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水稻中六个热胁迫诱导基因的表达及启动子分析

Expression and promoter analysis of six heat stress-inducible genes in rice.

作者信息

Rerksiri Wirat, Zhang Xianwen, Xiong Hairong, Chen Xinbo

机构信息

Key Laboratory for Crop Germplasm Innovation and Utilization of Hunan Province, Hunan Agricultural University, Changsha 410128, China.

Key Laboratory for Crop Germplasm Innovation and Utilization of Hunan Province, Hunan Agricultural University, Changsha 410128, China ; College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha 410128, China.

出版信息

ScientificWorldJournal. 2013 Dec 26;2013:397401. doi: 10.1155/2013/397401. eCollection 2013.

Abstract

During the long evolutionary process, plant gradually formed a series of strategies and mechanisms to cope with stress environment such as drought, heat, cold, and high salinity. Six highly heat responsive genes were identified in rice by microarray data analysis. The qRT-PCR analysis confirmed that the expression of these six genes were highly heat inducible and moderately responded to salt stress, polyethylene glycol, and abscisic acid treatment, but little affected by cold treatment. Promoters of the three highly heat-inducible genes (OsHsfB2cp, PM19p, and Hsp90p) were used to drive GUS gene expression in rice. The results of the GUS gene expression, histochemical staining, and GUS activities in panicles and flag leaves of the transgenic rice plants confirmed high heat-induced GUS activities and moderate drought-induced activities. The three promoters exhibited similar high activity lever in rice leaf under heat, but OsHsfB2cp and PM19p showed much higher activities in panicles under heat stress. Our work confirmed that the OsHsfB2c and PM19 promoters were highly heat inducible and further characterization and reconstruction of cis-elements in their promoters could lead to the development of highly effective heat-inducible promoters for plant genetic engineering.

摘要

在漫长的进化过程中,植物逐渐形成了一系列应对干旱、高温、低温和高盐等胁迫环境的策略和机制。通过微阵列数据分析在水稻中鉴定出六个高度热响应基因。qRT-PCR分析证实,这六个基因的表达具有高度热诱导性,对盐胁迫、聚乙二醇和脱落酸处理有适度响应,但受冷处理影响较小。利用三个高度热诱导基因(OsHsfB2cp、PM19p和Hsp90p)的启动子驱动水稻中GUS基因的表达。转基因水稻植株穗和旗叶中GUS基因表达、组织化学染色和GUS活性的结果证实了高温诱导的GUS高活性和中度干旱诱导活性。这三个启动子在高温下在水稻叶片中表现出相似的高活性水平,但OsHsfB2cp和PM19p在热胁迫下在穗中表现出更高的活性。我们的工作证实了OsHsfB2c和PM19启动子具有高度热诱导性,对其启动子中的顺式元件进行进一步表征和改造可能会导致开发出用于植物基因工程的高效热诱导启动子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b57/3888769/799b3498d924/TSWJ2013-397401.001.jpg

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