种植真菌的蚂蚁基因组中的多重异染色质多样化事件:来自重复序列的见解。

IF 2.5 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Gisele Amaro Teixeira, Luísa Antônia Campos Barros, Hilton Jeferson Alves Cardoso de Aguiar, Denilce Meneses Lopes
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引用次数: 5

摘要

真核生物基因组的很大一部分包括重复DNA,这对其稳定性、调控和结构很重要。种植真菌的蚂蚁基因组显示出显著的结构重排率,这是建立以农业为基础的生活方式所必需的,突出了这一特殊群体在理解蚂蚁基因组重复部分方面的相关性。染色体显带研究与基因组数据一致,因为它们表明,基种和衍生种的重复异色序列富含gc,这在蚁科中是不常见的特征。为了了解阿提那亚族异染色质的进化动态,我们比较了该亚族古阿提那亚系和新阿提那亚系的富gc异染色质模式。为此,我们将从古蜱和新蜱的核型中获得的Mrel-C0t探针(高度和中度重复DNA)与富含gc的异染色质进行杂交。此外,我们还绘制了这两个支系物种的重复序列(GA)15和(TTAGG)6,以研究它们在阿蒂娜基因组中的结构和进化模式。Mrel-C0t探针标记了M. relictus、其他支足菌属(Mycetomoellerius)以及Mycetarotes、Cyphomyrmex和Sericomyrmex (Neoattina)的异染色质。在尿酸支原体中,Mrel-C0t仅在中心周围异染色质中被标记。在古阿塔属植物和新阿塔属植物中均未见标记。这些结果表明,不同的进化事件导致了阿蒂娜的异染色质分化。最有可能的假设是,富含gc的异染色质出现在两个进化支系的共同祖先身上,并在进化过程中积累了各种变化。序列(GA)15和(TTAGG)6分别位于常染色质和端粒,在物种间表现出更均匀的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple heterochromatin diversification events in the genome of fungus-farming ants: insights from repetitive sequences.

A substantial portion of the eukaryotic genome includes repetitive DNA, which is important for its stability, regulation, and architecture. Fungus-farming ant genomes show remarkable structural rearrangement rates that were necessary for the establishment of their agriculture-based lifestyle, highlighting the relevance of this peculiar group in understanding the repetitive portion of ant genome. Chromosomal banding studies are in accordance with genomic data because they show that repetitive heterochromatic sequences of basal and derivative Attina species are GC-rich, an uncommon trait in Formicidae. To understand the evolutionary dynamics of heterochromatin in Attina, we compared GC-rich heterochromatin patterns between the Paleoattina and Neoattina clades of this subtribe. To this end, we hybridized the Mrel-C0t probe (highly and moderately repetitive DNA) obtained from Mycetomoellerius relictus, Neoattina with GC-rich heterochromatin, in karyotypes of Paleoattina and Neoattina species. Additionally, we mapped the repetitive sequences (GA)15 and (TTAGG)6 in species of the two clades to investigate their organization and evolutionary patterns in the genome of Attina. The Mrel-C0t probe marked the heterochromatin in M. relictus, in other Mycetomoellerius spp., and in species of Mycetarotes, Cyphomyrmex, and Sericomyrmex (Neoattina). In Mycetomoellerius urichii, only pericentromeric heterochromatin was marked with Mrel-C0t. No marking was observed in Paleoattina species or in Atta and Acromyrmex (Neoattina). These results indicated that different evolutionary events led to heterochromatin differentiation in Attina. The most likely hypothesis is that GC-rich heterochromatin arose in the common ancestor of the two clades and accumulated various changes throughout evolution. The sequences (GA)15 and (TTAGG)6 located in euchromatin and telomeres, respectively, showed more homogeneous results among the species.

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来源期刊
Chromosoma
Chromosoma 生物-生化与分子生物学
CiteScore
3.30
自引率
6.20%
发文量
17
审稿时长
1 months
期刊介绍: Chromosoma publishes research and review articles on the functional organization of the eukaryotic cell nucleus, with a particular emphasis on the structure and dynamics of chromatin and chromosomes; the expression and replication of genomes; genome organization and evolution; the segregation of genomes during meiosis and mitosis; the function and dynamics of subnuclear compartments; the nuclear envelope and nucleocytoplasmic interactions, and more. The scope of Chromosoma encompasses genetic, biophysical, molecular and cell biological studies. Average time from receipt of contributions to first decision: 22 days Publishes research and review articles on the functional organization of the eukaryotic cell nucleus Topics include structure and dynamics of chromatin and chromosomes; the expression and replication of genomes; genome organization and evolution; the segregation of genomes during meiosis and mitosis and more Encompasses genetic, biophysical, molecular and cell biological studies.
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