Freymuller E, Camargo E P
J Protozool. 1981 May;28(2):175-82. doi: 10.1111/j.1550-7408.1981.tb02829.x.
Species of trypanosomatids without endosymbionts (Leptomonas seymouri, L. collosoma, L. samueli, crithidia fasciculata, C. luciliae, C. acanthocephali, Herpetomonas megaseliae, H. mariadeanei, H. samuelpessoai, H. muscarum muscarum, Trypanosoma cruzi) and species of trypanosomatids with endosymbionts (Crithidia deanei, C. oncopelti, Blastocrithidia culicis) were comparatively studied by means of electron microscopy. Artificially aposymbiotic strains derived from species with symbiont were also included in the survey. Species with symbiont were found to differ in some ultrastructural aspects from the group of species without symbiont. Paraxial rods of flagella or intraflagellar structure were found exclusively in species without symbiont. Peripheral branching of mitochondria, accompanied by absence of subpellicular microtubules in sites where the mitochondrial branches are appressed to the cell membrane, were found exclusively in species with symbiont. Networks of kinetoplast DNA fibrils were found to be larger and looser in species with symbiont. Symbiont-free strains of species with symbiont retained the same morphological characteristics of their parental species.
利用电子显微镜对没有内共生体的锥虫目原虫物种(西氏细滴虫、粗线细滴虫、萨氏细滴虫、法氏克氏锥虫、卢氏克氏锥虫、棘头虫克氏锥虫、大塞尔氏赫氏锥虫、玛丽亚迪氏赫氏锥虫、萨氏佩索阿氏赫氏锥虫、家蝇赫氏锥虫、克氏锥虫)和有内共生体的锥虫目原虫物种(迪氏克氏锥虫、红蝽克氏锥虫、库蚊芽生克氏锥虫)进行了比较研究。调查中还纳入了源自带有共生体物种的人工无共生体菌株。发现有共生体的物种在一些超微结构方面与无共生体的物种组有所不同。鞭毛的近轴杆或鞭毛内结构仅在无共生体的物种中发现。线粒体的周边分支,伴随着线粒体分支与细胞膜紧贴处的表膜下微管缺失,仅在有共生体的物种中发现。发现有共生体的物种中线粒体DNA纤维网络更大且更松散。有共生体物种的无共生体菌株保留了其亲本物种的相同形态特征。