De La Torre Amanda R, Piot Anthony, Liu Bobin, Wilhite Benjamin, Weiss Matthew, Porth Ilga
School of Forestry Northern Arizona University Flagstaff AZ USA.
Department of Wood and Forest Sciences Laval University Quebec City Quebec Canada.
Evol Appl. 2019 Jul 21;13(1):210-227. doi: 10.1111/eva.12839. eCollection 2020 Jan.
Gymnosperms diverged from their sister plant clade of flowering plants 300 Mya. Morphological and functional divergence between the two major seed plant clades involved significant changes in their reproductive biology, water-conducting systems, secondary metabolism, stress defense mechanisms, and small RNA-mediated epigenetic silencing. The relatively recent sequencing of several gymnosperm genomes and the development of new genomic resources have enabled whole-genome comparisons within gymnosperms, and between angiosperms and gymnosperms. In this paper, we aim to understand how genes and gene families have contributed to the major functional and morphological differences in gymnosperms, and how this information can be used for applied breeding and biotechnology. In addition, we have analyzed the angiosperm versus gymnosperm evolution of the () gene family with a wide range of functionalities in plants' interaction with their environment including defense mechanisms. Some of the genes reviewed here are newly studied members of gene families that hold potential for biotechnological applications related to commercial and pharmacological value. Some members of conifer gene families can also be exploited for their potential in phytoremediation applications.
裸子植物在3亿年前与其开花植物的姐妹植物分支分化开来。这两个主要种子植物分支之间的形态和功能差异涉及到它们生殖生物学、水分传导系统、次生代谢、应激防御机制以及小RNA介导的表观遗传沉默等方面的重大变化。几种裸子植物基因组的相对较新测序以及新基因组资源的开发,使得能够在裸子植物内部以及被子植物和裸子植物之间进行全基因组比较。在本文中,我们旨在了解基因和基因家族如何导致裸子植物的主要功能和形态差异,以及这些信息如何用于应用育种和生物技术。此外,我们分析了在植物与环境相互作用(包括防御机制)中具有广泛功能的()基因家族在被子植物和裸子植物中的进化情况。这里综述的一些基因是基因家族中新研究的成员,它们在与商业和药理价值相关的生物技术应用方面具有潜力。针叶树基因家族的一些成员在植物修复应用中的潜力也可以被开发利用。