Victoir K, Bañuls A L, Arevalo J, Llanos-Cuentas A, Hamers R, Noël S, De Doncker S, Le Ray D, Tibayrenc M, Dujardin J C
Laboratory of Protozoology, Instituut voor Tropische Geneeskunde, Prins Leopold, Antwerpen, Belgium.
Parasitology. 1998 Jul;117 ( Pt 1):1-13.
In the present study the gp63 gene locus was used as a target for genetic characterization of Leishmania parasites by 2 methods: (i) RFLP analysis with several restriction enzymes (gp63-RFLP), and (ii) intra-genic PCR amplification coupled with restriction analysis (PCR-RFLP). Both methods were applied to a large number of natural isolates belonging to 4 species of the subgenus Viannia, namely L. (V.) braziliensis, L. (V.) peruviana, L. (V.) guyanensis and L. (V.) lainsoni; reference stocks of subgenus Leishmania were included as outgroups. Multilocus isoenzyme typing (MLEE) was used as a reference. On the one hand gp63-RFLP evidenced an extensive polymorphism and revealed specific markers for subgenus, species and geographical populations: congruence with MLEE was demonstrated statistically. The particular interest of gp63-RFLP was illustrated by infra-specific polymorphism, because of the possible relationship with phenotype diversity. On the other hand intra-genic amplification was less resolutive than gp63-RFLP, but also allowed discrimination of the 2 subgenera (PCR alone) and all the species tested in the subgenus Viannia (PCR-RFLP). PCR-RFLP presents an important operational advantage as it allows genetic characterization of minute amounts of parasites, using Leishmania specific primers. The polymorphism revealed by gp63-RFLP and PCR-RFLP illustrates the very high genomic and genetic plasticity of gp63 genes.
在本研究中,gp63基因座被用作利什曼原虫寄生虫遗传特征分析的靶点,采用了两种方法:(i)用几种限制性内切酶进行RFLP分析(gp63-RFLP),以及(ii)基因内PCR扩增结合限制性分析(PCR-RFLP)。这两种方法都应用于大量属于维安亚属4个物种的天然分离株,即巴西利什曼原虫(V.)、秘鲁利什曼原虫(V.)、圭亚那利什曼原虫(V.)和兰氏利什曼原虫(V.);利什曼原虫亚属的参考菌株作为外群。多位点同工酶分型(MLEE)用作参考。一方面,gp63-RFLP显示出广泛的多态性,并揭示了亚属、物种和地理种群的特异性标记:与MLEE的一致性得到了统计学证明。gp63-RFLP的特殊意义在于种内多态性,因为它可能与表型多样性有关。另一方面,基因内扩增的分辨能力不如gp63-RFLP,但也能够区分两个亚属(仅PCR)以及维安亚属中所有测试的物种(PCR-RFLP)。PCR-RFLP具有重要的操作优势,因为它允许使用利什曼原虫特异性引物对微量寄生虫进行遗传特征分析。gp63-RFLP和PCR-RFLP揭示的多态性说明了gp63基因具有非常高的基因组和遗传可塑性。