Marques André, Hufnagel Bárbara, Soriano Alexandre, Péret Benjamin
BPMP, Institut Agro, CNRS, INRAE, Univ. Montpellier, Montpellier, France.
Front Plant Sci. 2022 Apr 5;13:862079. doi: 10.3389/fpls.2022.862079. eCollection 2022.
Plant genomes are known to be mainly composed of repetitive DNA sequences. Regardless of the non-genic function of these sequences, they are important for chromosome structure and stability during cell-cycle. Based on the recent available whole-genome assembly of white lupin ( L.; WL), we have annotated and mapped the main classes of DNA repeats identified with RepeatExplorer. A highly diverse and an abundance of satellite DNAs were found representing more than 10 families, where three of them were highly associated with CENH3-immunoprecipitated chromatin. Applying a strategy of several re-hybridization steps with different combinations of satDNA, rDNA, and LTR-RTs probes, we were able to construct a repeat-based chromosome map for the identification of most chromosome pairs. Two families of LTR retrotransposons, Ty1/copia SIRE and Ty3/gypsy Tekay, were highly abundant at pericentromeric regions, while the centromeric retrotransposon of WL (CRWL) from the CRM clade showed strong centromere-specific localization in most chromosomes and was also highly enriched with CENH3-immunoprecipitated chromatin. FISH mapping of repeat DNA showed some incongruences with the reference genome, which can be further used for improving the current version of the genome. Our results demonstrate that despite the relatively small genome of WL, a high diversity of pericentromeric repeats was found, emphasizing the rapid evolution of repeat sequences in plant genomes.
已知植物基因组主要由重复DNA序列组成。尽管这些序列没有基因功能,但它们对于细胞周期中的染色体结构和稳定性很重要。基于最近获得的白羽扇豆(L.;WL)全基因组组装结果,我们对用RepeatExplorer鉴定出的主要DNA重复类别进行了注释和定位。发现了高度多样且丰富的卫星DNA,代表了10多个家族,其中三个与CENH3免疫沉淀染色质高度相关。通过应用几种不同的卫星DNA、核糖体DNA和LTR-RTs探针组合的再杂交步骤策略,我们能够构建一个基于重复序列的染色体图谱,用于识别大多数染色体对。两个LTR反转录转座子家族,Ty1/copia SIRE和Ty3/gypsy Tekay,在着丝粒周围区域高度丰富,而来自CRM进化枝的WL着丝粒反转录转座子(CRWL)在大多数染色体上显示出强烈的着丝粒特异性定位,并且在CENH3免疫沉淀染色质中也高度富集。重复DNA的荧光原位杂交图谱与参考基因组存在一些不一致,这可进一步用于改进当前版本的基因组。我们的结果表明,尽管WL的基因组相对较小,但发现着丝粒周围重复序列具有高度多样性,强调了植物基因组中重复序列的快速进化。