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首页> 外文期刊>BMC Genomics >The Zea mays mutants opaque-2 and opaque-7 disclose extensive changes in endosperm metabolism as revealed by protein, amino acid, and transcriptome-wide analyses
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The Zea mays mutants opaque-2 and opaque-7 disclose extensive changes in endosperm metabolism as revealed by protein, amino acid, and transcriptome-wide analyses

机译:蛋白质,氨基酸和转录组分析显示,Zea mays突变体opaque-2和opaque-7揭示了胚乳代谢的广泛变化

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Background The changes in storage reserve accumulation during maize (Zea mays L.) grain maturation are well established. However, the key molecular determinants controlling carbon flux to the grain and the partitioning of carbon to starch and protein are more elusive. The Opaque-2 (O2) gene, one of the best-characterized plant transcription factors, is a good example of the integration of carbohydrate, amino acid and storage protein metabolisms in maize endosperm development. Evidence also indicates that the Opaque-7 (O7) gene plays a role in affecting endosperm metabolism. The focus of this study was to assess the changes induced by the o2 and o7 mutations on maize endosperm metabolism by evaluating protein and amino acid composition and by transcriptome profiling, in order to investigate the functional interplay between these two genes in single and double mutants. Results We show that the overall amino acid composition of the mutants analyzed appeared similar. Each mutant had a high Lys and reduced Glx and Leu content with respect to wild type. Gene expression profiling, based on a unigene set composed of 7,250 ESTs, allowed us to identify a series of mutant-related down (17.1%) and up-regulated (3.2%) transcripts. Several differentially expressed ESTs homologous to genes encoding enzymes involved in amino acid synthesis, carbon metabolism (TCA cycle and glycolysis), in storage protein and starch metabolism, in gene transcription and translation processes, in signal transduction, and in protein, fatty acid, and lipid synthesis were identified. Our analyses demonstrate that the mutants investigated are pleiotropic and play a critical role in several endosperm-related metabolic processes. Pleiotropic effects were less evident in the o7 mutant, but severe in the o2 and o2o7 backgrounds, with large changes in gene expression patterns, affecting a broad range of kernel-expressed genes. Conclusion Although, by necessity, this paper is descriptive and more work is required to define gene functions and dissect the complex regulation of gene expression, the genes isolated and characterized to date give us an intriguing insight into the mechanisms underlying endosperm metabolism.
机译:背景技术玉米(Zea mays L.)成熟期间储藏储备积累的变化已得到充分证实。但是,控制碳向谷物的通量以及碳向淀粉和蛋白质的分配的关键分子决定因素更加难以捉摸。 Opaque-2(O2)基因是最典型的植物转录因子之一,是玉米胚乳发育过程中碳水化合物,氨基酸和贮藏蛋白代谢整合的一个很好的例子。证据还表明,Opaque-7(O7)基因在影响胚乳代谢中起作用。这项研究的重点是通过评估蛋白质和氨基酸组成并通过转录组分析来评估o2和o7突变对玉米胚乳代谢诱导的变化,以研究单突变体和双突变体中这两个基因之间的功能相互作用。结果我们显示,所分析突变体的总体氨基酸组成看起来相似。相对于野生型,每个突变体具有高的Lys和降低的Glx和Leu含量。基于由7,250个EST组成的单基因集的基因表达谱分析,使我们能够鉴定出一系列与突变相关的转录本(17.1%)和表达上调(3.2%)。几种差异表达的EST与编码氨基酸合成,碳代谢(TCA循环和糖酵解),存储蛋白质和淀粉代谢,基因转录和翻译过程,信号转导以及蛋白质,脂肪酸和确定脂质合成。我们的分析表明,所研究的突变体具有多效性,并且在几种与胚乳相关的代谢过程中起着至关重要的作用。多亲效应在o7突变体中不太明显,但在o2和o2o7背景中则很严重,基因表达模式发生了很大的变化,影响了多种核心表达基因。结论尽管本文是必要的描述性文章,需要更多的工作来定义基因功能并剖析基因表达的复杂调控,但迄今为止,分离和表征的基因仍使我们对胚乳代谢的潜在机制有深刻的了解。

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