首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Study of the changes in insoluble polysaccharides during pollen development in rice (Oryza sativa L.) by microscopic multispectral imaging
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Study of the changes in insoluble polysaccharides during pollen development in rice (Oryza sativa L.) by microscopic multispectral imaging

机译:显微多光谱成像技术研究水稻花粉发育过程中不溶性多糖的变化

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Multispectral analysis combined with the Periodic Acid-Schiff method was used to investigate cytological features of insoluble polysaccharides and changes in total insoluble polysaccharide content (TPC) during pollen development in rice, including four cytoplasmic male sterility lines (MSLs) and their corresponding fertility-maintaining lines (FMLs). The multispectral curves of the relative transmittance value (RTV) and the images of developing pollen cells were obtained across a range of successive wavelengths (400-720 nm). A minimum RTV was found near 550 nm indicating an absorption peak of the TPC. Thus, the TPC was measured using the RTV of 550 nm. In the four FMLs, the minimum TPC of developing pollen cells occurred at the late microspore stage, while the maximum TPC occurred at the mature pollen grain stage. The TPC levels of pollen cells were significantly higher in the four FMLs than in their corresponding MSLs during and after pollen abortion. Notably, a steep decrease of multispectral curves at 420 nm appeared before the occurrence of abortion, implying a marker associated with pollen abortion in rice. Our results will be helpful for exploring the changes in TPC during pollen ontogenesis in rice and provide a novel method for the study of bio-macromolecules.
机译:多光谱分析结合高碘酸-席夫法研究水稻中花粉发育过程中不溶性多糖的细胞学特征和总不溶性多糖含量(TPC)的变化,包括四个胞质雄性不育系(MSL)及其相应的育性维持线(FML)。在一系列连续波长(400-720 nm)范围内获得了相对透射率值(RTV)的多光谱曲线和正在发育的花粉细胞的图像。在550 nm附近发现最小RTV,表明TPC的吸收峰。因此,使用550 nm的RTV测量了TPC。在这四个FML中,发育中的花粉细胞的最小TPC发生在小孢子晚期,而最大TPC发生在成熟的花粉粒阶段。在花粉流产期间和之后,四种FML中花粉细胞的TPC水平显着高于其相应的MSL。值得注意的是,在流产发生之前,在420 nm处出现了多光谱曲线的急剧下降,这意味着水稻中与花粉流产相关的标记。我们的研究结果将有助于探索水稻花粉本体发育过程中TPC的变化,为生物大分子的研究提供一种新的方法。

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