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首页> 外文期刊>Rice >Genome-wide analyses of late pollen-preferred genes conserved in various rice cultivars and functional identification of a gene involved in the key processes of late pollen development
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Genome-wide analyses of late pollen-preferred genes conserved in various rice cultivars and functional identification of a gene involved in the key processes of late pollen development

机译:全基因组分析在各种水稻品种中保守的晚期花粉优选的基因和参与晚期花粉发育关键过程的功能鉴定

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Background Understanding late pollen development, including the maturation and pollination process, is a key component in maintaining crop yields. Transcriptome data obtained through microarray or RNA-seq technologies can provide useful insight into those developmental processes. Six series of microarray data from a public transcriptome database, the Gene Expression Omnibus of the National Center for Biotechnology Information, are related to anther and pollen development. Results We performed a systematic and functional study across the rice genome of genes that are preferentially expressed in the late stages of pollen development, including maturation and germination. By comparing the transcriptomes of sporophytes and male gametes over time, we identified 627 late pollen-preferred genes that are conserved among japonica and indica rice cultivars. Functional classification analysis with a MapMan tool kit revealed a significant association between cell wall organization/metabolism and mature pollen grains. Comparative analysis of rice and Arabidopsis demonstrated that genes involved in cell wall modifications and the metabolism of major carbohydrates are unique to rice. We used the GUS reporter system to monitor the expression of eight of those genes. In addition, we evaluated the significance of our candidate genes, using T-DNA insertional mutant population and the CRISPR/Cas9 system. Mutants from T-DNA insertion and CRISPR/Cas9 systems of a rice gene encoding glycerophosphoryl diester phosphodiesterase are defective in their male gamete transfer. Conclusion Through the global analyses of the late pollen-preferred genes from rice, we found several biological features of these genes. First, biological process related to cell wall organization and modification is over-represented in these genes to support rapid tube growth. Second, comparative analysis of late pollen preferred genes between rice and Arabidopsis provide a significant insight on the evolutional disparateness in cell wall biogenesis and storage reserves of pollen. In addition, these candidates might be useful targets for future examinations of late pollen development, and will be a valuable resource for accelerating the understanding of molecular mechanisms for pollen maturation and germination processes in rice.
机译:背景技术了解晚期花粉发育,包括成熟和授粉过程,是保持作物产量的关键组分。通过微阵列或RNA-SEQ技术获得的转录组数据可以为这些发育过程提供有用的洞察力。来自公共转录组数据库的六个系列微阵列数据,国家生物技术信息中心的基因表达综合征,与花粉和花粉发育有关。结果我们对在花粉发育后期优先表达的基因的水稻基因组上进行了系统和功能研究,包括成熟和萌发。通过比较孢子体和雄性配子的转录组随时间的推移,我们确定了627种晚期花粉优选的基因,这些基因在粳稻和籼稻品种中保守。使用MAPMAN工具包的功能分类分析显示细胞壁组织/代谢与成熟花粉颗粒之间的重要关联。水稻和拟南芥的比较分析表明,参与细胞壁修饰和主要碳水化合物代谢的基因是大米的独特。我们使用GUS记者系统来监测其中八个基因的表达。此外,我们使用T-DNA插入突变群和CRISPR / CAS9系统评估了候选基因对候选基因的重要性。来自编码甘油磷酸甘油二酯磷酸二酯酶的水稻基因的T-DNA插入和CRISPr / Cas9系统的突变体在其雄性配子转移中有缺陷。结论通过全球对水稻晚期花粉优选基因的全局分析,我们发现了这些基因的几种生物学特征。首先,在这些基因中过度表示与细胞壁组织和修饰相关的生物过程,以支持快速管生长。其次,对水稻和拟南芥之间的晚期花粉优选基因的比较分析对花粉细胞壁生物发生和储量储量的进化性差异有重大见解。此外,这些候选人可能是未来花粉发育的未来检查的有用目标,并将是加速对水稻花粉成熟和萌发过程的分子机制的有价值资源。

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