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Molecular and Cytogenetic Characterization of Wild Musa Species

机译:野生芭蕉科物种的分子和细胞遗传学表征

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摘要

The production of bananas is threatened by rapid spreading of various diseases and adverse environmental conditions. The preservation and characterization of banana diversity is essential for the purposes of crop improvement. The world's largest banana germplasm collection maintained at the Bioversity International Transit Centre (ITC) in Belgium is continuously expanded by new accessions of edible cultivars and wild species. Detailed morphological and molecular characterization of the accessions is necessary for efficient management of the collection and utilization of banana diversity. In this work, nuclear DNA content and genomic distribution of 45S and 5S rDNA were examined in 21 diploid accessions recently added to ITC collection, representing both sections of the genus Musa. 2C DNA content in the section Musa ranged from 1.217 to 1.315 pg. Species belonging to section Callimusa had 2C DNA contents ranging from 1.390 to 1.772 pg. While the number of 45S rDNA loci was conserved in the section Musa, it was highly variable in Callimusa species. 5S rRNA gene clusters were found on two to eight chromosomes per diploid cell. The accessions were genotyped using a set of 19 microsatellite markers to establish their relationships with the remaining accessions held at ITC. Genetic diversity done by SSR genotyping platform was extended by phylogenetic analysis of ITS region. ITS sequence data supported the clustering obtained by SSR analysis for most of the accessions. High level of nucleotide diversity and presence of more than two types of ITS sequences in eight wild diploids pointed to their origin by hybridization of different genotypes. This study significantly expands the number of wild Musa species where nuclear genome size and genomic distribution of rDNA loci is known. SSR genotyping identified Musa species that are closely related to the previously characterized accessions and provided data to aid in their classification. Sequence analysis of ITS region provided further information about evolutionary relationships between individual accessions and suggested that some of analyzed accessions were interspecific hybrids and/or backcross progeny.
机译:香蕉的生产受到各种疾病的迅速传播和不利的环境条件的威胁。香蕉多样性的保护和表征对于作物改良而言至关重要。比利时生物多样性国际转运中心(ITC)维护着世界上最大的香蕉种质资源,这是可食用品种和野生物种的新加入不断扩大的。这些种质的详细形态和分子表征对于有效管理香蕉多样性的收集和利用是必要的。在这项工作中,在最近添加到ITC集合中的21个二倍体种质中检查了45S和5S rDNA的核DNA含量和基因组分布,代表了Musa属的两个部分。 Musa部分的2C DNA含量范围为1.217至1.315 pg。属于Callimusa的物种的2C DNA含量为1.390至1.772 pg。虽然在Musa部分中保留了45S rDNA基因座的数量,但在Callimusa物种中其高度可变。每个二倍体细胞在2至8条染色体上发现了5S rRNA基因簇。使用一组19个微卫星标记对这些种质进行基因分型,以建立它们与ITC保留的其他种质的关系。通过ITS区域的系统发育分析,扩展了SSR基因分型平台的遗传多样性。 ITS序列数据支持通过SSR分析获得的大多数种的聚类。八个野生二倍体中高水平的核苷酸多样性和超过两种类型的ITS序列的存在表明它们是通过不同基因型的杂交而起源的。这项研究显着扩大了已知rDNA基因座的核基因组大小和基因组分布的野生Musa物种的数量。 SSR基因分型鉴定出与先前表征的种质密切相关的芭蕉科物种,并提供了有助于其分类的数据。 ITS区域的序列分析提供了有关单个种质间进化关系的进一步信息,并表明分析的种质中有些是种间杂种和/或回交后代。

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