Fan Weijuan, Zhang Yandi, Wu Yinliang, Zhou Wenzhi, Yang Jun, Yuan Ling, Zhang Peng, Wang Hongxia
National Key Laboratory of Plant Molecular Genetics, CAS Center for Excellence in Molecular Plant Sciences, Chinese Academy of Sciences, Shanghai, 200032, China.
Shanghai Key Laboratory of Plant Functional Genomics and Resources, Shanghai Chenshan Plant Science Research Center, Chinese Academy of Sciences, Shanghai, 201602, China.
Hortic Res. 2021 Feb 1;8(1):20. doi: 10.1038/s41438-020-00454-2.
Storage roots of sweet potato are important sink organs for photoassimilates and energy, and carbohydrate metabolism in storage roots affects yield and starch production. Our previous study showed that sweet potato H-pyrophosphatase (IbVP1) plays a vital role in mitigating iron deficiency and positively controls fibrous root growth. However, its roles in regulating starch production in storage roots have not been investigated. In this study, we found that IbVP1 overexpression in sweet potato improved the photosynthesis ability of and sucrose content in source leaves and increased both the starch content in and total yield of sink tissues. Using C-labeled sucrose feeding, we determined that IbVP1 overexpression promotes phloem loading and sucrose long-distance transport and enhances Pi-use efficiency. In sweet potato plants overexpressing IbVP1, the expression levels of starch biosynthesis pathway genes, especially AGPase and GBSSI, were upregulated, leading to changes in the structure, composition, and physicochemical properties of stored starch. Our study shows that the IbVP1 gene plays an important role in regulating starch metabolism in sweet potato. Application of the VP1 gene in genetic engineering of sweet potato cultivars may allow the improvement of starch production and yield under stress or nutrient-limited conditions.
甘薯的贮藏根是光合产物和能量的重要库器官,贮藏根中的碳水化合物代谢影响产量和淀粉生产。我们之前的研究表明,甘薯H - 焦磷酸酶(IbVP1)在缓解缺铁方面起着至关重要的作用,并正向调控须根生长。然而,其在调控贮藏根淀粉生产中的作用尚未得到研究。在本研究中,我们发现甘薯中IbVP1的过表达提高了源叶的光合能力和蔗糖含量,并增加了库组织中的淀粉含量和总产量。通过使用¹⁴C标记的蔗糖饲喂,我们确定IbVP1的过表达促进韧皮部装载和蔗糖长距离运输,并提高磷利用效率。在过表达IbVP1的甘薯植株中,淀粉生物合成途径基因,尤其是AGPase和GBSSI的表达水平上调,导致贮藏淀粉的结构、组成和理化性质发生变化。我们的研究表明,IbVP1基因在调控甘薯淀粉代谢中起重要作用。将VP1基因应用于甘薯品种的基因工程中,可能有助于在胁迫或营养受限条件下提高淀粉产量和总产量。