Expression of nhaA gene confers salt-sensitivity in transgenic rice cultures and plants

Xia Li , Chenguang Zhai , Xianggan Li
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Abstract

Salinity is an important abiotic factor that limits crop productivity for which solutions are being investigated through extensive research in plant biotechnology. The current study was designed to determine if expression of Escherichia coli nhaA gene, a Na+/H+ antiporter, can confer salt tolerance in transgenic rice cultures and plants. Transgenic rice calli and plants containing the nhaA gene were treated with various concentrations of NaCl. Lower biomass and higher death rates were observed under salt stress conditions for these transgenic materials. These data suggest that transgenic rice containing the nhaA gene driven by the maize ubiquitin promoter are salt sensitive. In contrast to previous reports, an enhanced salt tolerance after nhaA expression in rice cultures and plants is not demonstrated in our current study.

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nhaA基因的表达使转基因水稻和植物对盐敏感
盐度是限制作物生产力的一个重要的非生物因素,人们正在通过广泛的植物生物技术研究来寻找解决办法。目前的研究旨在确定大肠杆菌nhaA基因(一种Na+/H+反转运蛋白)的表达是否能使转基因水稻和植株具有耐盐性。用不同浓度的NaCl处理转基因水稻愈伤组织和含nhaA基因的植株。这些转基因材料在盐胁迫条件下生物量较低,死亡率较高。这些数据表明,含有玉米泛素启动子驱动的nhaA基因的转基因水稻对盐敏感。与之前的报道相反,在我们目前的研究中没有证明nhaA在水稻培养和植物中表达后具有增强的耐盐性。
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Publisher's Note No plastidial calmodulin-like proteins detected by two targeted mass-spectrometry approaches and GFP fusion proteins The impact on nitrogen-efficient phenotypes when aspartate aminotransferase is expressed tissue-specifically in Brassica napus Failure to over-express expansin in multiple heterologous systems Editorial
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