Salina Elena, Muterko Alexander, Kiseleva Antonina, Liu Zhiyong, Korol Abraham
Institute of Cytology and Genetics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, Russia.
Kurchatov Genomic Center of ICG SB RAS, Novosibirsk, Russia.
Front Plant Sci. 2022 May 4;13:884632. doi: 10.3389/fpls.2022.884632. eCollection 2022.
Chromosomal rearrangements that lead to recombination suppression can have a significant impact on speciation, and they are also important for breeding. The regions of recombination suppression in wheat chromosome 5B were identified based on comparisons of the 5B map of a cross between the Chinese Spring (CS) variety of hexaploid wheat and CS-5Bdic (genotype CS with 5B substituted with its homologue from tetraploid ) with several 5B maps of tetraploid and hexaploid wheat. In total, two regions were selected in which recombination suppression occurred in cross CS × CS-5Bdic when compared with other maps: one on the short arm, 5BS_RS, limited by markers BS00009810/BS00022336, and the second on the long arm, 5BL_RS, between markers Ra_c10633_2155 and BS00087043. The regions marked as 5BS_RS and 5BL_RS, with lengths of 5 Mb and 3.6 Mb, respectively, were mined from the 5B pseudomolecule of CS and compared to the homoeologous regions (7.6 and 3.8 Mb, respectively) of the 5B pseudomolecule of Zavitan (). It was shown that, in the case of 5BS_RS, the local heterochromatin islands determined by the satellite DNA (119.2) and transposable element arrays, as well as the dissimilarity caused by large insertions/deletions (chromosome rearrangements) between 5BSs , are likely the key determinants of recombination suppression in the region. Two major and two minor segments with significant loss of similarity were recognized within the 5BL_RS region. It was shown that the loss of similarity, which can lead to suppression of recombination in the 5BL_RS region, is caused by chromosomal rearrangements, driven by the activity of mobile genetic elements (both DNA transposons and long terminal repeat retrotransposons) and their divergence during evolution. It was noted that the regions marked as 5BS_RS and 5BL_RS are associated with chromosomal rearrangements identified earlier by С-banding analysis of intraspecific polymorphism of tetraploid emmer wheat. The revealed divergence in 5BS_RS and 5BL_RS may be a consequence of interspecific hybridization, plant genetic adaptation, or both.
导致重组抑制的染色体重排会对物种形成产生重大影响,并且对育种也很重要。基于六倍体小麦中国春(CS)品种与CS-5Bdic(基因型为CS,其5B染色体被来自四倍体的同源染色体替代)杂交的5B图谱与几个四倍体和六倍体小麦的5B图谱的比较,确定了小麦5B染色体上的重组抑制区域。总共选择了两个区域,与其他图谱相比,在CS×CS-5Bdic杂交中发生了重组抑制:一个在短臂上,即5BS_RS,由标记BS00009810/BS00022336界定;另一个在长臂上,即5BL_RS,位于标记Ra_c10633_2155和BS00087043之间。分别从CS的5B假分子中挖掘出标记为5BS_RS和5BL_RS的区域,其长度分别为5 Mb和3.6 Mb,并与Zavitan的5B假分子的同源区域(分别为7.6和3.8 Mb)进行比较。结果表明,对于5BS_RS,由卫星DNA(119.2)和转座元件阵列确定的局部异染色质岛,以及5BSs之间由大的插入/缺失(染色体重排)引起的差异,可能是该区域重组抑制的关键决定因素。在5BL_RS区域内识别出两个主要和两个次要的相似性显著丧失的片段。结果表明,可能导致5BL_RS区域重组抑制的相似性丧失是由染色体重排引起的,染色体重排由移动遗传元件(DNA转座子和长末端重复逆转座子)的活性及其在进化过程中的分化驱动。值得注意的是,标记为5BS_RS和5BL_RS的区域与通过四倍体野生二粒小麦种内多态性的C带分析先前确定的染色体重排有关。5BS_RS和5BL_RS中揭示的差异可能是种间杂交、植物遗传适应或两者共同作用的结果。