植物功能进化中水平基因转移的机制、检测和影响

Lee Mariault, Camille Puginier, Jean Keller, Moaine El Baidouri, Pierre-Marc Delaux
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引用次数: 0

摘要

水平基因转移(HGT)已经在整个生命树中被观察到。虽然它们在细菌中的适应性重要性是显而易见的,但HGT的发生及其在真核生物中的进化意义直到最近才开始被考虑。在本文中,我们探讨了植物界HGT的范围,表明微生物-植物HGT和植物-植物HGT的广泛存在。我们提出了介导这些转移的机制,并详细介绍了使用基于序列和系统基因组的方法来识别和测试假定HGT的稳健性的方法。探索最近在绿色谱系中测序的植物基因组已经揭示了数百个这样的HGT。我们讨论了这些转移对植物适应和功能多样化的影响。在未来,扩大植物界的系统基因组审查应该揭示HGT的全部范围。原位测序以及合成生物学和实验进化的结合可能允许捕获正在进行的HGT并测试这些事件的功能相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanisms, Detection, and Impact of Horizontal Gene Transfer in Plant Functional Evolution
Horizontal gene transfers (HGT) have been observed across the tree of life. While their adaptive importance in bacteria is conspicuous, the occurrence of HGT and their evolutionary significance in Eukaryotes has only recently started to be considered. In this review, we explore the extent of HGT in the plant kingdom, indicating the widespread occurrence of microbe – plant HGT and Plant – Plant HGT. We propose mechanisms that mediate these transfers, and detail the methods available to identify and test the robustness of putative HGT using both sequence-based and phylogenomic approaches. Exploring recently sequenced plant genomes across the green lineage has revealed hundreds of such HGT. We discuss the impact of these transfers on plant adaptation and functional diversification. In the future, expanding the phylogenomic scrutinization of the plant kingdom should reveal the full extent of HGT. In situ sequencing and combinations of synthetic biology and experimental evolution may allow catching ongoing HGT and testing the functional relevance of such events.
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