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Patterns of Sequence Divergence and Evolution of the S1 Orthologous Regions between Asian and African Cultivated Rice Species

机译:亚非栽培水稻品种S1直系同源区序列的发散与进化模式

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摘要

A strong postzygotic reproductive barrier separates the recently diverged Asian and African cultivated rice species, Oryza sativa and O. glaberrima. Recently a model of genetic incompatibilities between three adjacent loci: S1A, S1 and S1B (called together the S1 regions) interacting epistatically, was postulated to cause the allelic elimination of female gametes in interspecific hybrids. Two candidate factors for the S1 locus (including a putative F-box gene) were proposed, but candidates for S1A and S1B remained undetermined. Here, to better understand the basis of the evolution of regions involved in reproductive isolation, we studied the genic and structural changes accumulated in the S1 regions between orthologous sequences. First, we established an 813 kb genomic sequence in O. glaberrima, covering completely the S1A, S1 and the majority of the S1B regions, and compared it with the orthologous regions of O. sativa. An overall strong structural conservation was observed, with the exception of three isolated regions of disturbed collinearity: (1) a local invasion of transposable elements around a putative F-box gene within S1, (2) the multiple duplication and subsequent divergence of the same F-box gene within S1A, (3) an interspecific chromosomal inversion in S1B, which restricts recombination in our O. sativa×O. glaberrima crosses. Beside these few structural variations, a uniform conservative pattern of coding sequence divergence was found all along the S1 regions. Hence, the S1 regions have undergone no drastic variation in their recent divergence and evolution between O. sativa and O. glaberrima, suggesting that a small accumulation of genic changes, following a Bateson-Dobzhansky-Muller (BDM) model, might be involved in the establishment of the sterility barrier. In this context, genetic incompatibilities involving the duplicated F-box genes as putative candidates, and a possible strengthening step involving the chromosomal inversion might participate to the reproductive barrier between Asian and African rice species.
机译:强大的合子后生殖屏障将最近分化的亚洲和非洲栽培稻品种Oryza sativa和O. glaberrima分开。最近,一个上位相互作用的三个相邻基因座:S1A,S1和S1B(一起称为S1区域)之间的遗传不相容模型被假定为导致种间杂种中雌配子的等位基因消除。提出了两个S1基因座的候选因子(包括一个推定的F-box基因),但S1A和S1B的候选因子仍未确定。在这里,为了更好地了解生殖分离所涉及区域的进化基础,我们研究了同源序列之间S1区域中积累的基因和结构变化。首先,我们在O. glaberrima中建立了一个813 kb的基因组序列,该序列完全覆盖了S1A,S1和大多数S1B区,并将其与稻的直系同源区进行了比较。观察到总体上有很强的结构保守性,但三个共线性受干扰的孤立区域除外:(1)S1内假定的F-box基因周围转座因子的局部入侵,(2)相同基因的多次复制和随后的发散 S1A 中的F-box基因,(3) S1B 中的一种种间染色体倒置,它限制了我们 O中的重组。水稻× O。 glaberrima 十字架。除了这些少量的结构变异之外,在整个 S1 区域内均发现了统一的编码序列差异保守模式。因此, S1 地区最近在 O之间的分化和演变过程中并没有发生剧烈变化。苜蓿 O。 glaberrima ,表明遵循Bateson-Dobzhansky-Muller(BDM)模型的少量基因改变积累可能与无菌障碍的建立有关。在这种情况下,涉及重复的F-box基因作为推定候选者的遗传不相容性,以及涉及染色体倒置的可能的加强步骤,可能会参与亚洲和非洲水稻品种之间的繁殖障碍。

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