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The Zea mays mutants opaque2 and opaque16 disclose lysine change in waxy maize as revealed by RNA-Seq

机译:Zea mays突变体Opaque2和Opaque16公开了蜡质玉米的赖氨酸变化,如RNA-SEQ所示

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In maize, opaque2 (o2) and opaque16 (o16) alleles can increase lysine content, while the waxy (wx) gene can enhance the amylopectin content of grains. In our study, o2 and o16 alleles were backcrossed into waxy maize line (wxwx). The o2o2o16o16wxwx lines had amylopectin contents similar to those of waxy line. Their nutritional value was better than waxy line, but the mechanism by which the o2 and o16 alleles increased the lysine content of waxy maize remained unclear. The o2o2o16o16wxwx lines and their parents on kernels (18th day after pollination) were subjected to RNA sequencing (RNA-Seq). The RNA-Seq analysis revealed 272 differentially expressed genes (DEGs). Functional analyses revealed that these DEGs were mainly related to biomass metabolism. Among them, in o2o2o16o16wxwx lines, 15 genes encoding α-zein were down-regulated, which resulted in the reduction of α-zein synthesis and increased lysine content; lkr/sdh1 and Zm00001d020984.1 genes involved in the lysine degradation pathway were down-regulated, thereby inhibited lysine degradation; sh2, bt2 and ae1 genes involved in starch metabolism were upregulated, leaded to wrinkling kernel and farinaceous endosperm. Our transcriptional-level identification of key genes responsible for increased grain lysine content and farinaceous endosperm formation following introgression of o2 and o16 alleles should promote molecular breeding for maize quality.
机译:在玉米中,OPAque2(O 2)和Opaque16(O16)等位基因可以增加赖氨酸含量,而蜡质(Wx)基因可以增强晶粒的淀粉素含量。在我们的研究中,O2和O16等位基因被回交为蜡质玉米线(WXWX)。 O2O2O16O16WXWX线具有类似于蜡质线的淀粉蛋白含量。它们的营养价值优于蜡质线,但O2和O16等位基因增加了蜡质玉米赖氨酸含量的机制仍不清楚。 O2O2O16O16WXWX线及其父母在核(授粉后18天)进行RNA测序(RNA-SEQ)。 RNA-SEQ分析显示272个差异表达基因(DEGS)。功能分析表明,这些可与生物质代谢有关。其中,在O 2 O 2 16O16WxWx系中,编码α-Zein的15个基因被下调,导致α-玉米蛋白合成和赖氨酸含量增加的降低; LKR / SDH1和ZM00001D020984.1涉及赖氨酸降解途径的基因进行了下调,从而抑制赖氨酸降解;上调淀粉代谢参与的SH2,BT2和AE1基因,呈皱核和Farinaceous Endosperm。我们在O2和O16等位基因迟引中负责增加谷物赖氨酸含量和Farinaceous胚乳形成的关键基因的转录水平鉴定应促进玉米品质的分子育种。

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