Lott J N, Greenwood J S, Vollmer C M
Department of Biology, McMaster University, Hamilton, Ontario, Canada L8S 4K1.
Plant Physiol. 1978 Jun;61(6):984-8. doi: 10.1104/pp.61.6.984.
The seeds of Cucurbita maxima contain protein bodies with electrondense globoid crystals. Because of their density globoid crystals are ideal material for energy-dispersive x-ray (EDX) analysis studies of elemental composition. Fixation trials were carried out to test globoid crystal extraction during glutaraldehyde fixation, water washing, and ethanol dehydration. Glutaraldehyde fixation without subsequent washing or dehydration alone produced no significant changes in elemental composition of cotyledon globoid crystals. If glutaraldehyde fixation was followed by water washes or ethanol dehydration there was some loss of the major globoid crystal elements but the relative percentages of the elements P, K, Ca, and Mg remained relatively unchanged. In this paper results of a study of the P, K, Mg, and Ca content of globoid crystals in different tissues of squash embryos are presented. The globoid crystals in the radicle were found to be the least dense in the embryo. Globoid crystals from all embryo regions contained P, K, and Mg. In the various embryo regions P and Mg maintained relatively constant proportions of the globoid crystal composition while K and Ca varied. Of particular significance is the distribution of Ca which is generally an immobile element. Calcium was found in highest amounts in the globoid crystals of the radicle and stem regions while globoid crystals in much of the cotyledon contained little, if any, Ca. The Ca storage thus seems to be spatially arranged in a manner that would aid early growth of the root-shoot axis.
南瓜种子含有带有电子致密球状晶体的蛋白体。由于其密度,球状晶体是用于能量色散X射线(EDX)元素组成分析研究的理想材料。进行了固定试验,以测试在戊二醛固定、水洗和乙醇脱水过程中球状晶体的提取情况。仅进行戊二醛固定而不进行后续洗涤或脱水,子叶球状晶体的元素组成没有显著变化。如果在戊二醛固定后进行水洗或乙醇脱水,主要球状晶体元素会有一些损失,但P、K、Ca和Mg元素的相对百分比保持相对不变。本文介绍了对南瓜胚胎不同组织中球状晶体的P、K、Mg和Ca含量的研究结果。发现胚根中的球状晶体在胚胎中密度最小。所有胚胎区域的球状晶体都含有P、K和Mg。在各个胚胎区域,P和Mg在球状晶体组成中保持相对恒定的比例,而K和Ca则有所变化。特别重要的是Ca的分布,Ca通常是一种不可移动的元素。在胚根和茎区域的球状晶体中发现Ca含量最高,而大部分子叶中的球状晶体几乎不含Ca(如果有的话)。因此,Ca的储存似乎在空间上以一种有助于根 - 茎轴早期生长的方式进行排列。