of P. variotii is 40,965 bp and consists of 14 protein-coding genes, 2 ribosomal RNA genes, 1 ribosomal protein S3 gene, 26 transport RNA genes. The results of phylogenetics analysis using Bayesian inference and Maximum likelihood methods showed that P. variotii belongs to the Eurotiales order in the Thermoascaceae family, and 9 genera within the Eurotiomycetes class were effectively distinguished with high support rates (bootstrap value > 92% and posterior probabilities > 99%). The analysis of synonymous substitution rates and nonsynonymous substitution rates indicated that the Ka/Ks values of the 14 PCGs in the mitochondrial genomes of the two orders in the Eurotiomycetes class ranged from 0 to 0.4333.
This study revealed the structural and sequence information characteristics of the mitochondrial genome of P. variotii, and the phylogenetic results strongly support its classification within the family Thermoascaceae, consistent with traditional morphological taxonomy studies. The 14 PCGs in the mitochondrial genomes of the two orders in the Eurotiomycetes class are subject to strong purifying (negative) selection. The results of this research provides an important molecular basis for the development of genomics, evolutionary genetics and molecular markers of P. variotii in the future.
多形拟青霉在促进作物生长、生物降解等方面具有重要的经济价值。迄今为止,还没有关于其线粒体基因组的研究报告。
采用下一代测序方法(Illumina NovaSeq)测定了多形拟青霉的线粒体基因组,并采用各种生物信息学方法分析了其特征。P. variotii 完整线粒体基因组序列的长度为 40965 bp,由 14 个蛋白质编码基因、2 个核糖体 RNA 基因、1 个核糖体蛋白 S3 基因、26 个转运 RNA 基因组成。贝叶斯推断和最大似然法的系统发育分析结果表明,P. variotii 属于Thermoascaceae 科的 Eurotiales 目,并且有效区分了 Eurotiomycetes 目中的 9 个属,支持率高(bootstrap 值>92%,后验概率>99%)。同义替代率和非同义替代率分析表明,在 Eurotiomycetes 目中两个目线粒体基因组的 14 个 PCGs 的 Ka/Ks 值范围为 0 到 0.4333。
本研究揭示了 P. variotii 线粒体基因组的结构和序列信息特征,系统发育结果强烈支持其在Thermoascaceae 科中的分类,与传统形态分类学研究一致。在 Eurotiomycetes 目中两个目的线粒体基因组中的 14 个 PCGs 受到强烈的净化(负)选择。本研究结果为未来多形拟青霉的基因组学、进化遗传学和分子标记的发展提供了重要的分子基础。