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首页> 外文期刊>日本作物学会紀事 >Analysis of the photosynthetic characteristics of the high-yielding rice cultivar Takanari.
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Analysis of the photosynthetic characteristics of the high-yielding rice cultivar Takanari.

机译:高产水稻品种Takanari的光合特性分析。

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摘要

The CO2 exchange rate, which affects the net assimilation rate (NAR), was studied in rice cv. Takanari (high yielding) and Nipponbare. Takanari was remarkably higher in CO2 exchange rate than Nipponbare during diurnal courses, during leaf senescenceor at different leaf positions. It was suggested that the higher NAR for Takanari was due to not only better light-intercepting characteristics but also a higher CO2 exchange rate. The reasons for these differences in photosynthesis between the 2 cultivars were examined. It was found that the CO2 exchange rates for Takanari maintained a higher level due to its higher diffusive conductance during diurnal courses, and due to both its higher diffusive conductance and higher photosynthetic capacity duringleaf senescence. Further investigation indicated that the higher photosynthetic capacity for Takanari was mainly due to a higher apparent carboxylation efficiency and ribulose-bisphosphate carboxylase content during leaf senescence.
机译:在水稻CV中研究了影响净同化率(NAR)的二氧化碳汇率。 Takanari(高产)和Nipponbare。 在不同叶子阵地的叶片赛季期间,Takanari在昼夜课程期间比Nipponbare汇率比Nipponbare更高。 有人建议,Takanari的较高NAR是由于不仅更好的光拦截特征,而且是较高的二氧化碳汇率。 检查了两种品种光合作用差异的原因。 结果发现,由于其在昼夜课程中的较高的扩散电导下,Takanari的CO2汇率保持了更高的水平,并且由于其较高的扩散率和较高的光合容量衰老。 进一步调查表明,Takanari的光合能力较高主要是由于叶片衰老期间表达羧化效率和核苷酸二磷酸羧化酶含量较高。

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