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Research on the ultrafast fluorescence property of thylakoid membranes of the wild-type and mutant rice

机译:野生型和突变型水稻类囊体膜的超快荧光特性研究

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摘要

A high yielding rice variety mutant (Oryza sativa L., Zhenhui 249) with low chlorophyll b (Chl b) has been discovered in natural fields. It has a quality character controlled by a pair of recessive genes (nuclear gene). The partial loss of Chi b in content affects the efficiency of light harvest in a light harvest complex (LHC), thus producing the difference of the exciting energy transfer and the efficiency of photochemistry conversion between the mutant and wild-type rice in photosynthetic unit. The efficiency of utilizing light energy is higher in the mutant than that in the wild-type rice relatively. For further discussion of the above-mentioned difference and learning about the mechanism of the increase in the photochemical efficiency of the mutant, the pico-second resolution fluorescence spectrum measurement with delay-frame-scanning single photon counting technique is adopted. Thylakoid membranes of the mutant and the wild-type rice are excited by an Ar~+ laser with a pulse width of 120 ps, repetition rate of 4 MHz and wavelength of 514 nm. Compared with the time and spectrum property of exciting fluorescence, conclusions of those ultrafast dynamic experiments are: 1) The speeds of the exciting energy transferred in photo-system I are faster than that in photo-system Ⅱ in both samples. 2) The speeds of the exciting energy transfer of mutant sample are faster than those of the wild-type. This might be one of the major reasons why the efficiency of photosynthesis is higher in mutant than that in the wild-type rice.
机译:在自然领域中已经发现了一种具有低叶绿素b(Chl b)的高产水稻变种(Oryza sativa L.,Zhenhui 249)。它具有由一对隐性基因(核基因)控制的质量特征。 Chi b含量的部分损失会影响光收获复合物(LHC)中光收获的效率,从而在光合作用单元中的突变型和野生型水稻之间产生激发能转移和光化学转化效率的差异。相对于野生型水稻,该突变体利用光能的效率较高。为了进一步讨论上述差异并了解突变体的光化学效率增加的机理,采用延迟帧扫描单光子计数技术进行皮秒分辨率荧光光谱测量。突变体和野生稻的类囊体膜被Ar〜+激光激发,脉冲宽度为120 ps,重复频率为4 MHz,波长为514 nm。与激发荧光的时间和光谱性质相比,这些超快动态实验的结论是:1)在两个样品中,在光系统I中传递的激发能量的速度都比在光系统II中传递的速度更快。 2)突变体样品的激发能量转移速度比野生型样品快。这可能是突变体中光合作用效率高于野生型水稻的主要原因之一。

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