Mebrahtu Y B, Lawyer P G, Pamba H, Koech D, Perkins P V, Roberts C R, Were J B, Hendricks L D
Kenya Medical Research Institute, U.S. Army Medical Research Unit, Faculty of Medicine, University of Nairobi.
Am J Trop Med Hyg. 1992 Dec;47(6):852-92. doi: 10.4269/ajtmh.1992.47.852.
A total of 407 Leishmania and other Leishmania-like isolates obtained from patients, other vertebrates, sand fly vectors, and other arthropods from Kenya and other countries were characterized and compared with several World Health Organization and other well-characterized reference strains of Leishmania, Trypanosoma, Crithidia, Herpetomonas, and Leptomonas by cellulose acetate electrophoresis (CAE), using 20 enzyme systems. Analysis of the isoenzyme banding patterns (IBP) of the isolates generated isoenzyme profiles that were resolved as zymodemes and tabulated. Isolates that produced similar isoenzyme profiles in all 20 enzyme systems were placed into a particular Leishmania isoenzyme taxon, with the zymodeme designated numerically as Zn. A total of 66 zymodemes were recorded for the 407 isolates studied. To obviate the need to draw all 66 representative IBP for each of the 20 enzyme systems, the 66 zymodemes (Z1-Z66) were again placed into similarity groups represented by pattern number or Pn. This resulted in 23-50 IBP (Pn) per enzyme system. The highest number of IBP scored was for malate dehydrogenase (MDH) (P1-50) and the lowest score was for glucose-6-phosphate isomerase (GPI) (P1-23). From these different isoenzyme profiles or zymodemes, IBP of 14 (MDH, GPI, nucleoside hydrolase, phosphoglucomutase, malic enzyme, isocitrate dehydrogenase, glucose-6-phosphate dehydrogenase, mannose-6-phosphate isomerase, 6-phosphogluconate dehydrogenase, glutamate oxaloacetate transferase/aspartate aminotransferase, glutathione reductase, superoxide dismutase, fumarase, and glyceraldehyde-3-phosphate dehydrogenase) of the 20 enzyme systems were selected for computer-calculated numerical taxonomy. Consistent individual isoenzyme bands with similar relative mobilities of the 14 enzyme systems were scored into groups (allelomorphs, allozymes, or electromorphs) and used in cluster analysis. For each pattern in every profile, the presence of a consistent band was entered as 1 and its absence as 0. A total of 419 allozyme characters (variables) were scored for the 14 enzyme systems. Lastly, all different zymodemes sharing a particular IBP (Pn) within an enzyme system were counted and the total number was shown as a zymodeme frequency (Zf). Final analysis of the CAE isoenzyme profiles and cluster-dendrograms resulted in the identification of several potentially new species and subspecies of Leishmania and other Leishmania-like isolates from patients, sand flies, and animal reservoir hosts collected from Kenya and other locations in Africa. Zymodeme analysis of the Kenyan visceral and cutaneous leishmaniasis isolates resulted in the identification of 11 subpopulations of the L. donovani species complex and six subpopulations of the L. tropica species complex endemic to different geographic areas of Kenya.
从肯尼亚及其他国家的患者、其他脊椎动物、白蛉媒介和其他节肢动物中总共获取了407株利什曼原虫及其他类似利什曼原虫的分离株,通过醋酸纤维素电泳(CAE),使用20种酶系统对其进行了特征分析,并与世界卫生组织的几种以及其他特征明确的利什曼原虫、锥虫、克氏锥虫、赫氏锥虫和细滴虫参考菌株进行了比较。对分离株的同工酶条带模式(IBP)分析产生了同工酶谱,这些谱被解析为酶型并制成表格。在所有20种酶系统中产生相似同工酶谱的分离株被归入特定的利什曼原虫同工酶分类单元,酶型以数字形式指定为Zn。在所研究的407株分离株中总共记录了66种酶型。为避免需要为20种酶系统中的每一种绘制所有66种代表性IBP,将66种酶型(Z1 - Z66)再次归入以模式编号或Pn表示的相似性组。这导致每个酶系统有23 - 50种IBP(Pn)。得分最高的IBP数量是苹果酸脱氢酶(MDH)(P1 - 50),得分最低的是葡萄糖 - 6 - 磷酸异构酶(GPI)(P1 - 23)。从这些不同的同工酶谱或酶型中,选择了20种酶系统中的14种(MDH、GPI、核苷水解酶、磷酸葡萄糖变位酶、苹果酸酶、异柠檬酸脱氢酶、葡萄糖 - 6 - 磷酸脱氢酶、甘露糖 - 6 - 磷酸异构酶、6 - 磷酸葡萄糖酸脱氢酶、谷氨酸草酰乙酸转氨酶/天冬氨酸转氨酶、谷胱甘肽还原酶、超氧化物歧化酶、延胡索酸酶和甘油醛 - 3 - 磷酸脱氢酶)的IBP用于计算机计算的数值分类学。将14种酶系统中具有相似相对迁移率的一致的单个同工酶条带归入组(等位基因、同工酶或电泳变体)并用于聚类分析。对于每个谱中的每种模式,一致条带的存在记为1,不存在记为0。为14种酶系统总共记录了419个同工酶特征(变量)。最后,计算了在一个酶系统内共享特定IBP(Pn)的所有不同酶型的数量,并将总数显示为酶型频率(Zf)。对CAE同工酶谱和聚类树状图的最终分析导致鉴定出了几种潜在的利什曼原虫新物种和亚种以及其他类似利什曼原虫的分离株,这些分离株来自从肯尼亚和非洲其他地区收集的患者、白蛉和动物储存宿主。对肯尼亚内脏利什曼病和皮肤利什曼病分离株的酶型分析导致鉴定出杜氏利什曼原虫复合种的11个亚群和热带利什曼原虫复合种的6个亚群,这些亚群在肯尼亚的不同地理区域流行。