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Heterologous expression of AtPAP2 in transgenic potato influences carbon metabolism and tuber development

机译:atpap2在转基因马铃薯中的异源表达影响碳代谢和块茎发育

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摘要

Changes in carbon flow and sink/source activities can affect floral, architectural, and reproductive traits of plants. In potato, overexpression (OE) of the purple acid phosphatase 2 of Arabidopsis (AtPAP2) resulted in earlier flowering, faster growth rate, increased tubers and tuber starch content, and higher photosynthesis rate. There was a significant change in sucrose, glucose and fructose levels in leaves, phloem and sink biomass of the OE lines, consistent with an increased expression of sucrose transporter 1 (StSUT1). Furthermore, the expression levels and enzyme activity of sucrose-phosphate synthase (SPS) were also significantly increased in the OE lines. These findings strongly suggest that higher carbon supply from the source and improved sink strength can improve potato tuber yield.
机译:碳流量和汇/源活动的变化会影响植物的花卉,建筑和生殖特性。在马铃薯中,拟南芥紫色酸性磷酸酶2(AtPAP2)的过度表达(OE)导致开花较早,生长速度加快,块茎和块茎淀粉含量增加以及光合作用速率提高。 OE系的叶片,韧皮部和库生物量中的蔗糖,葡萄糖和果糖水平发生了显着变化,这与蔗糖转运蛋白1(StSUT1)的表达增加是一致的。此外,在OE系中,蔗糖-磷酸合酶(SPS)的表达水平和酶活性也显着增加。这些发现强烈表明,从源头获得更高的碳供应量和改善的汇聚强度可以提高马铃薯块茎的产量。

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