首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Discovery of nucleotide polymorphisms in the Musa gene pool by Ecotilling
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Discovery of nucleotide polymorphisms in the Musa gene pool by Ecotilling

机译:通过Ecotilling在Musa基因库中发现核苷酸多态性

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Musa (banana and plantain) is an important genus for the global export market and in local markets where it provides staple food for approximately 400 million people. Hybridization and polyploidization of several (sub)species, combined with vegetative propagation and human selection have produced a complex genetic history. We describe the application of the Ecotilling method for the discovery and characterization of nucleotide polymorphisms in diploid and polyploid accessions of Musa. We discovered over 800 novel alleles in 80 accessions. Sequencing and band evaluation shows Ecotilling to be a robust and accurate platform for the discovery of polymorphisms in homologous and homeologous gene targets. In the process of validating the method, we identified two single nucleotide polymorphisms that may be deleterious for the function of a gene putatively important for phototropism. Evaluation of heterozygous polymorphism and haplotype blocks revealed a high level of nucleotide diversity in Musa accessions. We further applied a strategy for the simultaneous discovery of heterozygous and homozygous polymorphisms in diploid accessions to rapidly evaluate nucleotide diversity in accessions of the same genome type. This strategy can be used to develop hypotheses for inheritance patterns of nucleotide polymorphisms within and between genome types. We conclude that Ecotilling is suitable for diversity studies in Musa, that it can be considered for functional genomics studies and as tool in selecting germplasm for traditional and mutation breeding approaches.
机译:芭蕉科(香蕉和车前草)是全球出口市场和当地市场的重要属,那里为大约4亿人提供主食。几种(亚)种的杂交和多倍体化,与无性繁殖和人类选择相结合,已经产生了复杂的遗传史。我们描述Ecotilling方法的应用,用于发现和鉴定Musa的二倍体和多倍体种的核苷酸多态性。我们在80个种质中发现了800多个新的等位基因。测序和谱带评估显示,Ecotilling是一个强大而准确的平台,可用于发现同源和同源基因靶标中的多态性。在验证该方法的过程中,我们确定了两个单核苷酸多态性,这些多态性可能对假定对光敏性重要的基因的功能有害。杂合多态性和单倍型模块的评估表明,穆萨种质中的核苷酸多样性水平很高。我们进一步应用了一种策略,用于同时发现二倍体的杂合子和纯合子的多态性,以快速评估相同基因组类型的杂种的核苷酸多样性。该策略可用于为基因组类型之内和之间的核苷酸多态性的遗传模式建立假设。我们得出的结论是,Ecotilling适用于Musa的多样性研究,可以考虑将其用于功能基因组学研究,并且可以作为传统和突变育种方法选择种质的工具。

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