水蛙复合体的核型:跨种染色体绘制的结果。

IF 2.5 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Chromosoma Pub Date : 2023-11-01 Epub Date: 2023-11-25 DOI:10.1007/s00412-023-00812-8
Dmitrij Dedukh, Antonina Maslova, Ahmed Al-Rikabi, Niklas Padutsch, Thomas Liehr, Alla Krasikova
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引用次数: 0

摘要

两栖类物种具有最大的基因组大小,富含重复序列和相对相似的核型。此外,许多两栖动物物种经常杂交,导致核和线粒体基因组渗入。此外,杂交在某些两栖动物物种中可能导致克隆和多倍体。所有这些事件都在水蛙属中发现。在石竹属植物中,石竹复合体分布最广,研究最充分。这个复合体包括两个亲本种,P. ridibundus和P. lessonae,以及它们的杂种P. esculentus,它们是半克隆繁殖的。亲本种及其杂交种具有相似但略有多态性的核型,因此仍然需要对它们进行精确的鉴定。在这里,我们为两个亲本物种开发了一套完整的13个染色体绘制探针,可以精确识别所有染色体。利用染色体涂画技术,鉴定了亲本种的同源染色体和二倍体半克隆杂种的同源染色体。比较绘画没有揭示所研究的水蛙物种及其杂交品种之间的染色体间交换。利用交叉特异性染色体绘制,我们检测到沿染色体的信号不均匀分布,表明存在物种特异性串联重复序列。利用染色体染色剂对杂种的核型进行染色,结果表明,黄颡鱼染色体染色强度与黄颡鱼染色体染色强度存在差异。因此,两个亲本基因组在独特的序列上有差异。所获得的染色体探针可以作为一个强大的工具来揭示系统发育相关物种的染色体进化,鉴定不同细胞类型中的单个染色体,并研究杂交水蛙染色体的消除。
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Karyotypes of water frogs from the Pelophylax esculentus complex: results of cross-species chromosomal painting.

Amphibian species have the largest genome size enriched with repetitive sequences and relatively similar karyotypes. Moreover, many amphibian species frequently hybridize causing nuclear and mitochondrial genome introgressions. In addition, hybridization in some amphibian species may lead to clonality and polyploidization. All such events were found in water frogs from the genus Pelophylax. Among the species within the genus Pelophylax, P. esculentus complex is the most widely distributed and well-studied. This complex includes two parental species, P. ridibundus and P. lessonae, and their hybrids, P. esculentus, reproducing hemiclonally. Parental species and their hybrids have similar but slightly polymorphic karyotypes, so their precise identification is still required. Here, we have developed a complete set of 13 chromosome painting probes for two parental species allowing the precise identification of all chromosomes. Applying chromosomal painting, we identified homologous chromosomes in both parental species and orthologous chromosomes in their diploid hemiclonal hybrids. Comparative painting did not reveal interchromosomal exchanges between the studied water frog species and their hybrids. Using cross-specific chromosome painting, we detected unequal distribution of the signals along chromosomes suggesting the presence of species-specific tandem repeats. Application of chromosomal paints to the karyotypes of hybrids revealed differences in the intensity of staining for P. ridibundus and P. lessonae chromosomes. Thus, both parental genomes have a divergence in unique sequences. Obtained chromosome probes may serve as a powerful tool to unravel chromosomal evolution in phylogenetically related species, identify individual chromosomes in different cell types, and investigate the elimination of chromosomes in hybrid water frogs.

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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.
期刊最新文献
The passing of the last oracle: Adelaide Carpenter and Drosophila meiosis. Multifaceted role of CTCF in X-chromosome inactivation. Novel centromeric repetitive DNA elements reveal karyotype dynamics in polyploid sainfoin (Onobrychis viciifolia) CTCF is essential for proper mitotic spindle structure and anaphase segregation. Vertebrate centromere architecture: from chromatin threads to functional structures.
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