Department of Agriculture Food Natural resources Animals and Environment (DAFNAE), University of Padova, 35020, Legnaro (PD), Italy.
Instituto de Investigaciones en Ciencias Agrarias de Rosario (IICAR), CONICET-UNR, Laboratorio de Biología Molecular, Facultad de Ciencias Agrarias, Universidad Nacional de Rosario, S2125ZAA, Zavalla, Argentina.
Sci Rep. 2019 Mar 1;9(1):3271. doi: 10.1038/s41598-019-39649-6.
The introgression of apomixis in major seed crops, would guarantee self-seeding of superior heterotic seeds over generations. In the grass species Paspalum simplex, apomixis is controlled by a single locus in which recombination is blocked. In the perspective of isolating the genetic determinants of apomixis, we report data on sequencing, in silico mapping and expression analysis of some of the genes contained in two cloned genomic regions of the apomixis locus of P. simplex. In silico mapping allowed us to identify a conserved synteny group homoeologous to the apomixis locus, located on a telomeric position of chromosomes 12, 8, 3 and 4 of rice, Sorghum bicolor, Setaria italica and Brachypodium distachyum, respectively, and on a more centromeric position of maize chromosome 1. Selected genes of the apomixis locus expressed sense and antisense transcripts in reproductively committed cells of sexual and apomictic ovules. Some of the genes considered here expressed apomixis-specific allelic variants which showed partial non-overlapping expression patterns with alleles shared by sexual and apomictic reproductive phenotypes. Our findings open new routes for the isolation of the genetic determinants of apomixis and, in perspective, for its introgression in crop grasses.
将无融合生殖基因导入主要种子作物中,可确保杂种优势的自交种子在多代中保持。在草类植物百脉根(Paspalum simplex)中,无融合生殖由一个单一基因座控制,该基因座中的重组被阻断。从分离无融合生殖遗传决定因素的角度来看,我们报告了关于测序、在百脉根无融合生殖基因座的两个克隆基因组区域中一些基因的序列分析、计算机映射和表达分析的数据。计算机映射使我们能够鉴定与无融合生殖基因座同源的保守同线性群,该基因座位于水稻、高粱、狗尾草和短柄草的 12、8、3 和 4 号染色体的端粒位置,以及玉米 1 号染色体的更着丝粒位置。无融合生殖基因座的选定基因在有性和无融合生殖胚珠的生殖细胞中表达有义和反义转录本。这里考虑的一些基因表达了无融合生殖特异性等位变异,这些等位变异与有性和无融合生殖生殖表型共享的等位基因的表达模式部分不重叠。我们的发现为无融合生殖遗传决定因素的分离开辟了新途径,从长远来看,也为其在作物草中的导入开辟了新途径。