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Comprehensive Transcriptome Analysis of Phytohormone Biosynthesis and Signaling Genes in Microspore/Pollen and Tapetum of Rice

机译:水稻小孢子/花粉和绒毡层中植物激素生物合成和信号转导基因的转录组分析

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To investigate the involvement of phytohormones during rice microspore/pollen (MS/POL) development, endogenous levels of IAA, gibberellins (GAs), cytokinins (CKs) and abscisic acid (ABA) in the mature anther were analyzed. We also analyzed the global expression profiles of genes related to seven phytohormones, namely auxin, GAs, CKs, brassinosteroids, ethylene, ABA and jasmonic acids, in MS/POL and tapetum (TAP) using a 44K microarray combined with a laser microdissection technique (LM-array analysis). IAA and GA4 accumulated in a much higher amount in the mature anther compared with the other tissues, while CKs and ABA did not. LM-array analysis revealed that sets of genes required for IAA and GA synthesis were coordinately expressed during the later stages of MS/POL development, suggesting that these genes are responsible for the massive accumulation of IAA and GA4 in the mature anther. In contrast, genes for GA signaling were preferentially expressed during the early developmental stages of MS/POL and throughout TAP development, while their expression was down-regulated at the later stages of MS/POL development. In the case of auxin signaling genes, such mirror-imaged expression observed in GA synthesis and signaling genes was not observed. IAA receptor genes were mostly expressed during the late stages of MS/POL development, and various sets of AUX/IAA and ARF genes were expressed during the different stages of MS/POL or TAP development. Such cell type-specific expression profiles of phytohormone biosynthesis and signaling genes demonstrate the validity and importance of analyzing the expression of phytohormone-related genes in individual cell types independently of other cells/tissues.
机译:为了研究植物激素在水稻小孢子/花粉(MS / POL)发育过程中的参与,分析了成熟花药中IAA,赤霉素(GAs),细胞分裂素(CKs)和脱落酸(ABA)的内源水平。我们还使用44K微阵列结合激光显微切割技术分析了MS / POL和绒毡层(TAP)中与植物生长素,GA,CK,油菜素,乙烯,ABA和茉莉酸等7种植物激素相关的基因的整体表达谱( LM-阵列分析)。与其他组织相比,IAA和GA 4 在成熟花药中的蓄积量要高得多,而CKs和ABA则没有。 LM阵列分析表明,MS / POL发育的后期,IAA和GA合成所需的基因集是协调表达的,这表明这些基因是IAA和GA 4 大量积累的原因。在成熟的花药中。相反,GA信号转导的基因在MS / POL的早期发育阶段和整个TAP发育过程中优先表达,而它们的表达在MS / POL的发育后期被下调。在生长素信号转导基因的情况下,未观察到在GA合成和信号转导基因中观察到的镜像表达。 IAA受体基因主要在MS / POL发育的晚期表达,而各种AUX / IAA和ARF基因在MS / POL或TAP发育的不同阶段表达。植物激素生物合成和信号转导基因的此类细胞类型特异性表达谱证明了独立于其他细胞/组织来分析个别细胞类型中植物激素相关基因的表达的有效性和重要性。

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