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测序基因组和快速发展的技术为针叶树进化发育生物学铺平了道路。

Sequenced genomes and rapidly emerging technologies pave the way for conifer evolutionary developmental biology.

作者信息

Uddenberg Daniel, Akhter Shirin, Ramachandran Prashanth, Sundström Jens F, Carlsbecker Annelie

机构信息

Physiological Botany, Department of Organismal Biology and Linnean Centre for Plant Biology, Uppsala BioCenter, Uppsala University , Uppsala, Sweden.

Department of Plant Biology and Linnean Centre for Plant Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences , Uppsala, Sweden.

出版信息

Front Plant Sci. 2015 Nov 3;6:970. doi: 10.3389/fpls.2015.00970. eCollection 2015.

Abstract

Conifers, Ginkgo, cycads and gnetophytes comprise the four groups of extant gymnosperms holding a unique position of sharing common ancestry with the angiosperms. Comparative studies of gymnosperms and angiosperms are the key to a better understanding of ancient seed plant morphologies, how they have shifted over evolution to shape modern day species, and how the genes governing these morphologies have evolved. However, conifers and other gymnosperms have been notoriously difficult to study due to their long generation times, inaccessibility to genetic experimentation and unavailable genome sequences. Now, with three draft genomes from spruces and pines, rapid advances in next generation sequencing methods for genome wide expression analyses, and enhanced methods for genetic transformation, we are much better equipped to address a number of key evolutionary questions relating to seed plant evolution. In this mini-review we highlight recent progress in conifer developmental biology relevant to evo-devo questions. We discuss how genome sequence data and novel techniques might allow us to explore genetic variation and naturally occurring conifer mutants, approaches to reduce long generation times to allow for genetic studies in conifers, and other potential upcoming research avenues utilizing current and emergent techniques. Results from developmental studies of conifers and other gymnosperms in comparison to those in angiosperms will provide information to trace core molecular developmental control tool kits of ancestral seed plants, but foremost they will greatly improve our understanding of the biology of conifers and other gymnosperms in their own right.

摘要

针叶树、银杏、苏铁和买麻藤纲植物构成了现存裸子植物的四个类群,它们与被子植物有着共同的祖先,占据着独特的地位。对裸子植物和被子植物进行比较研究,是更好地理解古代种子植物形态、它们在进化过程中如何演变以形成现代物种,以及控制这些形态的基因如何进化的关键。然而,针叶树和其他裸子植物由于其较长的世代时间、难以进行基因实验以及缺乏可用的基因组序列,一直以来都很难进行研究。现在,随着云杉和松树的三个基因组草图、用于全基因组表达分析的新一代测序方法的快速发展,以及基因转化方法的改进,我们有了更好的条件来解决一些与种子植物进化相关的关键进化问题。在这篇小型综述中,我们重点介绍了针叶树发育生物学在与进化发育问题相关方面的最新进展。我们讨论了基因组序列数据和新技术如何使我们能够探索遗传变异和天然存在的针叶树突变体、缩短长世代时间以进行针叶树遗传研究的方法,以及利用现有和新兴技术的其他潜在研究途径。与被子植物相比,针叶树和其他裸子植物的发育研究结果将为追溯祖先种子植物的核心分子发育控制工具包提供信息,但最重要的是,它们将极大地增进我们对针叶树和其他裸子植物自身生物学的理解。

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