Faculty of Environmental Sciences, Czech University of Life Sciences Prague, Kamýcká 129, 165 00 Praha-Suchdol, Czech Republic.
Institute of Botany, Czech Academy of Sciences, Zámek 1, CZ-252 43 Průhonice, Czech Republic.
Genes (Basel). 2020 Jul 9;11(7):770. doi: 10.3390/genes11070770.
Diploid s. str. and autotetraploid form a narrow hybrid zone in a study area in southern Serbia, which results in triploid hybrid formation. The vast majority of previous studies have been focused on studies of maternal plants, but the offspring resulting from their crossing have not been much studied. Here, we use the variability of microsatellites and chloroplast DNA between these species and their putative hybrids to create an overall picture of the development of the hybrid zone and its predicted type. To elucidate the gene transfer within both species, the origins of individual ploidies and especially the role of triploid hybrids, a germination experiment was carried out linked with a flow cytometry study of the resulting seedlings. The tension zone model seems to offer the most adequate explanation of our observations, with selection against triploid hybrids and the spatial positioning of the hybrid zone. Despite selection against them, the triploid hybrids play an important role in the exchange of genes between the two species and therefore serve as a bridge for introgression. The presence of fertile triploids is essential for enriching the haplotype diversity between these species and for the development of new genetic lineages.
在塞尔维亚南部的一个研究区域,二倍体和同源四倍体形成了一个狭窄的杂交区,导致了三倍体杂种的形成。之前的绝大多数研究都集中在母本植物的研究上,但对它们杂交产生的后代却没有进行太多研究。在这里,我们使用这些物种及其可能的杂种之间的微卫星和叶绿体 DNA 的变异性,来描绘杂交区的发展及其预期的类型。为了阐明两个物种内的基因转移,我们进行了一个萌发实验,并结合流式细胞术研究了由此产生的幼苗,以研究个体倍性的起源,特别是三倍体杂种的作用。张力带模型似乎为我们的观察结果提供了最恰当的解释,它对三倍体杂种具有选择性,并且杂交区的空间定位也是如此。尽管对它们具有选择性,但三倍体杂种在两个物种之间的基因交换中发挥了重要作用,因此它们是基因渐渗的桥梁。三倍体杂种的存在对于丰富这些物种之间的单倍型多样性以及新遗传谱系的发展至关重要。