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一种芸苔属种子cDNA微阵列的开发。

Development of a Brassica seed cDNA microarray.

作者信息

Xiang Daoquan, Datla Raju, Li Fengling, Cutler Adrian, Malik Meghna R, Krochko Joan E, Sharma Nirmala, Fobert Pierre, Georges Fawzy, Selvaraj Gopalan, Tsang Ed, Klassen Darrin, Koh Chushin, Deneault Jean-Sebastien, Nantel Andre, Nowak Jacek, Keller Wilf, Bekkaoui Faouzi

机构信息

Plant Biotechnology Institute, National Research Council, 110 Gymnasium Place, Saskatoon, SK S7N 0W9, Canada.

出版信息

Genome. 2008 Mar;51(3):236-42. doi: 10.1139/G07-115.

Abstract

Brassica species represent several important crops including canola (Brassica napus). Understanding of genetic elements that contribute to seed-associated functions will impact future improvements in the canola crop. Brassica species share a very close taxonomic and molecular relationship with Arabidopsis thaliana. However, there are several subtle but distinct seed-associated agronomic characteristics that differ among the oil seed crop species. To address these, we have generated 67,535 ESTs predominately from Brassica seeds, analyzed these sequences, and identified 10,642 unigenes for the preparation of a targeted seed cDNA array. A set of 10,642 PCR primer pairs was designed and corresponding amplicons were produced for spotting, along with relevant controls. Critical quality control tests produced satisfactory results for use of this microarray in biological experiments. The microarray was also tested with specific RNA targets from embryos, germinating seeds, and leaf tissues. The hybridizations, signal intensities, and overall quality of these slides were consistent and reproducible. Additionally, there are 429 ESTs represented on the array that show no homology with any A. thaliana annotated gene or any gene in the Brassica genome databases or other plant databases; however, all of these probes hybridized to B. napus transcripts, indicating that the array also will be useful in defining expression patterns for genes so far unique to Brassica species.

摘要

芸苔属植物包含几种重要作物,包括油菜(甘蓝型油菜)。了解有助于种子相关功能的遗传元件将影响油菜作物未来的改良。芸苔属植物与拟南芥在分类学和分子水平上关系非常密切。然而,油料作物物种之间存在一些细微但明显不同的与种子相关的农艺性状。为了解决这些问题,我们主要从芸苔属种子中生成了67,535条EST序列,分析了这些序列,并鉴定出10,642个单基因,用于制备靶向种子cDNA阵列。设计了一组10,642对PCR引物,并产生了相应的扩增子用于点样,同时设置了相关对照。关键的质量控制测试为该微阵列在生物学实验中的使用产生了令人满意的结果。该微阵列还使用来自胚胎、萌发种子和叶片组织的特定RNA靶标进行了测试。这些玻片的杂交、信号强度和整体质量是一致且可重复的。此外,阵列上有429条EST序列与任何拟南芥注释基因、芸苔属基因组数据库或其他植物数据库中的任何基因均无同源性;然而,所有这些探针都与甘蓝型油菜转录本杂交,表明该阵列也将有助于确定迄今为止芸苔属植物特有的基因的表达模式。

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