Concerted Evolution of Genus-Specific Centromeric Satellite DNA in Eremias (Lacertidae, Reptilia).

IF 1.7 4区 生物学 Q4 CELL BIOLOGY
Lada Lisachova, Artem Lisachov, Svetlana Romanenko, Guzel Davletshina, Marie Altmanová, Michail Rovatsos, Lukáš Kratochvíl, Massimo Giovannotti, Roman Nazarov, Igor Okshtein, Vladimir Trifonov
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引用次数: 0

Abstract

Background: Tandemly repeated satellite DNA sequences are an important part of animal genomes. They are involved in chromosome interactions and the maintenance of the integral structure of the nucleus, regulation of chromatin conformation and gene expression, and chromosome condensation and movement during cell division. Satellite DNAs located in the centromeric heterochromatin evolve rapidly and likely affect hybrid fertility and fitness. However, their studies are taxonomically highly biased. In lacertid lizards, satDNA has been extensively studied in the subfamily Lacertinae, but the subfamily Eremiadinae has been largely overlooked.

Results: In this work, we describe a novel 177-bp-long centromeric satDNA family EremSat177, which is present in all studied species of the genus Eremias, but not in related genera. EremSat177 is not homologous to any previously identified centromeric satellites. Using fluorescence in situ hybridization, we demonstrate its centromeric localization in E. velox and E. arguta. We also show its tandem organization and intra-genomic homogenization by in silico analysis in the genome of E. argus. The phylogenetic analysis of consensus EremSat177 sequences from 12 Eremias species demonstrates that the same monomer subfamily is the most abundant in all these species, and its evolution mainly follows the species phylogeny as revealed by the mtDNA sequences.

Conclusion: The EremSat177 represents a novel, lineage-specific centromeric satellite DNA, and its role in centromere functioning should be revealed in further research.

爬虫科狼蛛属特异性着丝粒卫星DNA的协同进化。
背景:串联重复卫星DNA序列是动物基因组的重要组成部分。它们参与染色体的相互作用和细胞核整体结构的维持,染色质构象和基因表达的调节,以及细胞分裂过程中染色体的凝聚和运动。位于着丝粒异染色质上的卫星dna进化迅速,可能影响杂种的生育能力和适应性。然而,他们的研究在分类学上是高度偏颇的。在lacertid lizard中,satDNA在Lacertinae亚科中被广泛研究,但在很大程度上忽略了eremiadae亚科。结果:在这项工作中,我们描述了一个新的177bp长的着丝粒satDNA家族EremSat177,该家族存在于所有研究的Eremias属物种中,但不存在于相关属中。EremSat177与以前发现的任何着心卫星都不同源。利用荧光原位杂交技术,我们证实了该基因在黄花菜和黄花菜中的着丝点定位。我们还通过计算机分析显示了其串联组织和基因组内均质化。对12种蕨类植物的一致EremSat177序列的系统发育分析表明,同一亚科在所有物种中最丰富,其进化主要遵循mtDNA序列所揭示的物种系统发育。结论:EremSat177是一种新颖的、谱系特异性的着丝粒卫星DNA,其在着丝粒功能中的作用有待进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cytogenetic and Genome Research
Cytogenetic and Genome Research 生物-细胞生物学
CiteScore
3.10
自引率
5.90%
发文量
25
审稿时长
1 months
期刊介绍: During the last decades, ''Cytogenetic and Genome Research'' has been the leading forum for original reports and reviews in human and animal cytogenetics, including molecular, clinical and comparative cytogenetics. In recent years, most of its papers have centered on genome research, including gene cloning and sequencing, gene mapping, gene regulation and expression, cancer genetics, comparative genetics, gene linkage and related areas. The journal also publishes key papers on chromosome aberrations in somatic, meiotic and malignant cells. Its scope has expanded to include studies on invertebrate and plant cytogenetics and genomics. Also featured are the vast majority of the reports of the International Workshops on Human Chromosome Mapping, the reports of international human and animal chromosome nomenclature committees, and proceedings of the American and European cytogenetic conferences and other events. In addition to regular issues, the journal has been publishing since 2002 a series of topical issues on a broad variety of themes from cytogenetic and genome research.
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