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Re-exploration of U’s Triangle Brassica Species Based on Chloroplast Genomes and 45S nrDNA Sequences

机译:基于叶绿体基因组和45S nrDNA序列的U三角形芸苔属物种的再探索

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摘要

The concept of U’s triangle, which revealed the importance of polyploidization in plant genome evolution, described natural allopolyploidization events in Brassica using three diploids [B. rapa (A genome), B. nigra (B), and B. oleracea (C)] and derived allotetraploids [B. juncea (AB genome), B. napus (AC), and B. carinata (BC)]. However, comprehensive understanding of Brassica genome evolution has not been fully achieved. Here, we performed low-coverage (2–6×) whole-genome sequencing of 28 accessions of Brassica as well as of Raphanus sativus [R genome] to explore the evolution of six Brassica species based on chloroplast genome and ribosomal DNA variations. Our phylogenomic analyses led to two main conclusions. (1) Intra-species-level chloroplast genome variations are low in the three allotetraploids (2~7 SNPs), but rich and variable in each diploid species (7~193 SNPs). (2) Three allotetraploids maintain two 45SnrDNA types derived from both ancestral species with maternal dominance. Furthermore, this study sheds light on the maternal origin of the AC chloroplast genome. Overall, this study clarifies the genetic relationships of U’s triangle species based on a comprehensive genomics approach and provides important genomic resources for correlative and evolutionary studies.
机译:U三角形的概念揭示了多倍体化在植物基因组进化中的重要性,它描述了使用三个二倍体在芸苔属中发生的自然多倍体化事件[B. rapa(A基因组),B。nigra(B)和B. oleracea(C)]和衍生的异源四倍体[B. juncea(AB基因组),B。napus(AC)和B. carinata(BC)]。但是,对芸苔属基因组进化的全面了解尚未完全实现。在这里,我们对芸苔属和萝卜(Rphanus sativus)[R基因组]的28个种进行了低覆盖率(2–6×)全基因组测序,以研究基于叶绿体的6个
芸苔属物种的进化基因组和核糖体DNA变异。我们的系统生物学分析得出两个主要结论。 (1)三种异源四倍体(2〜7个SNP)的物种内水平叶绿体基因组变异较低,但每个二倍体物种(7〜193个SNP)丰富且可变。 (2)三种异源四倍体维持两种起源于两个祖先物种的45SnrDNA类型,并具有母体优势。此外,这项研究揭示了AC叶绿体基因组的母源。总体而言,这项研究基于全面的基因组学方法阐明了U三角物种的遗传关系,并为相关和进化研究提供了重要的基因组资源。

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