Abstract
AbstractThe root systems of most plant species are aided by the soil foraging capacities of symbiotic Arbuscular Mycorrhizal (AM) fungi of the Glomeromycotina subphylum. Despite recent advances in our knowledge of the ecology and molecular biology of this mutualistic symbiosis, our understanding of the AM fungi genome biology is just emerging. Presented here are the most contiguous and highest-quality nuclear and mitochondrial genome assemblies of an arbuscular mycorrhizal fungus to date, achieved through Nanopore long-read DNA sequencing and Hi-C data. This haploid genome assembly ofRhizophagus irregularis, alongside short- and long-read RNA-Sequencing data, was used to produce a comprehensive annotation catalogue of gene models, repetitive elements, small RNA loci, and DNA cytosine methylome. A phylostratigraphic gene age inference framework revealed that the birth of genes associated with nutrient transporter activity and transmembrane ion transport systems predates the emergence of Glomeromycotina. While symbiotic nutrient cycling in AM fungi relies on genes that existed in ancestor lineages, a burst of Glomeromycotina-restricted genetic innovation is also detected. Analysis of the chromosomal distribution of genetic and epigenetic features highlights evolutionarily young genomic regions that produce abundant small RNAs, suggesting active RNA-based monitoring of genetic sequences surrounding recently evolved genes. This chromosome-scale view of the genome of an AM fungus genome reveals previously unexplored sources of genomic novelty in an organism evolving under an obligate symbiotic life cycle.HighlightsAssembly of 32 highly contiguous chromosomal scaffolds forR. irregularis, with 23 complete and gaplessGene annotation based on short- and long-read RNA-Seq data from different developmental stagesComplete annotation set including mitochondrial genes, DNA methylome, small RNAome, repetitive/transposable elements, functional annotationIdentification of a burst of lineage-restricted genetic innovation in the Glomeromycotina subphylum
Publisher
Cold Spring Harbor Laboratory
Reference90 articles.
1. MitoFinder: Efficient automated large-scale extraction of mitogenomic data in target enrichment phylogenomics;Mol Ecol Resour,2020
2. ShortStack: Comprehensive annotation and quantification of small RNA genes
3. Fitting a mixture model by expectation maximization to discover motifs in biopolymers;Proc Int Conf Intell Syst Mol Biol,1994
4. Barrera-Redondo, J. , Lotharukpong, J. , Drost, H.-G. , & Coelho, S. (2022). Uncovering gene-family founder events during major evolutionary transitions in animals, plants and fungi using GenEra. bioRxiv. https://doi.org/10.1101/2022.07.07.498977
5. Negative feedback within a mutualism: host–specific growth of mycorrhizal fungi reduces plant benefit
Cited by
3 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献