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Mechanism of High Photosynthetic Capacity in BC2F4 Lines Derived from a Cross between Oryza sativa and Wild Relatives O. rufipogon

机译:水稻和野生亲缘种杂交后代BC2F4品系高光合能力的机理

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We found that several BC2F4 lines had high leaf photosynthetic rates under light-saturated and ambient CO2 conditions. These lines are progenies of BC2F1 plants with high photosynthetic capacities which were generated by backcrossing between Oryza rufipogon (W630) and O. sativa cv. Nipponbare, as a recurrent parent. Some photosynthetic characteristics of the BC2F4 lines were investigated to identify the factors increasing photosynthetic rates. Photosynthetic rates of these lines under light-saturated conditions at 50 to 700 ppm CO2 concentrations were higher than those in Nipponbare. The estimated-maximum photosynthetic rates under light-saturated and CO2-saturated conditions in BC2F4 lines were also higher than that in Nipponbare. The photosynthetic rate under light-saturated and ambient CO2 conditions was positively correlated with the carboxylation efficiency as an indicator of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) activity in vivo rather than stomatal conductance. Initial and total Rubisco activities in vitro tended to be higher in the BC2F4 lines than in Nipponbare. The content of active Rubisco calculated from the activation state of Rubisco was also higher in the BC2F4 lines than in Nipponbare. These results suggest that high photosynthetic capacities of BC2F1 plants can be maintained high in their progenies and high photosynthetic rates under light-saturated and ambient CO2 conditions in the BC2F4 lines are achieved mainly by the high activity of Rubisco due to the high active Rubisco content.
机译:我们发现在光饱和和环境CO2条件下,几条BC2F4品系具有较高的叶片光合速率。这些品系是具有高光合作用能力的BC2F1植物的后代,该植物是通过Oryza rufipogon(W630)和O. sativa cv之间的回交产生的。 Nipponbare,作为经常性的父母。研究了BC2F4品系的一些光合特性,以确定增加光合速率的因素。在光饱和条件下,CO2浓度为50至700 ppm时,这些品系的光合速率高于日本晴。 BC2F4品系在光饱和和CO2饱和条件下的估计最大光合速率也高于日本晴。在光饱和和环境CO2条件下的光合作用速率与羧化效率正相关,羧化效率是体内核糖1,5-双磷酸羧化酶/加氧酶(Rubisco)活性的指标,而不是气孔导度。 BC2F4品系的体外初始和总Rubisco活性往往高于日本晴。由Rubisco的活化态计算的活性Rubisco的含量在BC2F4品系中也比在日本晴中更高。这些结果表明,BC2F1植物的高光合能力可以在其子代中保持高水平,并且在BC2F4品系的光饱和和环境CO2条件下,高光合速率主要是由于Rubisco的高活性,因为其具有较高的活性Rubisco含量。

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