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Dryas as a Model for Studying the Root Symbioses of the Rosaceae

机译:树妖作为研究蔷薇科根系共生的模型

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摘要

The nitrogen-fixing root nodule symbiosis is restricted to four plant orders: Fabales (legumes), Fagales, Cucurbitales and Rosales (Elaeagnaceae, Rhamnaceae, and Rosaceae). Interestingly all of the Rosaceae genera confirmed to contain nodulating species (i.e., Cercocarpus, Chamaebatia, Dryas, and Purshia) belong to a single subfamily, the Dryadoideae. The Dryas genus is particularly interesting from an evolutionary perspective because it contains closely related nodulating (Dryas drummondii) and non-nodulating species (Dryas octopetala). The close phylogenetic relationship between these two species makes Dryas an ideal model genus to study the genetic basis of nodulation by whole genome comparison and classical genetics. Therefore, we established methods for plant cultivation, transformation and DNA extraction for these species. We optimized seed surface sterilization and germination methods and tested growth protocols ranging from pots and Petri dishes to a hydroponic system. Transgenic hairy roots were obtained by adapting Agrobacterium rhizogenes-based transformation protocols for Dryas species. We compared several DNA extraction protocols for their suitability for subsequent molecular biological analysis. Using CTAB extraction, reproducible PCRs could be performed, but CsCl gradient purification was essential to obtain DNA in sufficient purity for high quality de novo genome sequencing of both Dryas species. Altogether, we established a basic toolkit for the culture, transient transformation and genetic analysis of Dryas sp.
机译:固氮根瘤共生仅限于四个植物纲:Fabales(豆类),Fagales,葫芦科和Rosales(E科,鼠李科和蔷薇科)。有趣的是,所有蔷薇科属都被证实含有结节性物种(即,椰果,查贝巴提亚(Chamaebatia),得里亚斯(Dryas)和紫苏属(Purshia))属于一个单一的亚科(Dryadoideae)。从进化的角度来看,树妖属特别有趣,因为它包含密切相关的根瘤菌(Dryas drummondii)和非根瘤菌种(Dryas octopetala)。这两个物种之间密切的系统发育关系使Dryas成为通过全基因组比较和经典遗传学研究结瘤遗传基础的理想模型属。因此,我们建立了这些物种的植物栽培,转化和DNA提取方法。我们优化了种子表面的杀菌和发芽方法,并测试了从盆栽和培养皿到水培系统的生长方案。通过将基于发根农杆菌的转化方案改编为Dryas物种,可获得转基因的毛状根。我们比较了几种DNA提取方案的适用性,以便随后进行分子生物学分析。使用CTAB提取可以进行可重现的PCR,但是CsCl梯度纯化对于获得足够纯度的DNA来说,对于两种得克萨斯物种的高质量从头基因组测序都是必不可少的。总体而言,我们建立了一种对Dryas sp。的培养,瞬时转化和遗传分析的基本工具包。

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