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Pervasive interactions of Sa and Sb loci cause high pollen sterility and abrupt changes in gene expression during meiosis that could be overcome by double neutral genes in autotetraploid rice

机译:SA和Sb基因座的普遍性相互作用导致高分子化合物的高花粉无菌和突然变化,可以通过双重中性基因在自身传递水稻中进行双重中性基因克服

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摘要

Abstract Background Intersubspecific autotetraploid rice hybrids possess high hybrid vigor; however, low pollen fertility is a critical hindrance in its commercial utilization. Our previous study demonstrated that polyploidy could increase the multi-loci interaction and cause high pollen abortion in autotetraploid rice hybrids. However, there is little known about the critical role of pollen sterility locus or loci in the intersubspecific hybrids. We developed autotetraploid rice hybrids harboring heterozygous genotypes (S i S i S j S j ) at different pollen sterility loci by using the near isogenic lines of Taichung65-4×. Moreover, autotetraploid lines carrying double neutral genes, Sa n and Sb n , were used to assess their effect on fertility restoration. Results Cytological studies showed that the deleterious genetic interactions at Sa and Sb pollen sterility loci resulted in higher pollen sterility (76.83%) and abnormal chromosome behavior (24.59%) at metaphase I of meiosis in autotetraploid rice hybrids. Transcriptome analysis revealed 1092 differentially expressed genes (DEG) in a hybrid with the pervasive interactions at Sa and Sb pollen sterility loci, and most of the genes (about 83%) exhibited down regulation. Of the DEG, 60 were associated with transcription regulation and 18 genes were annotated as meiosis-related genes. Analysis on the hybrids developed by using autotetraploid rice harboring double neutral genes, Sa n and Sb n , revealed normal pollen fertility, and transcriptome analysis showed non-significant difference in number of DEG among different hybrids. Conclusions Our finding revealed that pervasive interactions at Sa and Sb pollen sterility loci cause high sterility in the autotetraploid hybrids that lead to the down-regulation of important meiosis-related genes and transcription regulation factors. Moreover, we also found that the hybrids sterility could be overcome by double neutral genes, Sa n and Sb n , in autotetraploid rice hybrids. The present study provided a strong evidence for the utilization of heterosis in autotetraploid rice hybrids.
机译:摘要背景梭菌性自身传递稻杂交液体具有高杂交活力;然而,低花粉生育是其商业利用的关键障碍。我们以前的研究表明,多倍体可以增加多基因型相互作用并导致自身传递四倍体稻杂种中的高花粉流产。然而,关于花粉无菌基因座或基因座在三种特异性杂种中的关键作用毫无疑问。我们通过使用Taicheng65-4×的近似同学线在不同的花粉无菌基因座上开发了含有杂合基因型(S I S I S J S J)的自身四倍体稻杂种。此外,携带双中性基因,SA N和SB N的自身传递线线用于评估它们对生育恢复的影响。结果细胞学研究表明,SA和Sb花粉无菌基因座的有害遗传相互作用导致了在自身传递稻杂交体中的MeIsos中的中期I阴性中脱磷I的温度较高(76.83%)和异常染色体行为(24.59%)。转录组分析揭示了杂交中的1092个差异表达基因(DEG),在SA和Sb花粉无菌基因座的普遍相互作用中,大部分基因(约83%)表现出下调。将60℃与转录调节有关,18个基因被注释为细胞病相关基因。通过使用自身四倍体稻米含有双中性基因,SA N和Sb N开发的杂种分析,揭示了正常的花粉生育率,并且转录组分析显示不同杂种中的DEG数量的非显着差异。结论我们的发现揭示了SA和Sb Pollen无菌基因座的普遍性相互作用在自身传输杂交杂交体中导致高性能,导致重要的大学相关基因和转录调控因子的下调。此外,我们还发现,在自身四倍体稻杂交体中,可以通过双中性基因,SA N和Sb N克服杂种无菌。本研究提供了在自动四倍体稻杂种中使用杂种优势的有力证据。

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