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Insights into the Evolution and Function of Auxin Signaling F-Box Proteins in Arabidopsis thaliana Through Synthetic Analysis of Natural Variants

机译:通过自然变异的综合分析洞察拟南芥生长素信号转导F-Box蛋白的进化和功能

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The evolution of complex body plans in land plants has been paralleled by gene duplication and divergence within nuclear auxin-signaling networks. A deep mechanistic understanding of auxin signaling proteins therefore may allow rational engineering of novel plant architectures. Toward that end, we analyzed natural variation in the auxin receptor F-box family of wild accessions of the reference plant Arabidopsis thaliana and used this information to populate a structure/function map. We employed a synthetic assay to identify natural hypermorphic F-box variants and then assayed auxin-associated phenotypes in accessions expressing these variants. To more directly measure the impact of the strongest variant in our synthetic assay on auxin sensitivity, we generated transgenic plants expressing this allele. Together, our findings link evolved sequence variation to altered molecular performance and auxin sensitivity. This approach demonstrates the potential for combining synthetic biology approaches with quantitative phenotypes to harness the wealth of available sequence information and guide future engineering efforts of diverse signaling pathways.
机译:核植物生长素信号网络内的基因复制和发散与陆地植物复杂的身体计划的演变并行。因此,对植物生长素信号蛋白的深入机械理解可以使新型植物结构的合理设计成为可能。为此,我们分析了参照植物拟南芥野生种的生长素受体F-box家族的自然变异,并使用此信息填充了结构/功能图。我们采用了合成测定法来鉴定天然的超型F-box变体,然后在表达这些变体的部分中测定了与生长素相关的表型。为了更直接地测量合成分析中最强变体对植物生长素敏感性的影响,我们生成了表达该等位基因的转基因植物。总之,我们的发现将进化的序列变异与改变的分子性能和植物生长素敏感性联系起来。该方法证明了将合成生物学方法与定量表型结合起来的潜力,以利用丰富的可用序列信息并指导未来多种信号通路的工程应用。

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