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A synthetic tuber-specific and cold-induced promoter is applicable in controlling potato cold-induced sweetening

机译:合成的块茎特异性冷诱导启动子可用于控制马铃薯冷诱导的甜味

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摘要

Cold-induced sweetening (CIS) in potato seriously hinders the potato processing industry. It could be of great value for genetic improvement of potato CIS to have a target gene specifically expressed in cold stored tubers. In this study, we used a synthetic promoter, pCL, in potato transformation to drive an antisense expression of StvacINV1, the acid vacuolar invertase gene from Solanum tuberosum. The measurements of expression and enzyme activity of target gene showed that pCL promoter could efficiently govern target gene to express specifically and remarkably regulate the activity of acid vacuolar invertase in potato tubers at low temperature, furthermore, it had almost no effect in other tissues or the tubers under room temperature. The transgenic tubers showed decrease in reducing sugar content during storage at low temperature and acceptable chip color without significant changes observed in plant morphology and tuberization between the nontransgenic and transgenic lines. This tuber-specific and cold-induced feature could maximally reduce the background expression of the target gene which might bring about potential negative or detrimental effects to plant development. The synthetic promoter confirmed here would be optimal for gene function research in potato tubers in response to low temperature.
机译:马铃薯中的冷诱导甜味(CIS)严重阻碍了马铃薯加工业。具有在冷藏块茎中特异性表达的靶基因对于马铃薯CIS的遗传改良具有巨大的价值。在这项研究中,我们在马铃薯转化中使用了合成启动子pCL来驱动反义表达StvacINV1,StvacINV1是马铃薯的酸性液泡转化酶基因。对靶基因表达和酶活性的测定表明,pCL启动子可以有效地调控靶基因,从而在低温下显着地调节马铃薯块茎中酸性液泡转化酶的活性,而且在其他组织或组织中几乎没有作用。块茎在室温下。转基因块茎显示出在低温储存期间降低的糖含量降低和可接受的木片颜色,而在非转基因和转基因品系之间的植物形态和块茎中未观察到显着变化。这种块茎特异性和冷诱导的特征可以最大程度地减少靶基因的背景表达,这可能对植物发育产生潜在的负面或不利影响。此处证实的合成启动子将是马铃薯块茎响应低温的基因功能研究的最佳选择。

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