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Variation of the Nuclear, Subnuclear and Chromosomal Flavanol Deposition in Hemlock and Rye

机译:铁杉和黑麦中核,亚核和染色体黄烷醇沉积的变化

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Nuclei of hemlock (Tsuga canadensis and Tsuga canadensis var. nana) were investigated for the presence of flavanols. Histochemical staining with p-dimethylaminocinnamaldehyde proved to be a highly valuable method yielding a bright blue flavanol coloration for nuclei. There was a significant variation in flavanol deposition (1) among nuclei, (2) at the subnuclear level and also (3) along the chromosomes during mitosis. The presence of flavanols in nucleoli could not be established probably because they were too small, measuring less than 1 μm in diameter. In contrast to Tsuga, the cells and nuclei of rootlets from rye (Secale cereale) were totally devoid of natural flavanols. However, externally added flavanols, catechin and epicatechin, were bound to the rye nuclei, while the rather large nucleoli failed to associate with the flavanols. The strong sink activity of nucleoplasm and chromosomes for flavanols in Tsuga and Secale indicates a process which is apparently widespread even in distantly related plant species. Variations in chromatin-associated flavanols could to some extent be induced by acetylation/deacetylation of histones, as confirmed in the present study by means of UVVIS spectroscopic titrations of histone sulphate and chemically acetylated histone sulphate.
机译:研究了铁杉(加拿大春松和加拿大加拿大楠的变种)核中黄烷醇的存在。对-二甲基氨基肉桂醛的组织化学染色被证明是一种非常有价值的方法,可为核产生明亮的蓝色黄烷醇着色。黄烷醇沉积(1)在核之间,(2)在亚核水平以及(3)在有丝分裂过程中沿着染色体存在显着变化。无法确定核仁中黄烷醇的存在,可能是因为它们太小,直径小于1μm。与Tsuga相比,黑麦(Secale graine)的小根的细胞和核完全不含天然黄烷醇。然而,外部添加的黄烷醇,儿茶素和表儿茶素与黑麦细胞核结合,而相当大的核仁无法与黄烷醇缔合。 Tsuga和Secale中黄烷醇的核仁和染色体强烈的沉陷活性表明该过程显然甚至在远缘相关的植物物种中也很普遍。如本研究中通过组蛋白硫酸盐和化学乙酰化组蛋白硫酸盐的UVVIS光谱滴定所证实的,组蛋白的乙酰化/去乙酰化可以在一定程度上引起染色质相关黄烷醇的变化。

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