油菜
转录组
生物
非生物胁迫
微阵列
基因
非生物成分
微阵列分析技术
芸苔属
DNA微阵列
基因表达谱
遗传学
转录因子
计算生物学
植物
基因表达
生态学
作者
Sang‐Choon Lee,Myung-Ho Lim,Jin A Kim,Soo In Lee,Jung Sun Kim,Mina Jin,Soo-Jin Kwon,Jeong‐Hwan Mun,Yeon-Ki Kim,Hyun Uk Kim,Yoonkang Hur,Beom‐Seok Park
出处
期刊:Molecules and Cells
[Korean Society for Molecular and Cellular Biology]
日期:2008-12-01
卷期号:26 (6): 595-605
被引量:108
标识
DOI:10.1016/s1016-8478(23)14042-8
摘要
Genome wide transcription analysis in response to stresses is essential to provide the basis of effective engineering strategies to improve stress tolerance in crop plants. In order to perform transcriptome analysis in Brassica rapa, we constructed a B. rapa oligo microarray, KBGP-24K, using sequence information from approximately 24,000 unigenes and analyzed cold (4°C), salt (250 mM NaCl), and drought (air-dry) treated B. rapa plants. Among the B. rapa unigenes represented on the microarray, 417 (1.7%), 202 (0.8%), and 738 (3.1%) were identified as responsive genes that were differently expressed 5-fold or more at least once during a 48-h treatment with cold, salt, and drought, respectively. These results were confirmed by RT-PCR analysis. In the abiotic stress responsive genes identified, we found 56 transcription factor genes and 60 commonly responsive genes. It suggests that various transcriptional regulatory mechanisms and common signaling pathway are working together under the abiotic stresses in B. rapa. In conclusion, our new developed 24K oligo microarray will be a useful tool for transcriptome profiling and this work will provide valuable insight in the response to abiotic stress in B. rapa.
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