Vilas R, Criscione C D, Blouin M S
Department of Zoology, Oregon State University, 3029 Cordley Hall, Corvallis, OR 97331, USA.
Parasitology. 2005 Dec;131(Pt 6):839-46. doi: 10.1017/S0031182005008437.
We examined the relative merits of mitochondrial DNA loci and ribosomal DNA internal transcribed spacers for their use in prospecting for cryptic species of platyhelminth parasites. Sequence divergence at ITS1 and ITS2 was compared with divergence at 2 mtDNA loci (NADH dehydrogenase-1 and cytochrome c oxidase I) between closely related species of trematodes and cestodes. Both spacers accumulated substitutions substantially more slowly than mtDNA, which clearly shows a higher level of divergence among species relative to intra-specific variation. Besides a slow rate of substitution, other caveats that may be encountered when using ITS sequences as a prospecting marker are discussed. In particular, we note recent studies that suggest the existence of substantial levels of intra-individual variation in ITS sequences of flatworms. Because it is likely that closely related species share this phenomenon, it may confound the detection of cryptic species, especially if small sample sizes are studied. Although potential limitations of mtDNA are also recognized, the higher rate of evolution and smaller effective population size of this marker increases the probability of detecting diagnostic characters between cryptic species.
我们研究了线粒体DNA基因座和核糖体DNA内转录间隔区在用于探寻扁形蠕虫寄生虫隐性物种方面的相对优势。比较了吸虫和绦虫近缘物种之间ITS1和ITS2的序列差异与两个线粒体DNA基因座(NADH脱氢酶-1和细胞色素c氧化酶I)的差异。两个间隔区积累替换的速度明显慢于线粒体DNA,这清楚地表明相对于种内变异,物种间的差异水平更高。除了替换速度慢之外,还讨论了将ITS序列用作探寻标记时可能遇到的其他注意事项。特别是,我们注意到最近的研究表明扁虫的ITS序列存在大量个体内变异。由于近缘物种可能也存在这种现象,这可能会混淆隐性物种的检测,尤其是在研究样本量较小时。虽然线粒体DNA的潜在局限性也得到认可,但该标记较高的进化速度和较小的有效种群大小增加了检测隐性物种之间诊断特征的可能性。