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Tamarix hispida aquaporin ThPIP2;5 confers salt and osmotic stress tolerance

作   者:王留强,张春蕊,王艳敏,王玉成,杨传平,卢孟柱,王超
期刊名称:Environmental and Experimental Botany
影响因子:4.369
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关键词:Abiotic stress Aquaporin ROS-scavenging capability Tamarix hispida
论文摘要:
Aquaporin (AQP) proteins constitute a large family of protein channels that facilitate the transport of water and small neutral solutes through biological membranes, which is important for plants to combat abiotic stress. However, the precise functions of AQP genes involved in abiotic stress are not completely understood in plants. In this study, ThPIP2;5, an AQP gene of the PIP2 subgroup, was cloned and characterized from Tamarix hispida. Cellular localization assays showed that ThPIP2;5 was localized to the plasma membrane. Transgenic Arabidopsis plants overexpressing ThPIP2;5 displayed improved seed germination rates and increased root growth and fresh weight gain under salt and osmotic stresses, indicating that ThPIP2;5 can improve abiotic stress tolerance.
ThPIP2;5-overexpressing and RNAi-silencing T. hispida plants were generated using the transient transformation
method and selected for gain- and loss-of ThPIP2;5 analyses, respectively. Overexpression of ThPIP2;5 in transgenic Tamarix and Arabidopsis plants increased ROS-scavenging capability, activities of antioxidant enzymes and proline contents; decreased malondialdehyde (MDA) and H2O2 contents; and reduced electrolyte leakage rates compared to equivalent controls under salt and osmotic stresses. Together, these data suggested that ThPIP2;5 plays an important physiological role in abiotic stress tolerance in transgenic plants by reducing ROS accumulation and membrane damage and increasing the activities of antioxidants.

上一条:王留强,李真,王超,王德印,王玉成,卢孟柱. Overexpression of a Peroxiredoxin gene from Tamarix hispida, ThPrx1,Confers Tolerance to Oxidative Stress in Yeast and Arabidopsis. Journal of Plant Biology. 2017, 60: 1-10. 下一条:王留强,李真,卢孟柱,王玉成. ThNAC13, a NAC transcription factor from Tamarix hispida, confers salt and osmotic stress tolerance to transgenic Tamarix and Arabidopsis. Frontiers in Plant Science. 2017, 8: 635.

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