State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural University, Guangzhou, 510642, China.
Guangdong Provincial Key Laboratory of Plant Molecular Breeding, South China Agricultural University, Guangzhou, 510642, China.
Mol Genet Genomics. 2018 Dec;293(6):1407-1420. doi: 10.1007/s00438-018-1471-0. Epub 2018 Jul 4.
Autotetraploid rice is a useful germplasm that has four chromosome sets and strong biological advantages; however, low fertility limits its commercial utilization. Little information is available about the DNA variation and differential gene expressions associated with low fertility in autotetraploid rice. In the present study, 81 SNPs and 182 InDels were identified in T449 (an autotetraploid rice line with low fertility) compared to E249 (diploid counterpart) by whole-genome re-sequencing. We detected only three non-synonymous SNPs and six large-effect InDels, which were associated with three and six genes, respectively. A total of 75 meiosis-related differentially expressed genes were detected during the meiosis stage by transcriptome analysis, including OsMTOPVIB, which is essential for meiotic DSB formation, and OsMOF, which takes part in homologous chromosome pairing and synapsis. Approximately 20.69% lagging chromosome at metaphase I and 4.65% abnormal tetrad were observed in T449. Moreover, transcriptome analysis revealed down-regulation of a sucrose transporter (OsSUT5) and two monosaccharide transporters (OsMST1 and OsMST8) in T449 at the single microspore stage, and their expression levels were verified by qRT-PCR. Cytological observation of saccharide distribution showed abnormal accumulation of saccharides in T449 and the contents of fructose and glucose were markedly higher in T449 than E249 at the single microspore stage. Our results suggested that polyploidy not only induces abrupt expression changes in the meiosis-related genes that lead to abnormal chromosome behavior, but also causes changes in the saccharide distribution and expression patterns of saccharide-related genes, which jointly causes sterility in the autotetraploid rice.
同源四倍体水稻是一种具有四套染色体且具有强大生物学优势的有用种质资源;然而,低育性限制了其商业利用。关于同源四倍体水稻低育性相关的 DNA 变异和差异基因表达的信息很少。在本研究中,通过全基因组重测序,在 T449(一种低育性同源四倍体水稻品系)与 E249(二倍体对照)之间鉴定出 81 个 SNP 和 182 个 InDels。我们只检测到三个非同义 SNP 和六个大效应 InDels,它们分别与三个和六个基因相关。通过转录组分析,在减数分裂阶段共检测到 75 个与减数分裂相关的差异表达基因,包括 OsMTOPVIB,它对减数分裂 DSB 的形成至关重要,以及 OsMOF,它参与同源染色体配对和联会。在 T449 中观察到大约 20.69%的滞后染色体在中期 I 期和 4.65%的异常四分体。此外,转录组分析显示在 T449 的单核期下调了一个蔗糖转运蛋白(OsSUT5)和两个单糖转运蛋白(OsMST1 和 OsMST8),并通过 qRT-PCR 验证了它们的表达水平。糖分布的细胞学观察显示 T449 中糖异常积累,并且 T449 中果糖和葡萄糖的含量明显高于 E249 在单核期。我们的结果表明,多倍体不仅诱导减数分裂相关基因的突然表达变化,导致染色体行为异常,而且还导致糖分布和糖相关基因表达模式的变化,这共同导致同源四倍体水稻的不育。