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Diversity of Long Terminal Repeat Retrotransposon Genome Distribution in Natural Populations of the Wild Diploid Wheat Aegilops speltoides

机译:野生二倍体小麦Aegilops speltoides的自然种群中的长末端重复反转录转座子基因组分布的多样性。

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摘要

The environment can have a decisive influence on the structure of the genome, changing it in a certain direction. Therefore, the genomic distribution of environmentally sensitive transposable elements may vary measurably across a species area. In the present research, we aimed to detect and evaluate the level of LTR retrotransposon intraspecific variability in Aegilops speltoides (2n = 2x = 14), a wild cross-pollinated relative of cultivated wheat. The interretrotransposon amplified polymorphism (IRAP) protocol was applied to detect and evaluate the level of retrotransposon intraspecific variability in Ae. speltoides and closely related species. IRAP analysis revealed significant diversity in TE distribution. Various genotypes from the 13 explored populations significantly differ with respect to the patterns of the four explored LTR retrotransposons (WIS2, Wilma, Daniela, and Fatima). This diversity points to a constant ongoing process of LTR retrotransposon fraction restructuring in populations of Ae. speltoides throughout the species’ range and within single populations in time. Maximum changes were recorded in genotypes from small stressed populations. Principal component analysis showed that the dynamics of the Fatima element significantly differ from those of WIS2, Wilma, and Daniela. In terms of relationships between Sitopsis species, IRAP analysis revealed a grouping with Ae. sharonensis and Ae. longissima forming a separate unit, Ae. speltoides appearing as a dispersed group, and Ae. bicornis being in an intermediate position. IRAP display data revealed dynamic changes in LTR retrotransposon fractions in the genome of Ae. speltoides. The process is permanent and population specific, ultimately leading to the separation of small stressed populations from the main group.
机译:环境可以对基因组的结构产生决定性的影响,可以在一定方向上改变它。因此,环境敏感的转座因子的基因组分布可能在整个物种区域内发生可测量的变化。在本研究中,我们旨在检测和评估Aegilops speltoides(2n = 2x = 14)(一种栽培小麦的野生异花授粉亲戚)中LTR反转录转座子种内变异性的水平。逆转录转座子间扩增多态性(IRAP)协议用于检测和评估Ae的逆转座子种内变异性水平。 speltoides和密切相关的物种。 IRAP分析显示TE分布存在显着差异。在13个探索种群中,各种基因型在4个探索的LTR逆转座子(WIS2,Wilma,Daniela和Fatima)的模式上均存在显着差异。这种多样性表明在Ae种群中LTR反转录转座子组分重组的持续进行过程。在整个物种范围内并且在单个种群内及时发现幽灵。记录了来自压力小的人群的基因型的最大变化。主成分分析表明,法蒂玛元素的动力学与WIS2,Wilma和Daniela的动力学显着不同。就锡特氏菌物种之间的关系而言,IRAP分析显示与Ae分组。 sharonensis和Ae。 longissima形成一个独立的单元, Ae。 speltoides 作为一个分散的基团出现,而 Ae。双角兽处于中间位置。 IRAP展示数据揭示了 Ae基因组中LTR反转录转座子组分的动态变化。 speltoides 。这个过程是永久的,针对特定人群,最终导致压力小的人群与主要人群分离。

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