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Inhibition of plastid PPase and NTT leads to major changes in starch and tuber formation in potato

机译:质体PPase和NTT的抑制导致马铃薯淀粉和块茎形成的重大变化

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摘要

The importance of a plastidial soluble inorganic pyrophosphatase (psPPase) and an ATP/ADP translocator (NTT) for starch composition and tuber formation in potato (Solanum tuberosum) was evaluated by individual and simultaneous down-regulation of the corresponding endogenous genes. Starch and amylose content of the transgenic lines were considerably lower, and granule size substantially smaller, with down-regulation of StpsPPase generating the most pronounced effects. Single-gene down-regulation of either StpsPPase or StNTT resulted in increased tuber numbers per plant and higher fresh weight yield. In contrast, when both genes were inhibited simultaneously, some lines developed only a few, small and distorted tubers. Analysis of metabolites revealed altered amounts of sugar intermediates, and a substantial increase in ADP-glucose content of the StpsPPase lines. Increased amounts of intermediates of vitamin C biosynthesis were also observed. This study suggests that hydrolysis of pyrophosphate (PPi) by action of a psPPase is vital for functional starch accumulation in potato tubers and that no additional mechanism for consuming, hydrolysing, or exporting PPi exists in the studied tissue. Additionally, it demonstrates that functional PPi hydrolysis in combination with efficient ATP import is essential for tuber formation and development.
机译:通过单独和同时下调相应内源基因,评估了质体可溶性无机焦磷酸酶(psPPase)和ATP / ADP转运子(NTT)对于马铃薯(马铃薯)的淀粉组成和块茎形成的重要性。转基因品系的淀粉和直链淀粉含量要低得多,颗粒大小要小得多,StpsPPase的下调产生最明显的作用。 StpsPPase或StNTT的单基因下调导致单株块茎数量增加和鲜重更高。相反,当两个基因同时被抑制时,一些品系只形成了几个小的,扭曲的块茎。代谢物分析表明,糖中间物的量发生了变化,StpsPPase品系的ADP葡萄糖含量大幅增加。还观察到维生素C生物合成中间体的数量增加。这项研究表明,通过psPPase的作用,焦磷酸盐(PPi)的水解对于马铃薯块茎中功能性淀粉的积累至关重要,并且在研究的组织中不存在其他消耗,水解或输出PPi的机制。此外,它表明功能性PPi水解结合有效的ATP导入对于块茎的形成和发育至关重要。

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