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“多倍体、种间和种内 Musa 杂种的分子遗传学的 Musa balbisiana 基因组序列草案”。

"A draft Musa balbisiana genome sequence for molecular genetics in polyploid, inter- and intra-specific Musa hybrids".

机构信息

Laboratory of Fruit Breeding and Biotechnology, Division of Crop Biotechnics, Department of Biosystems, Katholieke Universiteit Leuven, Willem de Croylaan 42, box 2427B-3001, Heverlee, Leuven, Belgium.

出版信息

BMC Genomics. 2013 Oct 5;14:683. doi: 10.1186/1471-2164-14-683.

Abstract

BACKGROUND

Modern banana cultivars are primarily interspecific triploid hybrids of two species, Musa acuminata and Musa balbisiana, which respectively contribute the A- and B-genomes. The M. balbisiana genome has been associated with improved vigour and tolerance to biotic and abiotic stresses and is thus a target for Musa breeding programs. However, while a reference M. acuminata genome has recently been released (Nature 488:213-217, 2012), little sequence data is available for the corresponding B-genome.To address these problems we carried out Next Generation gDNA sequencing of the wild diploid M. balbisiana variety 'Pisang Klutuk Wulung' (PKW). Our strategy was to align PKW gDNA reads against the published A-genome and to extract the mapped consensus sequences for subsequent rounds of evaluation and gene annotation.

RESULTS

The resulting B-genome is 79% the size of the A-genome, and contains 36,638 predicted functional gene sequences which is nearly identical to the 36,542 of the A-genome. There is substantial sequence divergence from the A-genome at a frequency of 1 homozygous SNP per 23.1 bp, and a high degree of heterozygosity corresponding to one heterozygous SNP per 55.9 bp. Using expressed small RNA data, a similar number of microRNA sequences were predicted in both A- and B-genomes, but additional novel miRNAs were detected, including some that are unique to each genome. The usefulness of this B-genome sequence was evaluated by mapping RNA-seq data from a set of triploid AAA and AAB hybrids simultaneously to both genomes. Results for the plantains demonstrated the expected 2:1 distribution of reads across the A- and B-genomes, but for the AAA genomes, results show they contain regions of significant homology to the B-genome supporting proposals that there has been a history of interspecific recombination between homeologous A and B chromosomes in Musa hybrids.

CONCLUSIONS

We have generated and annotated a draft reference Musa B-genome and demonstrate that this can be used for molecular genetic mapping of gene transcripts and small RNA expression data from several allopolyploid banana cultivars. This draft therefore represents a valuable resource to support the study of metabolism in inter- and intraspecific triploid Musa hybrids and to help direct breeding programs.

摘要

背景

现代香蕉品种主要是两个种(Musa acuminata 和 Musa balbisiana)的异源三倍体杂种,它们分别贡献了 A-和 B-基因组。M. balbisiana 基因组与活力的提高和对生物及非生物胁迫的耐受性有关,因此是 Musa 育种计划的目标。然而,尽管最近发布了参考的 M. acuminata 基因组(Nature 488:213-217, 2012),但相应的 B-基因组的序列数据很少。为了解决这些问题,我们对野生二倍体 M. balbisiana 品种 'Pisang Klutuk Wulung'(PKW)进行了下一代 gDNA 测序。我们的策略是将 PKW gDNA reads 与已发表的 A-基因组进行比对,并提取映射的共识序列,以进行后续的评估和基因注释。

结果

得到的 B-基因组大小为 A-基因组的 79%,包含 36638 个预测的功能基因序列,与 A-基因组的 36542 个几乎相同。与 A-基因组相比,存在大量的序列差异,每 23.1bp 就有一个纯合 SNP,每 55.9bp 就有一个高度杂合的 SNP。利用表达的小 RNA 数据,在 A-和 B-基因组中预测到了相似数量的 microRNA 序列,但也检测到了一些新的 miRNA,包括一些在每个基因组中都是独特的。通过同时将一组三倍体 AAA 和 AAB 杂种的 RNA-seq 数据映射到两个基因组上,评估了这个 B-基因组序列的有用性。对于大蕉,结果显示出预期的 2:1 分布,即在 A-和 B-基因组之间读取的分布,但对于 AAA 基因组,结果显示它们包含与 B-基因组有显著同源性的区域,这支持了在 Musa 杂种中同源 A 和 B 染色体之间存在种间重组的假说。

结论

我们生成并注释了一个 Musa B-基因组的草案参考序列,并证明它可以用于几个异源多倍体香蕉品种的基因转录和小 RNA 表达数据的分子遗传图谱。因此,这个草案是支持研究三倍体 Musa 杂种的种间和种内代谢以及指导育种计划的宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/014e/3852598/6374bf1cba1f/1471-2164-14-683-1.jpg

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