首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Comparison of maize (Zea mays L.) F1-hybrid and parental inbred line primary root transcriptomes suggests organ-specific patterns of nonadditive gene expression and conserved expression trends.
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Comparison of maize (Zea mays L.) F1-hybrid and parental inbred line primary root transcriptomes suggests organ-specific patterns of nonadditive gene expression and conserved expression trends.

机译:玉米(Zea mays L.)的比较F1 杂交系和亲本自交系原始根转录组表明非加性基因表达的器官特异性模式和保守表达趋势。

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摘要

The phenomenon of heterosis describes the increased agronomic performance of heterozygous F(1) plants compared to their homozygous parental inbred plants. Heterosis is manifested during the early stages of root development in maize. The goal of this study was to identify nonadditive gene expression in primary roots of maize hybrids compared to the average expression levels of their parental inbred lines. To achieve this goal a two-step strategy was used. First, a microarray preselection of nonadditively expressed candidate genes was performed. Subsequently, gene expression levels in a subset of genes were determined via high-throughput quantitative real-time (qRT)-PCR experiments. Initial microarray experiments identified 1941 distinct microarray features that displayed nonadditive gene expression in at least 1 of the 12 analyzed hybrids compared to the midparent value of their parental inbred lines. Most nonadditively expressed genes were expressed between the parental values (>89). Comparison of these 1941 genes with nonadditively expressed genes identified in maize shoot apical meristems via the same experimental procedure in the same genotypes revealed significantly less overlap than expected by pure chance. This finding suggests organ-specific patterns of nonadditively expressed genes. qRT-PCR analyses of 64 of the 1941 genes in four different hybrids revealed conserved patterns of nonadditively expressed genes in different hybrids. Subsequently, 22 of the 64 genes that displayed nonadditive expression in all four hybrids were analyzed in 12 hybrids that were generated from four inbred lines. Among those genes a superoxide dismutase 2 was expressed significantly above the midparent value in all 12 hybrids and might thus play a protective role in heterosis-related antioxidative defense in the primary root of maize hybrids. The findings of this study are consistent with the hypothesis that both global expression trends and the consistent differential expression of specific genes contribute to the organ-specific manifestation of heterosis.
机译:优势现象描述了杂合F(1)植物与其纯合亲本自交系植物相比农艺性能的提高。优势表现在玉米根系发育的早期阶段。本研究的目的是鉴定玉米杂交种主根中的非加性基因表达与其亲本自交系的平均表达水平相比。为了实现这一目标,采用了两步策略。首先,对非加性表达的候选基因进行微阵列预选。随后,通过高通量实时定量(qRT)-PCR实验确定基因子集中的基因表达水平。最初的微阵列实验确定了 1941 个不同的微阵列特征,这些特征在分析的 12 个杂交种中至少有 1 个显示出非加性基因表达,与其亲本自交系的中间亲本值相比。大多数非加性表达的基因在亲本值之间表达(>89%)。将这些 1941 基因与通过相同基因型的相同实验程序在玉米枝条顶端分生组织中鉴定出的非加性表达基因进行比较,发现重叠明显少于纯偶然预期的重叠。这一发现表明了非加性表达基因的器官特异性模式。对 4 个不同杂交种中 64 个 1941 个基因的 qRT-PCR 分析揭示了不同杂交种中非加性表达基因的保守模式。随后,在所有4个杂交种中显示非加性表达的64个基因中的22个在4个自交系产生的12个杂交种中进行了分析。在这些基因中,超氧化物歧化酶2在所有12个杂交种中的表达均显著高于中间亲本值,因此可能在玉米杂交种主根的优势相关抗氧化防御中发挥保护作用。本研究的结果与以下假设一致,即全球表达趋势和特定基因的持续差异表达都有助于优势的器官特异性表现。

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