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通过原位逆转录聚合酶链反应在分离的植物细胞和组织中进行多基因检测。

Multiple gene detection by in situ RT-PCR in isolated plant cells and tissues.

作者信息

Pesquet Edouard, Barbier Odile, Ranocha Philippe, Jauneau Alain, Goffner Deborah

机构信息

UMR CNRS/UPS 5546, Surfaces Cellulaires et Signalisation chez les Végétaux, BP17 Auzeville, 31326 Castanet Tolosan, France.

出版信息

Plant J. 2004 Sep;39(6):947-59. doi: 10.1111/j.1365-313X.2004.02170.x.

Abstract

With the number of functional genomic approaches in plant biology increasing daily, the demand for rapid and reliable RNA localization techniques for gene characterization is being felt. We present herein a novel, liquid phase in situ RT-PCR (IS-RT-PCR) protocol using a combination of gene-specific fluorescent primers and spectral confocal microscopy to localize target RNA in epicotyl sections and xylogenic suspension cultures of Zinnia elegans. Potential sources of artefacts from fixation to gene detection were systematically eliminated using both fluorescent primers and nucleotides for 18S rRNA gene detection, resulting in a set of optimal parameters for IS-RT-PCR that may be readily adapted to any target gene. By judiciously choosing fluorescent primers with non-overlapping fluorochromes, we have shown that our technique is readily adapted to multiplex IS-RT-PCR, enabling the simultaneous localization of more than one gene within a complex tissue or heterogeneous cell population. A 6-carboxy-2',4,4',5',7,7'-hexachlorofluorescein (6-HEX)-labelled primer and a tetrachloro-6-carboxy-fluorescein (TET)-labelled primer were designed for two marker genes associated with programmed cell death in tracheary elements (TEs): an endonuclease (Zen1) and a cysteine protease (ZcP4), respectively. An additional Cyan5 (Cy5)-labelled primer was used to monitor 18SrRNA expression. As expected, the 18S signal was constitutively expressed throughout epicotyls sections and living cells in xylogenic in vitro cultures, whereas Zen1 and ZcP4 were co-localized in forming TEs both in planta and in vitro. Analogous to clustering analysis of gene expression using microarrays to elucidate common metabolic pathways and developmental processes, this novel technique is perfectly adapted to gaining a better understanding of gene function via the coordinated expression of genes in specific cell types of complex tissues and cell populations.

摘要

随着植物生物学中功能基因组学方法的数量与日俱增,对用于基因表征的快速且可靠的RNA定位技术的需求愈发凸显。我们在此展示了一种新颖的液相原位逆转录聚合酶链反应(IS-RT-PCR)方案,该方案结合了基因特异性荧光引物和光谱共聚焦显微镜,用于在百日草的上胚轴切片和木质化悬浮培养物中定位目标RNA。从固定到基因检测过程中,通过使用荧光引物和用于18S rRNA基因检测的核苷酸,系统地消除了潜在的人为干扰因素,从而得出了一套IS-RT-PCR的最佳参数,这些参数可轻松应用于任何目标基因。通过明智地选择具有不重叠荧光染料的荧光引物,我们证明了我们的技术很容易适用于多重IS-RT-PCR,能够在复杂组织或异质细胞群体中同时定位多个基因。针对与管状分子(TEs)中程序性细胞死亡相关的两个标记基因,分别设计了一个6-羧基-2',4,4',5',7,7'-六氯荧光素(6-HEX)标记的引物和一个四氯-6-羧基荧光素(TET)标记的引物:一种核酸内切酶(Zen1)和一种半胱氨酸蛋白酶(ZcP4)。另外使用一个Cyan5(Cy5)标记的引物来监测18S rRNA的表达。正如预期的那样,18S信号在整个上胚轴切片和木质化体外培养物中的活细胞中组成性表达,而Zen1和ZcP4在植物体内和体外的形成中的TEs中共定位。类似于使用微阵列进行基因表达聚类分析以阐明常见代谢途径和发育过程那样,这项新技术非常适合通过复杂组织和细胞群体中特定细胞类型中基因的协同表达来更好地理解基因功能。

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