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原位暗适应提高了从成熟的针栎(沼生栎)叶片中提取DNA的效率,有助于鉴定18S rRNA和异戊二烯合酶(IspS)基因的部分序列。

In Situ Dark Adaptation Enhances the Efficiency of DNA Extraction from Mature Pin Oak (Quercus palustris) Leaves, Facilitating the Identification of Partial Sequences of the 18S rRNA and Isoprene Synthase (IspS) Genes.

作者信息

Barta Csengele E, Bolander Bethany, Bilby Steven R, Brown Jeremy H, Brown Reid N, Duryee Alexander M, Edelman Danielle R, Gray Christina E, Gossett Chandler, Haddock Amie G, Helsel Mackenzie M, Jones Alyssa D, Klingseis Marissa E, Leslie Kalif, Miles Edward W, Prawitz Rachael A

机构信息

Department of Biology, Missouri Western State University, 4525 Downs Drive, Agenstein-Remington Halls, St. Joseph, MO 64507, USA.

出版信息

Plants (Basel). 2017 Oct 24;6(4):52. doi: 10.3390/plants6040052.

Abstract

Mature oak ( spp.) leaves, although abundantly available during the plants' developmental cycle, are rarely exploited as viable sources of genomic DNA. These leaves are rich in metabolites difficult to remove during standard DNA purification, interfering with downstream molecular genetics applications. The current work assessed whether in situ dark adaptation, to deplete sugar reserves and inhibit secondary metabolite synthesis could compensate for the difficulties encountered when isolating DNA from mature leaves rich in secondary metabolites. We optimized a rapid, commercial kit based method to extract genomic DNA from dark- and light-adapted leaves. We demonstrated that in situ dark adaptation increases the yield and quality of genomic DNA obtained from mature oak leaves, yielding templates of sufficiently high quality for direct downstream applications, such as PCR amplification and gene identification. The quality of templates isolated from dark-adapted pin oak leaves particularly improved the amplification of larger fragments in our experiments. From DNA extracts prepared with our optimized method, we identified for the first time partial segments of the genes encoding 18S rRNA and isoprene synthase () from pin oak (), whose full genome has not yet been sequenced.

摘要

成熟的橡树(栎属物种)叶片,尽管在植物发育周期中大量可得,但很少被用作基因组DNA的可行来源。这些叶片富含在标准DNA纯化过程中难以去除的代谢物,会干扰下游分子遗传学应用。当前的研究评估了原位暗适应,以耗尽糖分储备并抑制次生代谢物合成,是否能够弥补从富含次生代谢物的成熟叶片中分离DNA时遇到的困难。我们优化了一种基于商业试剂盒的快速方法,用于从暗适应和光适应的叶片中提取基因组DNA。我们证明,原位暗适应提高了从成熟橡树叶中获得的基因组DNA的产量和质量,产生了质量足够高的模板,可直接用于下游应用,如PCR扩增和基因鉴定。在我们的实验中,从暗适应的针栎叶片中分离的模板质量尤其提高了较大片段的扩增效果。通过我们优化的方法制备的DNA提取物,我们首次从尚未进行全基因组测序的针栎中鉴定出了编码18S rRNA和异戊二烯合酶的基因的部分片段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/877c/5750628/879b55fb5497/plants-06-00052-g001.jpg

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