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首页> 外文期刊>BMC Genomics >The mature anther-preferentially expressed genes are associated with pollen fertility, pollen germination and anther dehiscence in rice
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The mature anther-preferentially expressed genes are associated with pollen fertility, pollen germination and anther dehiscence in rice

机译:花药优先表达的成熟基因与水稻花粉育性,花粉萌发和花药开裂有关

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摘要

The anthers and pollen grains are critical for male fertility and hybrid rice breeding. The development of rice mature anther and pollen consists of multiple continuous stages. However, molecular mechanisms regulating mature anther development were poorly understood. In this study, we have identified 291 mature anther-preferentially expressed genes (OsSTA) in rice based on Affymetrix microarray data. Gene Ontology (GO) analysis indicated that OsSTA genes mainly participated in metabolic and cellular processes that are likely important for rice anther and pollen development. The expression patterns of OsSTA genes were validated using real-time PCR and mRNA in situ hybridizations. Cis-element identification showed that most of the OsSTA genes had the cis-elements responsive to phytohormone regulation. Co-expression analysis of OsSTA genes showed that genes annotated with pectinesterase and calcium ion binding activities were rich in the network, suggesting that OsSTA genes could be involved in pollen germination and anther dehiscence. Furthermore, OsSTA RNAi transgenic lines showed male-sterility and pollen germination defects. The results suggested that OsSTA genes function in rice male fertility, pollen germination and anther dehiscence and established molecular regulating networks that lay the foundation for further functional studies.
机译:花药和花粉粒对于雄性育性和杂交水稻育种至关重要。水稻成熟花药和花粉的发育包括多个连续阶段。然而,对成熟花药发育的分子机制了解甚少。在这项研究中,我们已经基于Affymetrix芯片数据确定了水稻中291个成熟的花药优先表达基因(OsSTA)。基因本体论(GO)分析表明,OsSTA基因主要参与代谢和细胞过程,这可能对水稻花药和花粉发育很重要。使用实时PCR和mRNA原位杂交验证了OsSTA基因的表达模式。顺式元素鉴定表明,大多数OsSTA基因都具有对植物激素调节反应的顺式元素。 OsSTA基因的共表达分析表明,带有果胶酯酶和钙离子结合活性的基因在网络中富集,表明OsSTA基因可能与花粉萌发和花药裂开有关。此外,OsSTA RNAi转基因品系显示出雄性不育和花粉萌发缺陷。结果表明,OsSTA基因在水稻雄性育性,花粉萌发和花药裂开中起作用,并建立了分子调控网络,为进一步的功能研究奠定了基础。

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