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首页> 外文期刊>Journal of Molecular Evolution >Retroelements and DNA Methylation Could Contribute to Diversity of 5S rDNA in Agave L.
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Retroelements and DNA Methylation Could Contribute to Diversity of 5S rDNA in Agave L.

机译:Retroelement和DNA甲基化可能有助于龙舌兰L中的5S rdNA的多样性。

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Agave L. is a genus of economic importance, and many of the 166 species in the American plant genus Agave L. inhabit high-stress environments, which makes the genus promising for facing global climate change. However, sustainable use of economically important species without interfering with their ecology and evolution requires generating knowledge about the factors responsible for their genetic variation and diversity and, on this basis, their adaptation and speciation. Few genetic studies exploring the evolutionary relationships, speciation processes, genetic variability and diversity within species of Agave are currently available. Analyses of rDNA loci have been performed with the purpose of determining the genetic variability and diversity of the genus Agave, and these loci have been used as genetic markers of ploidy. However, the factors involved in the diversity of 5S rDNA regions in Agave have not yet been studied in depth. Our study explored the possible mechanisms of genetic (retroelements) and epigenetic (DNA methylation) diversity in 5S rDNA regions in Agave. We characterized the 5S rDNA gene tandem in species of the genus with different ploidy numbers and determined the levels of methylation in 13 haplotypes of 5S rDNA and in four non-transcribed spacers (NTS). Our results showed highly dynamic methylation with a high percentage in haplotypes and NTS of 5S rDNA regions in Agave. The characterization of the 5S rDNA tandem array in Agave revealed vestigial remains of the Cassandra terminal-repeat retrotransposon in miniature (TRIM). Our analysis supported previous results suggesting that in species of Agave L., regulation and diversity of 5S rDNA regions are controlled by coordinated genetic and epigenetic events, which will vary according to the species and the level of ploidy. The artificial pressure to which some agave crops are subjected may affect the mechanisms of evolution of gene 5S rDNA.
机译:Agave L.是经济重要性的一种,而美国植物龙舌兰L.居住的高应力环境中的许多物种中的许多物种使得面向全球气候变化的前景。然而,在没有干扰其生态和演变的情况下,可持续使用经济上重要的物种需要了解有关负责其遗传变异和多样性的因素的知识,并且在此基础上,他们的适应和形态。目前可获得探索龙舌兰种类的进化关系,物种过程,遗传变异性和多样性的遗传研究。已经进行了RDNA基因座的分析,目的是测定龙舌兰属的遗传变异性和多样性,并且这些基因座已被用作倍率的遗传标记。然而,迄今尚未研究龙舌兰5S rDNA区域的多样性所涉及的因素。我们的研究探讨了在龙舌兰5S rDNA区域中遗传(retelements)和表观遗传学(DNA甲基化)多样性的可能机制。我们在具有不同倍率数的种类中的5S rdNA基因串联,并确定了13个单倍型的甲基化水平,5S rDNA和四个非转录的间隔物(NTS)。我们的结果表明,在龙舌兰的单倍型和5S rDNA区域的单倍型和NTS中具有高度动态甲基化。龙舌兰5S rDNA串联阵列的表征显示了微型(修剪)中的Cassandra末端重复转回转储的残留剩余物。我们的分析支持以前的结果表明,在龙舌兰L的种类中,5S rDNA地区的调节和多样性由协调遗传和表观遗传事件控制,这将根据物种和倍增性水平而变化。受到一些龙舌兰作物的人工压力可能影响基因5S rDNA的演化机制。

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