Institute of Biological Sciences, Faculty of Science, Universiti Malaya, 50603, Kuala Lumpur, Malaysia.
Centre for Research in Biotechnology for Agriculture (CEBAR), Universiti Malaya, 50603, Kuala Lumpur, Malaysia.
Planta. 2024 Jun 3;260(1):14. doi: 10.1007/s00425-024-04449-4.
Significant past, present, and potential future research into the organellar (plastid and mitochondrial) genomes of gymnosperms that can provide insight into the unknown origin and evolution of plants is highlighted. Gymnosperms are vascular seed plants that predominated the ancient world before their sister clade, angiosperms, took over during the Late Cretaceous. The divergence of gymnosperms and angiosperms took place around 300 Mya, with the latter evolving into the diverse group of flowering plants that dominate the plant kingdom today. Although gymnosperms have reportedly made some evolutionary innovations, the literature on their genome advances, particularly their organellar (plastid and mitochondrial) genomes, is relatively scattered and fragmented. While organellar genomes can shed light on plant origin and evolution, they are frequently overlooked, due in part to their limited contribution to gene expression and lack of evolutionary dynamics when compared to nuclear genomes. A better understanding of gymnosperm organellar genomes is critical because they reveal genetic changes that have contributed to their unique adaptations and ecological success, potentially aiding in plant survival, enhancement, and biodiversity conservation in the face of climate change. This review reveals significant information and gaps in the existing knowledge base of organellar genomes in gymnosperms, as well as the challenges and research needed to unravel their complexity.
强调了对裸子植物细胞器(质体和线粒体)基因组的重要过去、现在和潜在未来研究,这些研究可以深入了解植物未知的起源和进化。裸子植物是维管种子植物,在它们的姐妹分支被子植物在白垩纪晚期接管之前,它们在古代世界中占主导地位。裸子植物和被子植物的分化发生在大约 3 亿年前,后者进化成了今天在植物王国中占主导地位的多样的开花植物群。尽管裸子植物据说已经做出了一些进化创新,但关于它们基因组进展的文献,特别是它们的细胞器(质体和线粒体)基因组,相对分散和零碎。虽然细胞器基因组可以揭示植物的起源和进化,但由于它们对基因表达的贡献有限,与核基因组相比缺乏进化动态,因此常常被忽视。更好地了解裸子植物的细胞器基因组至关重要,因为它们揭示了导致其独特适应和生态成功的遗传变化,这可能有助于植物在面对气候变化时的生存、增强和生物多样性保护。本综述揭示了裸子植物细胞器基因组现有知识库中的重要信息和差距,以及揭示其复杂性所需的挑战和研究。