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Physiological and photosynthetic characteristics of indica Hang2 expressing the sugarcane PEPC gene

机译:表达甘蔗PEPC基因的Hang稻Hang2的生理和光合特性

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摘要

Phosphoenolpyruvate carboxylase (PEPC) is known to play a key role in the initial fixation of CO2 in C4 photosynthesis. The PEPC gene from sugarcane (a C4 plant) was introduced into indica rice (Hang2), a process mediated by Agrobacterium tumefaciens. Integration patterns and copy numbers of the gene was confirmed by DNA blot analysis. RT-PCR and western blotting results showed that the PEPC gene was expressed at both the mRNA and protein levels in the transgenic lines. Real-time PCR results indicated that expression of the sugarcane PEPC gene occurred mostly in green tissues and changed under high temperature and drought stress. All transgenic lines showed higher PEPC enzyme activities compared to the untransformed controls, with the highest activity (11.1 times higher than the controls) being observed in the transgenic line, T34. The transgenic lines also exhibited higher photosynthetic rates. The highest photosynthetic rate was observed in the transgenic line, T54 (22.3 mu mol m(-2) s(-1); 24.6 % higher than that in non-transgenic plants) under high-temperature conditions. Furthermore, the filled grain and total grain numbers for transgenic lines were higher than those for non-transgenic plants, but the grain filling (%) and 1,000-grain weights of all transgenic lines remained unchanged. We concluded that over-expression of the PEPC gene from sugarcane in indica rice (Hang2) resulted in higher PEPC enzyme activities and higher photosynthesis rates under high-temperature conditions.
机译:磷酸烯醇丙酮酸羧化酶(PEPC)在C4光合作用的CO2初始固定中起关键作用。将来自甘蔗(一种C4植物)的PEPC基因引入到rice稻(Hang2)中,这是由根癌农杆菌介导的过程。通过DNA印迹分析确认基因的整合模式和拷贝数。 RT-PCR和western blotting结果表明,PEPC基因在转基因株系的mRNA和蛋白水平均表达。实时PCR结果表明,甘蔗PEPC基因的表达主要发生在绿色组织中,并在高温和干旱胁迫下发生改变。与未转化的对照相比,所有转基因品系均显示出更高的PEPC酶活性,在转基因品系T34中观察到最高的活性(比对照高11.1倍)。转基因品系还表现出更高的光合速率。在高温条件下,在转基因株系T54中观察到最高的光合速率(22.3μmol m(-2)s(-1);比非转基因植物高24.6%)。此外,转基因品系的灌浆籽粒和总谷粒数量高于非转基因植物,但所有转基因品系的籽粒充实率(%)和1,000粒重均保持不变。我们得出的结论是,在高温条件下,in米中的甘蔗中的PEPC基因过表达(Hang2)导致较高的PEPC酶活性和较高的光合作用速率。

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