Lorenz W Walter, Yu Yuan-Sheng, Simões Marta, Dean Jeffrey F D
Warnell School of Forestry and Natural Resources, University of Georgia, USA.
J Vis Exp. 2009 Mar 20(25):1182. doi: 10.3791/1182.
PtGen2 is a 26,496 feature cDNA microarray containing amplified loblolly pine ESTs. The array is produced in our laboratory for use by researchers studying gene expression in pine and other conifer species. PtGen2 was developed as a result of our gene discovery efforts in loblolly pine, and is comprised of sequences identified primarily from root tissues, but also from needle and stem. PtGen2 has been tested by hybridizing different Cy-dye labeled conifer target cDNAs, using both amplified and non-amplified indirect labeling methods, and also tested with a number of hybridization and washing conditions. This video focuses on the handling and processing of slides before and after pre-hybridization, as well as after hybridization, using some modifications to procedures developed previously. Also included, in text form only, are the protocols used for the generation, labeling and clean up of target cDNA s, as well as information on software used for downstream data processing. PtGen2 is printed with a proprietary print buffer that contains high concentrations of salt that can be difficult to remove completely. The slides are washed first in a warm SDS solution prior to pre-hybridization. After pre-hybridization, the slides are washed vigorously in several changes of water to complete removal of remaining salts. LifterSlips are then cleaned and positioned on the slides and labeled cDNA is carefully loaded onto the microarray by way of capillary action which provides for even distribution of the sample across the slide, and reduces the chance of bubble incorporation. Hybridization of targets to the array is done at 48 degrees C in high humidity conditions. After hybridization, a series of standard washes are done at 53 degrees C and room temperature for extended times. Processing PtGen2 slides using this technique reduces salt and SDS-derived artifacts often seen when the array is processed less rigorously. Hybridizing targets derived from several different conifer RNA sources, this processing protocol yielded fewer artifacts, reduced background, and provided better consistency among different experimental groups of arrays.
PtGen2是一种包含扩增的火炬松EST的26496个特征的cDNA微阵列。该阵列由我们实验室制作,供研究松树和其他针叶树种基因表达的研究人员使用。PtGen2是我们在火炬松基因发现工作的成果,它主要由从根组织中鉴定出的序列组成,但也包括来自针叶和茎的序列。PtGen2已通过使用扩增和非扩增间接标记方法,将不同Cy染料标记的针叶树靶标cDNA进行杂交进行了测试,并且还在多种杂交和洗涤条件下进行了测试。本视频重点介绍了在预杂交前后以及杂交后玻片的处理和加工过程,对先前开发的程序进行了一些修改。此外,仅以文本形式包含了用于靶标cDNA生成、标记和清理的方案,以及用于下游数据处理的软件信息。PtGen2用一种含有高浓度盐的专有印刷缓冲液印刷,这些盐很难完全去除。在预杂交之前,玻片首先在温暖的SDS溶液中洗涤。预杂交后,玻片在几次换水过程中剧烈洗涤,以完全去除残留的盐。然后清洁盖玻片并将其放置在玻片上,通过毛细作用将标记的cDNA小心地加载到微阵列上,这使得样品在玻片上均匀分布,并减少了气泡混入的机会。靶标与阵列的杂交在48摄氏度、高湿度条件下进行。杂交后,在53摄氏度和室温下进行一系列标准洗涤,时间延长。使用这种技术处理PtGen2玻片可减少在阵列处理不够严格时常见的盐和SDS衍生的假象。通过杂交来自几种不同针叶树RNA来源的靶标,该处理方案产生的假象更少,背景降低,并且在不同实验组的阵列之间提供了更好的一致性。