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Identification of Genes Expressed in Vascular Tissues Using NPA-Induced Vascular Overgrowth in Arabidopsis

机译:使用NPA诱导拟南芥中的血管过度生长鉴定在血管组织中表达的基因

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摘要

The genetic basis of vascular differentiation and function is relatively poorly understood, partly due to the difficulty of screening for mutants defective in internal vascular tissues. Here we present an approach based on a predicted increase in vascular-related gene expression in response to an auxin transport inhibitor-induced vascular overgrowth. We used microarray analyses to identify 336 genes that were up-regulated ≥2-fold in shoot tissues of Arabidopsis thaliana showing vascular overgrowth. Promoter–marker gene fusions revealed that 38 out of 40 genes with ≥4-fold up-regulation in vascular overgrowth tissues had vascular-related expression in transgenic Arabidopsis plants. Obtained expression patterns included cambial tissues and differentiating xylem, phloem and fibers. A total of 15 genes were found to have vascular-specific expression patterns in the leaves and/or inflorescence stems. This study provides empirical evidence of the efficiency of the approach and describes for the first time the in situ expression patterns of the majority of the assessed genes.
机译:对血管分化和功能的遗传基础了解相对较少,部分原因是难以筛选内部血管组织中有缺陷的突变体。在这里,我们提出了一种基于生长素运输抑制剂诱导的血管过度生长而预测的与血管相关的基因表达增加的方法。我们使用微阵列分析来鉴定在拟南芥芽组织中显示出血管过度生长的336个基因上调了2倍以上的基因。启动子-标记基因融合显示,在过度生长的组织中,≥40倍上调的40个基因中有38个在转基因拟南芥植物中具有与血管相关的表达。获得的表达模式包括冈比亚组织和分化的木质部,韧皮部和纤维。发现总共15个基因在叶和/或花序茎中具有血管特异性表达模式。这项研究为该方法的有效性提供了经验证据,并首次描述了大多数评估基因的原位表达模式。

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