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Analysis of the Nicotiana tabacum Stigma/Style Transcriptome Reveals Gene Expression Differences between Wet and Dry Stigma Species

机译:烟草的柱头/样式转录组的分析揭示了干和柱头物种之间的基因表达差异

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摘要

The success of plant reproduction depends on pollen-pistil interactions occurring at the stigma/style. These interactions vary depending on the stigma type: wet or dry. Tobacco (Nicotiana tabacum) represents a model of wet stigma, and its stigmas/styles express genes to accomplish the appropriate functions. For a large-scale study of gene expression during tobacco pistil development and preparation for pollination, we generated 11,216 high-quality expressed sequence tags (ESTs) from stigmas/styles and created the TOBEST database. These ESTs were assembled in 6,177 clusters, from which 52.1% are pistil transcripts/genes of unknown function. The 21 clusters with the highest number of ESTs (putative higher expression levels) correspond to genes associated with defense mechanisms or pollen-pistil interactions. The database analysis unraveled tobacco sequences homologous to the Arabidopsis (Arabidopsis thaliana) genes involved in specifying pistil identity or determining normal pistil morphology and function. Additionally, 782 independent clusters were examined by macroarray, revealing 46 stigma/style preferentially expressed genes. Real-time reverse transcription-polymerase chain reaction experiments validated the pistil-preferential expression for nine out of 10 genes tested. A search for these 46 genes in the Arabidopsis pistil data sets demonstrated that only 11 sequences, with putative equivalent molecular functions, are expressed in this dry stigma species. The reverse search for the Arabidopsis pistil genes in the TOBEST exposed a partial overlap between these dry and wet stigma transcriptomes. The TOBEST represents the most extensive survey of gene expression in the stigmas/styles of wet stigma plants, and our results indicate that wet and dry stigmas/styles express common as well as distinct genes in preparation for the pollination process.
机译:植物繁殖的成功取决于在柱头/花柱处发生的花粉-雌蕊相互作用。这些相互作用取决于柱头类型:湿的或干的。烟草(Nicotiana tabacum)代表湿柱头的模型,其柱头/样式表达基因以完成适当的功能。为了对烟草雌蕊发育过程中的基因表达进行大规模研究,并为授粉做准备,我们从柱头/样式中生成了11,216个高质量的表达序列标签(EST),并创建了TOBEST数据库。这些EST被组装成6,177个簇,其中52.1%是功能未知的雌蕊转录物/基因。 EST数量最多的21个簇(推测较高的表达水平)对应于与防御机制或花粉-雌蕊相互作用相关的基因。数据库分析揭示了与指定雌蕊身份或确定正常雌蕊形态和功能有关的拟南芥(Arabidopsis thaliana)基因同源的烟草序列。另外,通过宏阵列检查了782个独立的簇,揭示了46个柱头/样式优先表达的基因。实时逆转录聚合酶链反应实验验证了10个基因中有9个的雌蕊优先表达。在拟南芥雌蕊数据集中搜索这46个基因表明,在这种干燥的柱头物种中仅表达了11个具有假定的等价分子功能的序列。在TOBEST中对拟南芥雌蕊基因的反向搜索暴露了这些干和湿柱头转录组之间的部分重叠。 TOBEST代表对湿柱头植物的柱头/样式中基因表达的最广泛的调查,我们的结果表明,在准备授粉过程中,湿柱头和干柱头/样式可表达共同的基因和不同的基因。

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