Chromosomal Evolution of Suboscines: Karyotype Diversity and Evolutionary Trends in Ovenbirds (Passeriformes, Furnariidae).

IF 1.7 4区 生物学 Q4 CELL BIOLOGY
Cytogenetic and Genome Research Pub Date : 2022-01-01 Epub Date: 2023-03-30 DOI:10.1159/000530428
Victoria Tura, Rafael Kretschmer, Francisco de Menezes Cavalcante Sassi, Renata Luiza Rosa de Moraes, Suziane Alves Barcellos, Vitor Oliveira de Rosso, Marcelo Santos de Souza, Marcelo de Bello Cioffi, Ricardo J Gunski, Analía Del Valle Garnero
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引用次数: 0

Abstract

Furnariidae (ovenbirds) is one of the most diversified families in the Passeriformes order and Suboscines suborder. Despite the great diversity of species, cytogenetic research is still in its early stages, restricting our knowledge of their karyotype evolution. We combined traditional and molecular cytogenetic analyses in three representative species, Synallaxis frontalis, Syndactyla rufosuperciliata, and Cranioleuca obsoleta, to examine the chromosomal structure and evolution of ovenbirds. Our findings revealed that all the species studied had the same diploid number (2n = 82). Differences in chromosomal morphology of some macrochromosomes indicate the presence of intrachromosomal rearrangements. Although the three species only had the 18S rDNA on one microchromosome pair, chromosomal mapping of six simple short repeats revealed a varied pattern of chromosome distribution among them, suggesting that each species underwent different repetitive DNA accumulation upon their divergence. The interspecific comparative genomic hybridization experiment revealed that the Furnariidae species investigated carry centromeric regions enriched in similar repetitive sequences, bolstering the Furnariidae family's karyotype conservation. Nonetheless, the outgroup species Turdus rufiventris (Turdidae) demonstrated an advanced stage of sequence divergence with hybridization signals that were almost entirely limited to a few microchromosomes. Overall, the findings imply that Furnariidae species have a high degree of chromosomal conservation, and we could also observe a differentiation of repetitive sequences in both Passeriformes suborders (Suboscines and Oscines).

亚亚纲的染色体进化:炉鸟(雀形目,炉鸟科)的核型多样性和进化趋势。
家禽科是雀形目和亚纲亚目中最多样化的科之一。尽管物种多样性很大,但细胞遗传学研究仍处于早期阶段,限制了我们对其核型进化的了解。本文采用传统细胞遗传学和分子细胞遗传学相结合的方法,对三种典型种属(Synallaxis frontalis、Syndactyla rufosuperciliata和Cranioleuca obsoleta)的染色体结构和进化进行了研究。结果表明,所有研究物种具有相同的二倍体数(2n = 82)。一些大染色体的染色体形态差异表明存在染色体内重排。虽然这3个物种只在1对微染色体上含有18S rDNA,但6个简单短重复序列的染色体图谱显示了它们之间不同的染色体分布模式,这表明每个物种在分化过程中经历了不同的重复DNA积累。种间比较基因组杂交实验表明,所研究的狐螨科物种携带富集相似重复序列的着丝粒区,支持狐螨科核型的保守性。尽管如此,外群物种Turdus rufiventris (Turdidae)表现出序列分化的高级阶段,杂交信号几乎完全局限于少数微染色体。综上所述,研究结果表明狐尾虫科物种具有高度的染色体保守性,并且我们还可以观察到在两个passerformes亚目(subboscines和Oscines)中重复序列的分化。
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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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