Plant Cell Biology, Department of Biology, University of Marburg, Marburg, Germany.
Department of Subtropical and Mediterranean Fruit Crops, Institute for Mediterranean and Subtropical Horticulture "La Mayora" (IHSM-CSIC-UMA), Málaga, Spain.
J Exp Bot. 2022 Jul 16;73(13):4291-4305. doi: 10.1093/jxb/erac052.
Bryophytes are useful models for the study of plant evolution, development, plant-fungal symbiosis, stress responses, and gametogenesis. Additionally, their dominant haploid gametophytic phase makes them great models for functional genomics research, allowing straightforward genome editing and gene knockout via CRISPR or homologous recombination. Until 2016, however, the only bryophyte genome sequence published was that of Physcomitrium patens. Throughout recent years, several other bryophyte genomes and transcriptome datasets became available, enabling better comparative genomics in evolutionary studies. The increase in the number of bryophyte genome and transcriptome resources available has yielded a plethora of annotations, databases, and bioinformatics tools to access the new data, which covers the large diversity of this clade and whose biology comprises features such as association with arbuscular mycorrhiza fungi, sex chromosomes, low gene redundancy, or loss of RNA editing genes for organellar transcripts. Here we provide a guide to resources available for bryophytes with regards to genome and transcriptome databases and bioinformatics tools.
苔藓植物是研究植物进化、发育、植物-真菌共生、应激反应和配子发生的有用模型。此外,它们占主导地位的单倍体配子体阶段使它们成为功能基因组学研究的理想模型,允许通过 CRISPR 或同源重组进行简单的基因组编辑和基因敲除。然而,直到 2016 年,发表的唯一苔藓植物基因组序列是 Physcomitrium patens 的基因组序列。近年来,其他几个苔藓植物基因组和转录组数据集也已可用,从而能够在进化研究中进行更好的比较基因组学研究。苔藓植物基因组和转录组资源的数量不断增加,产生了大量的注释、数据库和生物信息学工具来访问新数据,这些数据涵盖了该类群的多样性,其生物学特征包括与丛枝菌根真菌、性染色体、低基因冗余或细胞器转录体 RNA 编辑基因缺失的关联。在这里,我们针对基因组和转录组数据库以及生物信息学工具,为苔藓植物提供了资源指南。