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首页> 外文期刊>Plant Physiology >Genome-Wide Identification of Genes Expressed in Arabidopsis Pistils Specifically along the Path of Pollen Tube Growth1,[w]
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Genome-Wide Identification of Genes Expressed in Arabidopsis Pistils Specifically along the Path of Pollen Tube Growth1,[w]

机译:在拟南芥雌蕊中特别是沿花粉管生长途径表达的基因的全基因组鉴定[1]

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摘要

Plant reproductive development is dependent on successful pollen-pistil interactions. In crucifers, the pollen tube must breach the stigma surface and burrow through the extracellular matrix of the stigma epidermal cells and transmitting tract cells before reaching its ovule targets. The high degree of specificity in pollen-pistil interactions and the precision of directional pollen tube growth suggest that signals are continually being exchanged between pollen/pollen tubes and cells of the pistil that line their path. However, with few exceptions, little is known about the genes that control these interactions. The specialized functions of stigma epidermal cells and transmitting tract cells are likely to depend on the activity of genes expressed specifically in these cells. In order to identify these genes, we used the Arabidopsis (Arabidopsis thaliana) ATH1 microarray to compare the whole-genome transcriptional profiles of stigmas and ovaries isolated from wild-type Arabidopsis and from transgenic plants in which cells of the stigma epidermis and transmitting tract were specifically ablated by expression of a cellular toxin. Among the 23,000 genes represented on the array, we identified 115 and 34 genes predicted to be expressed specifically in the stigma epidermis and transmitting tract, respectively. Both gene sets were significantly enriched in predicted secreted proteins, including potential signaling components and proteins that might contribute to reinforcing, modifying, or remodeling the structure of the extracellular matrix during pollination. The possible role of these genes in compatible and incompatible pollen-pistil interactions is discussed.
机译:植物繁殖发育取决于成功的花粉雌蕊相互作用。在十字花科植物中,花粉管必须突破柱头表面,并穿过柱头表皮细胞的细胞外基质和传递道细胞,然后才能到达其胚珠靶。花粉-雌蕊相互作用的高度特异性和定向花粉管生长的精确度表明,信号在花粉/花粉管与沿其路径排列的雌蕊细胞之间不断交换。但是,除少数例外,对控制这些相互作用的基因知之甚少。柱头表皮细胞和传播道细胞的特殊功能可能取决于这些细胞中特异性表达的基因的活性。为了鉴定这些基因,我们使用了拟南芥(Arabidopsis thaliana)ATH1芯片,比较了从野生型拟南芥以及从其中柱头表皮和传递道细胞为转基因植物的分离的柱头和卵巢的全基因组转录谱特别是通过细胞毒素的表达消融。在阵列上代表的23,000个基因中,我们鉴定出115个和34个基因预计分别在柱头表皮和传播道中特异性表达。两种基因集都显着富集了预测的分泌蛋白,包括潜在的信号成分和可能在授粉过程中增强,修饰或重塑细胞外基质结构的蛋白。讨论了这些基因在相容和不相容的花粉-雌蕊相互作用中的可能作用。

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