Genome-Wide Comparative Analysis of Flowering-Related Genes in Arabidopsis, Wheat, and Barley.

International journal of plant genomics Pub Date : 2015-01-01 Epub Date: 2015-09-07 DOI:10.1155/2015/874361
Fred Y Peng, Zhiqiu Hu, Rong-Cai Yang
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Abstract

Early flowering is an important trait influencing grain yield and quality in wheat (Triticum aestivum L.) and barley (Hordeum vulgare L.) in short-season cropping regions. However, due to large and complex genomes of these species, direct identification of flowering genes and their molecular characterization remain challenging. Here, we used a bioinformatic approach to predict flowering-related genes in wheat and barley from 190 known Arabidopsis (Arabidopsis thaliana (L.) Heynh.) flowering genes. We identified 900 and 275 putative orthologs in wheat and barley, respectively. The annotated flowering-related genes were clustered into 144 orthologous groups with one-to-one, one-to-many, many-to-one, and many-to-many orthology relationships. Our approach was further validated by domain and phylogenetic analyses of flowering-related proteins and comparative analysis of publicly available microarray data sets for in silico expression profiling of flowering-related genes in 13 different developmental stages of wheat and barley. These further analyses showed that orthologous gene pairs in three critical flowering gene families (PEBP, MADS, and BBX) exhibited similar expression patterns among 13 developmental stages in wheat and barley, suggesting similar functions among the orthologous genes with sequence and expression similarities. The predicted candidate flowering genes can be confirmed and incorporated into molecular breeding for early flowering wheat and barley in short-season cropping regions.

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拟南芥、小麦和大麦开花相关基因的全基因组比较分析
早花是影响短季作物区小麦(Triticum aestivum L.)和大麦(Hordeum vulgare L.)谷物产量和品质的一个重要性状。然而,由于这些物种的基因组庞大而复杂,直接鉴定开花基因及其分子特征仍然具有挑战性。在此,我们采用生物信息学方法,从 190 个已知拟南芥(Arabidopsis thaliana (L.) Heynh.)开花基因中预测了小麦和大麦的开花相关基因。我们在小麦和大麦中分别发现了 900 个和 275 个推测的同源物。注释的开花相关基因以一对一、一对多、多对一和多对多的同源关系被聚类为 144 个同源组。通过对开花相关蛋白的结构域和系统发生学分析,以及对公开的微阵列数据集进行比较分析,对小麦和大麦 13 个不同发育阶段的开花相关基因进行了硅表达谱分析,进一步验证了我们的方法。这些进一步分析表明,在小麦和大麦的 13 个发育阶段中,三个关键开花基因家族(PEBP、MADS 和 BBX)中的同源基因对表现出相似的表达模式,这表明具有序列和表达相似性的同源基因具有相似的功能。所预测的候选开花基因可被确认并纳入短季作物区小麦和大麦早花分子育种中。
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