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Elevated Sucrose-phosphate Synthase Activity in Source Leaves of Potato Plants Transrformed with the Maize SPS Gene

机译:用玉米SPS基因转换马铃薯植物的源叶中的蔗糖 - 磷酸盐合成酶活性升高

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摘要

Sucrose-phosphate synthase (SPS) activity in source leaves of potato plants (Solanum tuberosum cv. May Queen) transformed with maize SPS gene under the control of a modified cauliflower mosaic virus (CaMV) 35S promoter was two to four times higher than the endogenous activity found in the control. A negative correlation (r = 0.82) between SPS activity and the ratio of starch to sucrose was observed. There were no significant changes in starch synthesis enzyme (ADGPase and QE) activities in the leaves. Photosynthesis did not differ significantly between control and transgenic lines. Aboveground (leaves and stem) and belowground (tuber) dry matter in three transgenic lines harvested during tuber development increased up to 15% and 20%, respectively, indicating that increased capacity for sucrose synthesis in potato leaves may lead to favorable growth. Moreover, the activity of this enzyme in source leaves of two transgenic potatoes increased when reaction temperature was elevated from 15°C to 35°3, a response similar to that of SPS in maize. Since temperature is a limiting factor for growth of potato, the transgenic plants will be useful for future studies under higher temperature growth conditions.
机译:蔗糖磷酸合酶(SPS)在马铃薯植物的源叶子玉米转化的活性(马铃薯栽培品种五月皇后)改性花椰菜花叶病毒(CaMV)35S启动子的控制比内源性更高是两到四倍下SPS基因活动在控制中。观察到的SPS活性和淀粉蔗糖的比例之间的负相关(r = 0.82)。有淀粉合成酶的无显著变化(ADGPase和QE)活动的叶子。光合作用不是控制和转基因株系之间显著不同。地上(叶和茎)和地下(块茎)干物质在块茎发育过程中收获的3个基因品系分别增加了15%和20%,表明在马铃薯叶蔗糖合成增加的容量可能会导致有利的生长。此外,当反应温度从15℃升高到35℃3,在玉米类似于SPS的响应以两种转基因马铃薯的叶源这种酶的活性增加。由于温度对马铃薯生长的限制因素,在转基因植物将是更高的温度生长条件下,未来的研究中。

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