Department of Biological Sciences, University of Alberta, Edmonton, Alberta T6G 2E9, Canada; RG Plant Cytogenomics, Central European Institute of Technology, 625 00 Brno, Czech Republic; National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Kamenice 5, 625 00 Brno, Czech Republic.
Biosystematics Group, Wageningen University, 6708 PB Wageningen, The Netherlands.
Trends Plant Sci. 2018 Sep;23(9):808-821. doi: 10.1016/j.tplants.2018.06.010. Epub 2018 Jul 11.
Cleomaceae is a diverse group well-suited to addressing fundamental genomic and evolutionary questions as the sister group to Brassicaceae, facilitating transfer of knowledge from the model Arabidopsis thaliana. Phylogenetic and taxonomic revisions provide a framework for examining the evolution of substantive morphological and physiology diversity in Cleomaceae, but not necessarily in Brassicaceae. The investigation of both nested and contrasting whole-genome duplications (WGDs) between Cleomaceae and Brassicaceae allows comparisons of independently duplicated genes and investigation of whether they may be drivers of the observed innovations. Further, a wealth of outstanding genetic research has provided insight into how the important alternative carbon fixation pathway, C photosynthesis, has evolved via differential expression of a suite of genes, of which the underlying mechanisms are being elucidated.
白花菜科是一个多样化的群体,非常适合解决基因组和进化的基本问题,因为它是芸薹科的姐妹群,可以促进从模式植物拟南芥中转移知识。系统发育和分类修订为研究白花菜科中实质性形态和生理学多样性的进化提供了一个框架,但不一定适用于芸薹科。对白花菜科和芸薹科之间嵌套和对比的全基因组复制(WGD)的研究允许对独立复制的基因进行比较,并研究它们是否可能是观察到的创新的驱动因素。此外,大量杰出的遗传研究提供了深入了解重要的替代碳固定途径 C 光合作用如何通过一系列基因的差异表达进化而来,其中正在阐明其潜在机制。