首页> 美国卫生研究院文献>Plant Physiology >Modification of Photosystem I Light Harvesting of Bundle-Sheath Chloroplasts Occurred during the Evolution of NADP-Malic Enzyme C4 Photosynthesis.
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Modification of Photosystem I Light Harvesting of Bundle-Sheath Chloroplasts Occurred during the Evolution of NADP-Malic Enzyme C4 Photosynthesis.

机译:NADP-苹果酸酶C4光合作用演变过程中发生的束鞘叶绿体光系统I收光的修饰。

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摘要

Low-temperature emission spectra and excitation spectra for chlorophyll fluorescence were recorded from leaves of species of the genus Flaveria (Asteraceae) with C3, C3-C4-intermediate, C4-like, and C4 photosynthesis. Among the latter two groups, high chlorophyll b absorption was observed in excitation spectra for photosystem I (PSI) fluorescence. By comparing leaf data with those from isolated chloroplast fractions, the high chlorophyll b absorption was attributed to the specific properties of the bundle-sheath chloroplasts in leaves from C4 plants. The deconvolution of the PSI excitation spectra and the use of a model revealed that the contribution of photosystem II absorption to the functional antenna of PSI was markedly increased in leaves from three of the five C4-like and C4 species investigated in detail. The two other species exhibited normal, C3-like light-harvesting properties of PSI. The former species are known for efficient carbon assimilation, the latter for decreased efficiencies of carbon assimilation. It is concluded that photosystem II becomes a substantial part of the functional PSI antenna late in the evolution of C4 photosynthesis, and that the composite antenna optimizes the light-harvesting of PSI in bundle-sheath chloroplasts to meet the energy requirements of C4 photosynthesis.
机译:从具有C3,C3-C4中间体,C4样和C4光合作用的黄Fla属(菊科)种的叶片中记录了叶绿素荧光的低温发射光谱和激发光谱。在后两组中,在光系统I(PSI)荧光的激发光谱中观察到高的叶绿素b吸收。通过将叶片数据与来自分离的叶绿体级分的数据进行比较,叶绿素b的高吸收归因于C4植物叶片中的束鞘叶绿体的特殊特性。对PSI激发光谱的反卷积和模型的使用表明,在详细研究的5个C4类和C4类物种中,有3个物种的叶片中光系统II吸收对PSI功能天线的贡献显着增加。另外两个物种表现出正常的,类似C3的PSI集光特性。前者因有效的碳同化作用而闻名,后者因降低了碳同化效率而闻名。结论是,在C4光合作用的发展后期,光系统II成为功能性PSI天线的重要组成部分,并且复合天线优化了束鞘叶绿体中PSI的光捕获,以满足C4光合作用的能量需求。

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