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Microarray analysis of gene expression involved in anther development in rice (Oryza sativa L.)

机译:水稻花药发育相关基因表达的微阵列分析

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In flowering plants, anthers bear male gametophytes whose development is regulated by the elaborate coordination of many genes. In addition, both gibberellic acid (GA(3)) and jasmonic acid (JA) play important roles in anther development and pollen fertility. To facilitate the analysis of anther development genes and how GA(3) and JA regulate anther development, we performed microarray experiments using a 10-K cDNA microarray with probes derived from seedlings, meiotic anthers, mature anthers and GA(3)- or JA-treated suspension cells of rice. The expression level change of 2155 genes was significantly (by 2-fold or greater) detected in anthers compared with seedlings. Forty-seven genes, representing genes with potential function in cell cycle and cell structure regulation, hormone response, photosynthesis, stress resistance and metabolism, were differentially expressed in meiotic and mature anthers. Moreover, 314 genes responded to either GA(3) or JA treatment, and 24 GA(3)- and 82 JA-responsive genes showed significant changes in expression between meiosis and the mature anther stages. RT-PCR demonstrated that gene y656d05 was not only highly expressed in meiotic anthers but also induced by GA(3)- Strong RNA signals of y656d05 were detected in pollen mother cells and tapetum in in situ hybridization. Further characterization of these candidate genes can contribute to the understanding of the molecular mechanism of anther development and the involvement of JA and GA(3) signals in the control of anther development in rice.
机译:在开花植物中,花药带有雄配子体,其发育受许多基因精心协调的调节。此外,赤霉素(GA(3))和茉莉酸(JA)在花药发育和花粉育性中均起重要作用。为了便于分析花药发育基因以及GA(3)和JA如何调节花药发育,我们使用10-K cDNA微阵列进行了微阵列实验,并使用了从幼苗,减数分裂花药,成熟花药和GA(3)-或JA衍生的探针处理的水稻悬浮细胞。与幼苗相比,在花药中检测到2155个基因的表达水平变化显着(达2倍或更大)。在减数分裂和成熟花药中差异表达了47个基因,这些基因在细胞周期和细胞结构调控,激素反应,光合作用,抗逆性和代谢中具有潜在功能。此外,有314个基因对GA(3)或JA处理产生了响应,而24个GA(3)-和82个JA-响应基因显示了减数分裂和成熟花药阶段之间表达的显着变化。 RT-PCR表明,基因y656d05不仅在减数分裂花药中高表达,而且由GA(3)诱导。在花粉母细胞和绒毡层中原位杂交检测到y656d05的强RNA信号。这些候选基因的进一步表征可以有助于对花药发育的分子机制的理解以及JA和GA(3)信号参与水稻花药发育的控制。

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