首页> 外文期刊>Journal of Structural Biology >Cytological and ultrastructural changes induced in anther and isolated-microspore cultures in barley: Fe deposits in isolated-microspore cultures
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Cytological and ultrastructural changes induced in anther and isolated-microspore cultures in barley: Fe deposits in isolated-microspore cultures

机译:大麦花药和小孢子培养物中诱导的细胞学和超微结构变化:小孢子培养物中的铁沉积

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To gain further insight into the role played by sporophytic anther tissues in the early stages of the androgenic process, we have compared the cytology and ultrastructure of barley embryogenic pollen grains obtained by anther culture with those obtained by isolated-microspore culture. The microspores behaved similarly in both culture systems but ultrastructural studies detected a significant difference: the presence of electron-dense deposits on the intine of embryogenic pollen grains generated by isolated-microspore culture compared to their absence in grains generated by anther culture. To discover the nature of these deposits, we applied proteinase K and EDTA treatments to ultrathin sections. We also subjected the deposits to X-ray microanalysis and found that they contained iron. Anthers and isolated microspores were cultured in media containing different concentrations of iron so as to evaluate the presence of these deposits on the intine. Deposits were not found in anther cultures at any iron concentration used or in microspore cultures when concentrations were lower than 40mg/L. The Fe deposits on the intine appear to derive from an excess of Fe in the isolated-microspore culture medium which, if allowed to pass through the cell wall, could well be toxic to the embryogenic development of the microspores.
机译:为了进一步了解孢子性花药组织在雄激素形成过程早期的作用,我们将通过花药培养获得的大麦胚发生花粉粒与通过分离小孢子培养获得的花粉粒的细胞学和超微结构进行了比较。在两种培养系统中,微孢子的行为相似,但是超微结构研究发现了一个显着的差异:与通过花药培养产生的谷粒相比,分离的微孢子培养产生的胚性花粉粒的大头上存在电子致密沉积。为了发现这些沉积物的性质,我们将蛋白酶K和EDTA处理应用于超薄切片。我们还对沉积物进行了X射线微分析,发现它们含有铁。将花药和分离出的小孢子在含有不同浓度铁的培养基中培养,以评估这些沉积物在大肠菌中的存在。浓度低于40mg / L的任何铁浓度的花药培养物或小孢子培养物中均未发现沉积物。铟上的铁沉积物似乎来自分离的小孢子培养基中过量的铁,如果允许其穿过细胞壁,则很可能对小孢子的胚胎发育有毒。

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