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Shoot Na Exclusion and Increased Salinity Tolerance Engineered by Cell Type-Specific Alteration of Na Transport in Arabidopsis.

机译:通过拟南芥中Na转运的细胞类型特异性Na转运工程改造的Na排斥和盐分耐受性提高。

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摘要

Soil salinity affects large areas of cultivated land, causing significant reductions in crop yield globally. The Na toxicity of many crop plants is correlated with overaccumulation of Na in the shoot. We have previously suggested that the engineering of Na exclusion from the shoot could be achieved through an alteration of plasma membrane Na transport processes in the root, if these alterations were cell type specific. Here, it is shown that expression of the Na transporter HKT1;1 in the mature root stele of Arabidopsis thaliana decreases Na accumulation in the shoot by 37 to 64%. The expression of HKT1;1 specifically in the mature root stele is achieved using an enhancer trap expression system for specific and strong overexpression. The effect in the shoot is caused by the increased influx, mediated by HKT1;1, of Na into stelar root cells, which is demonstrated in planta and leads to a reduction of root-to-shoot transfer of Na. Plants with reduced shoot Na also have increased salinity tolerance. By contrast, plants constitutively expressing HKT1;1 driven by the cauliflower mosaic virus 35S promoter accumulated high shoot Na and grew poorly. Our results demonstrate that the modification of a specific Na transport process in specific cell types can reduce shoot Na accumulation, an important component of salinity tolerance of many higher plants.
机译:土壤盐分影响大片耕地,导致全球农作物产量大幅下降。许多农作物的Na毒性与芽中Na的过度积累有关。我们以前曾提出,如果这些改变是特定于细胞类型的,则可以通过改变根中质膜Na转运过程来实现对芽中Na的排斥工程。在这里,显示出Na转运蛋白HKT1; 1在拟南芥成熟根碑中的表达使芽中Na的积累减少了37%至64%。 HKT1; 1在成熟根碑中的特异性表达是通过针对特定而强烈的过表达的增强子捕获表达系统实现的。芽中的作用是由HKT1; 1介导的Na流入石质根细胞的流入增加引起的,这在植物中得到证实,并导致Na的根向茎转移减少。 Na含量降低的植物也具有更高的耐盐性。相比之下,由花椰菜花叶病毒35S启动子驱动的组成型表达HKT1; 1的植物积累高的芽Na,并且生长较差。我们的结果表明,在特定细胞类型中对特定Na转运过程的修饰可以减少芽Na的积累,而Na是许多高等植物耐盐性的重要组成部分。

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