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首页> 外文期刊>Australian Systematic Botany >Use of nuclear genes for phylogeny reconstruction in plants [Review]
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Use of nuclear genes for phylogeny reconstruction in plants [Review]

机译:核基因在植物系统发育重建中的应用[综述]

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摘要

Molecular data have had a profound impact on the field of plant systematics, and the application of DNA-sequence data to phylogenetic problems is now routine. The majority of data used in plant molecular phylogenetic studies derives from chloroplast DNA and nuclear rDNA, while the use of low-copy nuclear genes has not been widely adopted. This is due, at least in part, to the greater difficulty of isolating and characterising low-copy nuclear genes relative to chloroplast and rDNA sequences that are readily amplified with universal primers. The higher level of sequence variation characteristic of low-copy nuclear genes, however, often compensates for the experimental effort required to obtain them. In this review, we briefly discuss the strengths and limitations of chloroplast and rDNA sequences, and then focus our attention on the use of low-copy nuclear sequences. Advantages of low-copy nuclear sequences include a higher rate of evolution than for organellar sequences, the potential to accumulate datasets from multiple unlinked loci, and bi-parental inheritance. Challenges intrinsic to the use of low-copy nuclear sequences include distinguishing orthologous loci from divergent paralogous loci in the same gene family, being mindful of the complications arising from concerted evolution or recombination among paralogous sequences, and the presence of intraspecific, intrapopulational and intraindividual polymorphism. Finally, we provide a detailed protocol for the isolation, characterisation and use of low-copy nuclear sequences for phylogenetic studies.
机译:分子数据对植物系统学领域产生了深远的影响,现在将DNA序列数据应用于系统发育问题已成为常规。植物分子系统发育研究中使用的大多数数据来自叶绿体DNA和核rDNA,而低拷贝核基因的使用尚未得到广泛采用。这至少部分是由于相对于容易用通用引物扩增的叶绿体和rDNA序列,分离和鉴定低拷贝核基因的难度更大。然而,低拷贝核基因的较高水平的序列变异特征通常补偿了获得它们所需的实验努力。在这篇综述中,我们简要讨论了叶绿体和rDNA序列的优势和局限性,然后将注意力集中在低拷贝核序列的使用上。低拷贝核序列的优势包括比细胞器序列具有更高的进化速率,从多个未链接基因座积累数据集的潜力以及双亲遗传。使用低拷贝核序列的内在挑战包括将直系同源位点与同一基因家族中不同的旁系同源位点区分开来,要牢记旁系同源序列之间协调一致的进化或重组所引起的复杂性,以及种内,种群内和个体内多态性的存在。 。最后,我们提供了用于系统发育研究的低拷贝核序列的分离,表征和使用的详细协议。

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