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Identification of Drought Response Genes in Zygophyllum xanthoxylum by Suppression Subtractive Hybridization

作   者:Bin Wu1 and Xiaohua Su
期刊名称:Journal of Plant Biology
影响因子:1.437
卷 期 号:
页     码:
关键词:Drought stress, Expressed sequence tag, Gene expression, SSH library, Zygophyllum xanthoxylum
论文摘要:
Drought is an important abiotic stress that seriously limits plant growth and crop productivity in some regions of the world. Zygophyllum xanthoxylum, a succulent xerophyte species with excellent adaptability to adverse arid environments, is an excellent model system for the study of
the molecular mechanisms behind drought tolerance in xerophytic species. To better understand the molecular basis of Z. xanthoxylum responses to drought stress and to isolate drought tolerance-related genes from Z. xanthoxylum, we constructed a cDNA library from Z. xanthoxylum and screened the library for stress-related genes by PCR-based suppression subtractive hybridization (SSH). A total of 637 expressed sequence tags were generated by sequencing 672 randomly selected clones, resulting in the identification of 338 unigenes comprising 77 contigs and 261 singlets. The
unigenes were assigned to 13 functional categories, such as metabolism, disease- or defense-related genes and energyrelated gene. In addition, we analyzed the expression patterns of 24 genes associated with drought stress-responsive pathways by real-time RT-PCR. The results indicated that osmolyte biosynthesis genes, reactive oxygen scavengers, transporters, signaling components and transcription factors play important roles in drought stress responses. This study provides a
valuable resource for studying the drought tolerance mechanism of this xerophytic plant species.

上一条:Yanguang Chu, Weixi Zhang, Bin Wu, Qinjun Huang, Bingyu Zhang & Xiaohua Su. Overexpression of the novel Zygophyllum xanthoxylum C2H2-type zinc finger gene ZxZF improves drought tolerance in transgenic Arabidopsis and poplar. Biologia. 2016 下一条:Shaofeng Li, Qinjun Huang, Bingyu Zhang, Jianhui Zhang, Xue Liu, Mengzhu Lu, Zanmin Hu,Changjun Ding and Xiaohua Su. Small GTP-binding protein PdRanBP regulates vascular tissue development in poplar. BMC Genetics. 2016,

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