Walthall E D, Brady T
Cell Differ. 1986 Jan;18(1):37-44. doi: 10.1016/0045-6039(86)90033-3.
The role of the suspensor in the early development of the dicot embryo has been described as merely an anchor or, conversely, as the major route of nutrients into the embryo. In order to further elucidate the role of the suspensor we have examined protein synthesis in early 0.2-mm and late heart stage 0.5-mm Phaseolus vulgaris (var. Taylor's Horticultural) embryos in tissue culture. Protein synthesis was examined in embryos and suspensors. Our results showed that in 0.2-mm embryos virtually all protein synthesis was dependent on an attached suspensor. Maximum protein synthesis in 0.5-mm embryos was observed when embryos were cultured attached to the suspensor. The levels were moderately decreased when the embryo was cultured detached from or without the suspensor. Gibberellic acid at 10(-6) to 10(-7) M elicited the same protein diversity and greater [35S]methionine incorporation than did the attached suspensor in 0.2-mm embryos. Embryos of 0.5 mm did not appear to be differentially responsive to various gibberellin concentrations.
胚柄在双子叶植物胚胎早期发育中的作用,被描述为仅仅是一个固定结构,或者相反,被描述为营养物质进入胚胎的主要途径。为了进一步阐明胚柄的作用,我们研究了组织培养中早期0.2毫米和晚期心形期0.5毫米菜豆(变种泰勒园艺种)胚胎中的蛋白质合成。在胚胎和胚柄中检测了蛋白质合成。我们的结果表明,在0.2毫米的胚胎中,几乎所有的蛋白质合成都依赖于附着的胚柄。当0.5毫米的胚胎附着在胚柄上培养时,观察到最大蛋白质合成。当胚胎与胚柄分离培养或没有胚柄培养时,蛋白质合成水平适度下降。在0.2毫米的胚胎中,10^(-6)至10^(-7) M的赤霉素引发的蛋白质多样性与附着的胚柄相同,且[35S]甲硫氨酸掺入量更高。0.5毫米的胚胎似乎对不同浓度的赤霉素没有差异反应。