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Molecular Mechanisms Underlying Increase in Lysine Content of Waxy Maize through the Introgression of the opaque2 Allele

机译:通过不透明等位基因的渗入提高蜡质玉米赖氨酸含量的分子机制

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摘要

The opaque2 (o2) mutation in maize is associated with high lysine content in endosperm and good nutritional value. To improve the nutritional quality of waxy maize, the o2 allele was introgressed into the wxwx line using marker-assisted backcrossing selection technology. The lysine content of o2o2wxwx lines was higher than that of the wxwx line. To reveal the mechanism of increasing lysine content through introgression of the o2 in waxy maize, the transcriptome on kernels (18th day after pollination) of the o2o2wxwx and parent lines was analyzed using RNA-sequencing (RNA-Seq). The RNA-Seq analysis revealed 49 differentially expressed genes (DEGs). Functional analysis showed that these DEGs were mostly related to the catalytic activity and metabolic processes. The O2 gene regulated multiple metabolic pathways related to biological processes (BP) and molecular function (MP) during waxy maize endosperm development. In particular, in the o2o2wxwx lines, the two genes that encode the EF-1α and LHT1 were up-regulated, but the gene that encodes sulfur-rich proteins was down-regulated, raising the grain lysine content. These findings are of great importance for understanding the molecular mechanism underlying the lysine content increase due to o2 allele introgression into waxy maize.
机译:玉米中的opaque2(o2)突变与胚乳中的高赖氨酸含量和良好的营养价值有关。为了提高糯玉米的营养质量,使用标记辅助回交选择技术将o2等位基因渗入wxwx品系。 o2o2wxwx品系的赖氨酸含量高于wxwx品系的赖氨酸含量。为了揭示蜡质玉米中o2渗入增加赖氨酸含量的机制,使用RNA测序(RNA-Seq)分析了o2o2wxwx和亲本的籽粒(授粉后第18天)的转录组。 RNA-Seq分析显示49个差异表达基因(DEG)。功能分析表明,这些DEG主要与催化活性和代谢过程有关。 O2基因调节糯玉米胚乳发育过程中与生物过程(BP)和分子功能(MP)相关的多个代谢途径。特别是在o2o2wxwx品系中,编码EF-1α和LHT1的两个基因被上调,而编码富含硫的蛋白质的基因被下调,从而提高了谷物赖氨酸含量。这些发现对于理解由于o2等位基因渗入糯玉米而导致的赖氨酸含量增加的分子机制具有重要意义。

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