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首页> 外文期刊>Plant Biotechnology >Functional expression of an animal type-Na+-ATPase gene from a marine red seaweed Porphyra yezoensis increases salinity tolerance in rice plants
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Functional expression of an animal type-Na+-ATPase gene from a marine red seaweed Porphyra yezoensis increases salinity tolerance in rice plants

机译:海洋红海紫菜(Porphyra yezoensis)的动物类型Na + -ATPase基因的功能表达提高了水稻植物的耐盐性

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摘要

Despite lacking Na+-ATPase as a sodium pump in vascular plants, a gene encoding KPA (K+ P-type ATPase), a putative animal type-Na+/K+-ATPase, has been isolated from the marine red alga Porphyra yezoensis and designated PyKPA1. To characterize the properties of PyKPA1 and also to confirm its ability to confer salinity tolerance in land plants, transgenic rice plants were produced that expressed the full-length PyKPA1 cDNA under the control of cauliflower mosaic virus 35S RNA promoter. We observed transcriptional activation of the transgene, plasma membrane-localization of the gene product fused with green fluorescent protein in onion epidermal cells, and Na+-ATPase activity in the plasma membrane fraction from transgenic rice plants, indicating that PyKPA1 was functionally expressed in rice plants. Transgenic lines were examined in terms of growth in salinity stress conditions, resulting in protection from a decrease in biomass, although growth of control rice plants was repressed. These results demonstrate the utility of a red algal animal type-sodium pump for conferring salinity tolerance to land plants.
机译:尽管在维管植物中缺乏Na + -ATPase作为钠泵,但编码KPA的基因(K + P型ATPase)是一种假定的动物型Na + / K + -ATPase,是从海洋红藻斑斑紫菜中分离得到的,命名为PyKPA1。为了表征PyKPA1的特性并确认其赋予陆地植物耐盐性的能力,生产了在花椰菜花叶病毒35S RNA启动子控制下表达全长PyKPA1 cDNA的转基因水稻植物。我们观察到转基因的转录激活,与洋葱表皮细胞中绿色荧光蛋白融合的基因产物的质膜定位以及转基因水稻植株质膜组分中的Na + -ATPase活性,表明PyKPA1在水稻植物中功能性表达。检查了转基因品系的盐分胁迫条件下的生长,尽管可以抑制对照水稻的生长,但仍可防止生物量减少。这些结果证明了红色藻类动物型钠泵可用于赋予陆地植物耐盐性。

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