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SPO11.2 对于小麦(Triticum aestivum L.)减数分裂过程中程序性双链断裂的形成是必不可少的。

SPO11.2 is essential for programmed double-strand break formation during meiosis in bread wheat (Triticum aestivum L.).

机构信息

Genetics, Diversity & Ecophysiology of Cereals, INRAE, Université Clermont-Auvergne, Clermont-Ferrand, 63000, France.

Génétique, Reproduction et Développement, UMR CNRS 6293 - Université Clermont Auvergne - INSERM U1103, Clermont-Ferrand, 63001, France.

出版信息

Plant J. 2020 Sep;104(1):30-43. doi: 10.1111/tpj.14903. Epub 2020 Jul 28.

Abstract

Meiotic recombination is initiated by formation of DNA double-strand breaks (DSBs). This involves a protein complex that includes in plants the two similar proteins, SPO11-1 and SPO11-2. We analysed the sequences of SPO11-2 in hexaploid bread wheat (Triticum aestivum), as well as in its diploid and tetraploid progenitors. We investigated its role during meiosis using single, double and triple mutants. The three homoeologous SPO11-2 copies of hexaploid wheat exhibit high nucleotide and amino acid similarities with those of the diploids, tetraploids and Arabidopsis. Interestingly, however, two nucleotides deleted in exon-2 of the A copy lead to a premature stop codon and suggest that it encodes a non-functional protein. Remarkably, the mutation was absent from the diploid A-relative Triticum urartu, but present in the tetraploid Triticum dicoccoides and in different wheat cultivars indicating that the mutation occurred after the first polyploidy event and has since been conserved. We further show that triple mutants with all three copies (A, B, D) inactivated are sterile. Cytological analyses of these mutants show synapsis defects, accompanied by severe reductions in bivalent formation and numbers of DMC1 foci, thus confirming the essential role of TaSPO11-2 in meiotic recombination in wheat. In accordance with its 2-nucleotide deletion in exon-2, double mutants for which only the A copy remained are also sterile. Notwithstanding, some DMC1 foci remain visible in this mutant, suggesting a residual activity of the A copy, albeit not sufficient to restore fertility.

摘要

减数分裂重组由 DNA 双链断裂 (DSBs) 的形成引发。这涉及一个蛋白质复合物,在植物中包括两个相似的蛋白质,SPO11-1 和 SPO11-2。我们分析了六倍体面包小麦 (Triticum aestivum) 中 SPO11-2 的序列,以及其二倍体和四倍体祖先的序列。我们使用单、双和三突变体研究了它在减数分裂中的作用。六倍体小麦的三个同源 SPO11-2 拷贝与二倍体、四倍体和拟南芥的序列高度相似。然而,有趣的是,A 拷贝外显子 2 中缺失的两个核苷酸导致提前出现终止密码子,表明它编码一种无功能的蛋白质。值得注意的是,该突变在二倍体 A 亲缘物 Triticum urartu 中不存在,但在四倍体 Triticum dicoccoides 和不同的小麦品种中存在,表明该突变发生在第一次多倍化事件之后,并在此后得到了保守。我们进一步表明,三个拷贝(A、B、D)失活的三突变体不育。这些突变体的细胞学分析显示联会缺陷,伴随着二价形成和 DMC1 焦点数量的严重减少,从而证实了 TaSPO11-2 在小麦减数分裂重组中的重要作用。与外显子 2 中的 2 个核苷酸缺失一致,只有 A 拷贝保留的双突变体也是不育的。尽管如此,该突变体中仍可见一些 DMC1 焦点,表明 A 拷贝仍有残留活性,尽管不足以恢复育性。

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