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Characteristics of CO2 exchange rate of flag leaves in a Vietnamese hybrid rice variety and its parents during grain filling stage.

机译:越南杂交水稻及其亲本灌浆期旗叶CO 2 交换速率的特征

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In the present study, the characteristics of the CO2 exchange rate (CER) of flag leaves during the grain filling stage were compared between a Vietnamese hybrid rice cultivar Vietlai 20 (VL20) and its parent cultivars, the female line 103S and the male line R20. The CER and the related parameters were measured in the morning (8:00-10:00) and in the afternoon (14:00-16:00) at 3 days before heading (DBH), and at 7 and 17 days after heading (DAH). The results showed that there was no significant difference in the CER of flag leaves among the three cultivars at 3 DBH, while at 17 DAH, VL20 exhibited a higher CER than the parents both in the morning and afternoon. Stomatal conductance (Gs) decreased considerably in the afternoon, compared to that in the morning at 7 and 17 DAH for all the cultivars. In fact, VL20 showed lower Gs than the parents at 17 DAH, indicating that the CER was negatively affected by the stomatal behavior. The changes in the mesophyll conductance (Gm), as an indicator of CO2 fixation ability, were similar to those in CER in all the cultivars at the three stages. In particular, VL20 always exhibited higher Gm than the male parent R20 both in the morning and afternoon, which is consistent with the higher nitrogen content in the flag leaves. These results suggested that the high mesophyll function could contribute to the high photosynthetic potential of flag leaves in VL20 during the grain filling stage despite of the stomatal limitation.
机译:在本研究中,比较了越南杂交水稻品种Vietlai 20(VL20)和其父本品种Vietlai 20在灌浆期的旗叶CO 2 交换率(CER)的特征。阴线103S和阳线R20。出港前(DBH)前3天以及出港后7天和17天的上午(8:00-10:00)和下午(14:00-16:00)分别测量CER和相关参数(DAH)。结果表明,在3 DBH下,三个品种的旗叶CER没有显着差异,而在DAH 17 DA,早晚和下午,VL20的CER均高于亲本。与早晨所有品种的DAH 7和17相比,下午气孔导度(Gs)均显着下降。事实上,VL20在17 DAH时显示出比其父母更低的Gs,表明CER受气孔行为的负面影响。在三个阶段,所有品种的叶肉电导(Gm)的变化均与CER的变化相似,作为CO 2 固定能力的指标。特别是,VL20在上午和下午总是表现出比雄性亲本R20高的Gm,这与旗叶中较高的氮含量相一致。这些结果表明,尽管气孔受到限制,但高的叶肉功能仍可以促进VL20灌浆期旗叶的高光合潜力。

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