Area of Plant Physiology, Department of Organisms and Systems Biology, University of Oviedo, 33071 Oviedo, Spain.
Functional Genomic Center Zurich, University and ETH Zurich, 8092 Zurich, Switzerland.
Int J Mol Sci. 2023 Aug 4;24(15):12429. doi: 10.3390/ijms241512429.
Ferns and lycophytes have received scant molecular attention in comparison to angiosperms. The advent of high-throughput technologies allowed an advance towards a greater knowledge of their elusive genomes. In this work, proteomic analyses of heart-shaped gametophytes of two ferns were performed: the apomictic ssp. and its sexual relative . In total, a set of 218 proteins shared by these two gametophytes were analyzed using the STRING database, and their proteome associated with metabolism, genetic information processing, and responses to abiotic stress is discussed. Specifically, we report proteins involved in the metabolism of carbohydrates, lipids, and nucleotides, the biosynthesis of amino acids and secondary compounds, energy, oxide-reduction, transcription, translation, protein folding, sorting and degradation, and responses to abiotic stresses. The interactome of this set of proteins represents a total network composed of 218 nodes and 1792 interactions, obtained mostly from databases and text mining. The interactions among the identified proteins of the ferns and , together with the description of their biological functions, might contribute to a better understanding of the function and development of ferns as well as fill knowledge gaps in plant evolution.
与被子植物相比,蕨类植物和石松类植物在分子水平上受到的关注较少。高通量技术的出现使得人们对这些难以捉摸的基因组有了更多的了解。在这项工作中,对两种蕨类植物的心形配子体进行了蛋白质组学分析:无融合生殖的 ssp. 和其有性亲缘种 。总共使用 STRING 数据库分析了这两种配子体共有的 218 种蛋白质,并讨论了与代谢、遗传信息处理和非生物胁迫反应相关的它们的蛋白质组。具体来说,我们报告了参与碳水化合物、脂质和核苷酸代谢、氨基酸和次生化合物生物合成、能量、氧化还原、转录、翻译、蛋白质折叠、分类和降解以及非生物胁迫反应的蛋白质。这组蛋白质的互作组代表了一个由 218 个节点和 1792 个相互作用组成的总网络,这些主要是从数据库和文本挖掘中获得的。蕨类植物 和 中鉴定出的蛋白质之间的相互作用,以及对其生物学功能的描述,可能有助于更好地理解蕨类植物的功能和发育,并填补植物进化中的知识空白。