首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genome-wide transcript analysis of maize hybrids: allelic additive gene expression and yield heterosis
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Genome-wide transcript analysis of maize hybrids: allelic additive gene expression and yield heterosis

机译:玉米杂种全基因组转录本分析:等位基因加性基因表达和产量杂种优势

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Heterosis, or hybrid vigor, has been widely exploited in plant breeding for many decades, but the molecular mechanisms underlying the phenomenon remain unknown. In this study, we applied genome-wide transcript profiling to gain a global picture of the ways in which a large proportion of genes are expressed in the immature ear tissues of a series of 16 maize hybrids that vary in their degree of heterosis. Key observations include: (1) the proportion of allelic additively expressed genes is positively associated with hybrid yield and heterosis; (2) the proportion of genes that exhibit a bias towards the expression level of the paternal parent is negatively correlated with hybrid yield and heterosis; and (3) there is no correlation between the over- or under-expression of specific genes in maize hybrids with either yield or heterosis. The relationship of the expression patterns with hybrid performance is substantiated by analysis of a genetically improved modern hybrid (Pioneer((R)) hybrid 3394) versus a less improved older hybrid (Pioneer((R)) hybrid 3306) grown at different levels of plant density stress. The proportion of allelic additively expressed genes is positively associated with the modern high yielding hybrid, heterosis and high yielding environments, whereas the converse is true for the paternally biased gene expression. The dynamic changes of gene expression in hybrids responding to genotype and environment may result from differential regulation of the two parental alleles. Our findings suggest that differential allele regulation may play an important role in hybrid yield or heterosis, and provide a new insight to the molecular understanding of the underlying mechanisms of heterosis.
机译:杂种优势或杂种优势已在植物育种中被广泛使用了数十年,但这种现象的分子机制仍然未知。在这项研究中,我们应用了全基因组的转录谱分析,以全面了解在杂种程度不同的16个玉米杂种的一系列不成熟穗组织中大量基因表达的方式。主要观察结果包括:(1)等位基因加性表达基因的比例与杂种产量和杂种优势正相关; (2)表现出对父母亲表达水平有偏见的基因比例与杂交产量和杂种优势负相关; (3)在具有产量或杂种优势的玉米杂交物中,特定基因的过表达或欠表达之间没有相关性。通过分析遗传改良的现代杂种(Pioneer(R)杂种3394)与改良程度较低的较旧的杂种(Pioneer(R)杂种3306)在不同水平的生长下的分析,证实了表达模式与杂种性能的关系。植物密度胁迫。等位基因加性表达基因的比例与现代高产杂种,杂种优势和高产环境呈正相关,而父系偏向基因表达则相反。响应基因型和环境的杂种中基因表达的动态变化可能是由于两个亲本等位基因的差异调控所致。我们的研究结果表明,差异等位基因调控可能在杂种产量或杂种优势中发挥重要作用,并为对杂种优势基本机制的分子理解提供新的见解。

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