Molecular cytogenetics reveals an uncommon structural and numerical chromosomal heteromorphism in Zephyranthes brachyandra (Amaryllidaceae)

Thiago Nascimento, Raquel S. Gonçalves, M. Báez, G. Seijo, M. Guerra
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引用次数: 1

Abstract

Background and aims: Zephyranthes brachyandra belongs to a tribe of ornamental Amaryllidaceae native of South America, whose genera circumscription and phylogenetic relationships are still unclear. Cytologically, Z. brachyandra is a tetraploid whose chromosomes are of similar size and morphology, hindering the identification of its 2n = 24 chromosomes. The aim of this study was to investigate the stability of the many CMA+ and DAPI+ bands and the occurrence of B chromosomes by a cytomolecular approach.  M&M: For this investigation we conducted a cytomolecular analysis with CMA/DAPI staining and fluorescence in situ hybridization with 5S and 35S rDNA probes, and the TTTAGGG telomeric probe. Results: In the present work, a cytomolecular analysis of Z. brachyandra, revealed a large and variable number of CMA+ and DAPI+ heterochromatic bands and 5S and 35S rDNA sites, and a regular distribution of the TTTAGGG telomeric sequences. In addition, one individual was monotrisomic with 2n = 24, and another one had a B chromosome. Both numerical and structural chromosome alterations were clearly characterized by CMA/DAPI bands and rDNA sites. Conclusions: Comparing the present data with the cytological data for other species of Zephyranthes, it becomes clear that a cytomolecular approach is fundamental to the understanding of the chromosome variation and cytotaxonomy of the group.
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分子细胞遗传学揭示了短叶风蕨罕见的结构和数量染色体异型性。
背景与目的:Zephyranthes brachyandra是原产于南美洲的观赏苋科植物,其属界和系统发育关系尚不清楚。细胞学上,Z. brachyandra为四倍体,其染色体的大小和形态相似,阻碍了其2n = 24条染色体的鉴定。本研究的目的是通过细胞分子方法研究许多CMA+和DAPI+带的稳定性和B染色体的发生。M&M:在这项研究中,我们使用CMA/DAPI染色和5S和35S rDNA探针以及TTTAGGG端粒探针进行了细胞分子分析。结果:本研究通过对长尾草的细胞分子分析,发现长尾草存在大量的CMA+和DAPI+异色带以及5S和35S rDNA位点,TTTAGGG端粒序列分布规律。另外,一个个体为单三体,2n = 24,另一个个体为B染色体。通过CMA/DAPI条带和rDNA位点可以清楚地表征染色体的数量和结构改变。结论:将本研究数据与其他种类西风属植物的细胞学数据进行比较,可以清楚地看出,细胞分子方法是了解西风属植物染色体变异和细胞分类的基础。
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