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Suppression of cucumber stachyose synthase gene (CsSTS) inhibits phloem loading and reduces low temperature stress tolerance

机译:黄瓜水苏糖合酶基因(CsSTS)的抑制抑制韧皮部负载并降低低温胁迫耐受性

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摘要

Stachyose is the main transporting sugar in phloem of Raffinose family oligosaccharides-transporting species. Stachyose synthase (STS) is a key enzyme for stachyose biosynthesis, but the gene encoding STS is poorly characterized in cucumber (Cucumis sativus L.), which is a model plant for studying stachyose metabolism and phloem function. In this research, stachyose synthase gene (CsSTS) from cucumber was isolated and its physiological functions were analyzed. CsSTS expressed mainly in the phloem of the minor veins in mature leaves and localized to companion cells. Reverse genetics with CsSTS RNAi lines revealed obviously reductions in STS activity and stachyose content along with a small amount of starch accumulation in leaves, suggesting that CsSTS is involved in phloem loading of cucumber leaves. After 6 °C low temperature stress, malondialdehyde content and electrical conductivity increased, especially in CsSTS-RNAi plants. But CsSTS expression was up-regulated, STS activity and stachyose level increased, the activities of reactive-oxygen-scavenging enzyme in cucumber seedlings improved significantly and starch accumulation reduced, especially in CsSTS-OE lines. These results demonstrate clearly that CsSTS is involved in phloem loading, carbohydrate distribution and tolerance of cucumber seedlings to low temperature stress.Electronic supplementary materialThe online version of this article (doi:10.1007/s11103-017-0621-9) contains supplementary material, which is available to authorized users.
机译:水苏糖是棉子糖家族寡糖运输物种韧皮部的主要运输糖。水苏糖合酶(STS)是水苏糖生物合成的关键酶,但是编码STS的基因在黄瓜(Cucumis sativus L.)中的特性很差,黄瓜是研究水苏糖代谢和韧皮部功能的模型植物。本研究从黄瓜中分离出水苏糖合酶基因(CsSTS),并对其生理功能进行了分析。 CsSTS主要在成熟叶片的次要静脉韧皮部表达,并局限于伴生细胞。 CsSTS RNAi系的反向遗传学表明,STS活性和水苏糖含量明显降低,并且叶片中有少量淀粉积累,这表明CsSTS参与黄瓜叶片的韧皮部负载。在6°C的低温胁迫下,丙二醛含量和电导率增加,尤其是在CsSTS-RNAi植物中。但是CsSTS表达上调,STS活性和水苏糖水平增加,黄瓜幼苗的活性氧清除酶活性显着提高,淀粉积累减少,特别是在CsSTS-OE系中。这些结果清楚地表明,CsSTS与黄瓜幼苗的韧皮部负载,碳水化合物分布和耐低温性有关。电子补充材料本文的在线版本(doi:10.1007 / s11103-017-0621-9)包含补充材料,其中适用于授权用户。

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