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Transposable elements in a marginal plant population: temporal fluctuations provide new insights into genome evolution of wild diploid wheat

机译:边缘植物种群中的转座因子:时间波动为野生二倍体小麦的基因组进化提供新见解

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摘要

BackgroundHow new forms arise in nature has engaged evolutionary biologists since Darwin's seminal treatise on the origin of species. Transposable elements (TEs) may be among the most important internal sources for intraspecific variability. Thus, we aimed to explore the temporal dynamics of several TEs in individual genotypes from a small, marginal population of Aegilops speltoides. A diploid cross-pollinated grass species, it is a wild relative of the various wheat species known for their large genome sizes contributed by an extraordinary number of TEs, particularly long terminal repeat (LTR) retrotransposons. The population is characterized by high heteromorphy and possesses a wide spectrum of chromosomal abnormalities including supernumerary chromosomes, heterozygosity for translocations, and variability in the chromosomal position or number of 45S and 5S ribosomal DNA (rDNA) sites. We propose that variability on the morphological and chromosomal levels may be linked to variability at the molecular level and particularly in TE proliferation.
机译:背景技术自达尔文(Darwin)关于物种起源的开创性论文以来,自然界中新形式的出现已引起进化生物学家的关注。转座因子(TEs)可能是种内变异最重要的内部来源之一。因此,我们的目的是从少量边缘的埃及草(Aegilops speltoides)中探索个别基因型中几种TE的时间动态。作为二倍体异花授粉的草种,它是各种小麦种的野生近缘种,这些种以较大的基因组大小(特别是长末端重复序列(LTR)反转录转座子)而闻名,其基因组较大。该种群的特征是高度异质性,并具有广泛的染色体异常,包括超数染色体,易位的杂合性以及染色体位置或45S和5S核糖体DNA(rDNA)位点的数量变异性。我们提出,形态和染色体水平的变异性可能与分子水平的变异性有关,尤其是与TE增殖有关。

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