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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Study of cell-differentiation and assembly of photosynthetic proteins during greening of etiolated Zea mays leaves using confocal fluorescence microspectroscopy at liquid-nitrogen temperature
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Study of cell-differentiation and assembly of photosynthetic proteins during greening of etiolated Zea mays leaves using confocal fluorescence microspectroscopy at liquid-nitrogen temperature

机译:液氮温度下共焦荧光显微技术研究黄化玉米叶片绿化过程中光合蛋白的细胞分化和组装

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Fluorescence microspectroscopy observations were used to study the processes of cell differentiation and assemblies of photosynthesis proteins in Zea mays leaves under the greening process. The observations were done at 78 K by setting the sample in a cryostat to avoid any undesired progress of the greening process during the measurements. The lateral and axial spatial resolutions of the system were 0.64 μm and 4.4 μm, respectively. The study revealed the spatial distributions of protochlorophyllide (PChld) in both the 632-nm-emitting and 655-nm-emitting forms within etiolated Zea mays leaves. The sizes of the fluorescence spots attributed to the former were larger than those of the latter, validating the assignment of the former and latter to the prothylakoid and prolamellar bodies, respectively. In vivo microspectroscopy observations of mature Zea mays leaves confirmed the different photosystem II (PS I)/photosystem I (PS II) ratio between the bundle sheath (BS) and mesophyll (MS) cells, which is specific for C4-plants. The BS cells in Zea mays leaves 1 h after the initiation of the greening process tended to show fluorescence spectra at shorter wavelength side (at around 679 nm) than the MS cells (at around 682 nm). The 679-nm-emitting chlorophyll-a form observed mainly in the BS cells was attributed to putative precursor complexes to PS I. The BS cells under 3-h greening showed higher relative intensities of the PS I fluorescence band at around 735 nm, suggesting the reduced PS II amount in the BS cells in this greening stage.
机译:荧光显微镜观察被用来研究绿化过程中玉米叶的细胞分化和光合作用蛋白的组装过程。通过将样品置于低温恒温器中以在测量过程中避免任何不希望的绿化过程进展,在78 K下进行了观察。系统的横向和轴向空间分辨率分别为0.64μm和4.4μm。这项研究揭示了原化叶绿素叶中原叶绿素内酯(PChld)的空间分布以发射632 nm和发射655 nm的形式。归因于前者的荧光点的大小大于后者的荧光点的大小,这证实了前者和后者分别分配给前类囊体和薄片体。玉米成熟叶的体内显微观察证实了束鞘(BS)和叶肉(MS)细胞之间光系统II(PS I)/光系统I(PS II)的比率不同,这对C4植物是特定的。绿化过程开始后1小时,玉米叶中的BS细胞倾向于在比MS细胞(大约682 nm)更短的波长侧(大约679 nm)处显示荧光光谱。主要在BS细胞中观察到的发射679 nm的叶绿素a形式归因于PS I的推定前体复合物。经过3 h绿化的BS细胞在735 nm附近显示出较高的PS I荧光带相对强度,表明在这个绿化阶段,减少了BS细胞中PS II的量。

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