Miranda Kildare, Docampo Roberto, Grillo Orlando, de Souza Wanderley
Laboratório de Ultraestrutura Celular Hertha Meyer, Instituto de Biofísica Carlos Chagas Filho, Univesidade Federal do Rio de Janeiro, Av Brigadeiro Trompovski, s/n, Bloco G, Cidade Universitária, 21949-900, Rio de Janeiro, RJ, Brazil.
Protist. 2004 Dec;155(4):395-405. doi: 10.1078/1434461042650361.
The elemental composition and stoichiometric profile of elements present in acidocalcisomes of different genera of the Trypanosomatidae family (insect, plant, and mammalian parasites) submitted to parallel cultivation conditions were studied. X-ray microanalysis using transmission electron microscopy in conjunction with a morphometric approach was used to investigate the elemental content, number, distribution, and volumetric density of acidocalcisomes of different species. Microanalytical data showed that the different parasites possess the same elemental composition (oxygen, sodium, magnesium, phosphorus, calcium, iron, and zinc) in their acidocalcisomes. However, the relative concentrations of the elements varied among species, but not within acidocalcisomes of individual species. Iron was detected in acidocalcisomes of all species analyzed, characterizing this element as a constituent of these organelles. Taken together, the results strongly indicate a species-specific composition of acidocalcisomes in trypanosomatid parasites.
对处于平行培养条件下的锥虫科(昆虫、植物和哺乳动物寄生虫)不同属的酸性钙小体中存在的元素组成和化学计量特征进行了研究。使用透射电子显微镜结合形态计量学方法的X射线微分析来研究不同物种酸性钙小体的元素含量、数量、分布和体积密度。微分析数据表明,不同的寄生虫在其酸性钙小体中具有相同的元素组成(氧、钠、镁、磷、钙、铁和锌)。然而,元素的相对浓度在物种间有所不同,但在单个物种的酸性钙小体中没有差异。在所有分析物种的酸性钙小体中都检测到了铁,这表明该元素是这些细胞器的组成成分。综上所述,结果强烈表明锥虫寄生虫中酸性钙小体具有物种特异性组成。