Otranto D, Colwell D D, Traversa D, Stevens J R
Dipartimento di Sanità e Benessere degli Animali, Facoltà di Medicina Veterinaria, Università di Bari, Italy.
Med Vet Entomol. 2003 Sep;17(3):316-25. doi: 10.1046/j.1365-2915.2003.00446.x.
Cuticular structures and the sequence of the cytochrome oxidase I gene were compared for Hypoderma bovis (Linnaeus), Hypoderma lineatum (De Villers), Hypoderma actaeon Brauer, Hypoderma diana Brauer and Hypoderma tarandi (Linnaeus) (Diptera, Oestridae). Third-stage larvae of each species were examined by scanning electron microscopy revealing differences among species in the pattern and morphology of spines on the cephalic and thoracic segments, by spine patterns on the tenth abdominal segment, and by morphology of the spiracular plates. The morphological approach was supported by the molecular characterization of the most variable region of the cytochrome oxidase I (COI) gene of these species, which was amplified by polymerase chain reaction and analysed. Amplicons were digested with the unique restriction enzyme, BfaI, providing diagnostic profiles able to simultaneously differentiate all Hypoderma species examined. These findings confirm the utility of morphological characters for differentiating the most common Hypoderma larvae and reconfirm the power of the COI gene for studying insect identification and systematics.
对牛皮蝇(Linnaeus)、纹皮蝇(De Villers)、鹿皮蝇(Brauer)、戴氏皮蝇(Brauer)和驯鹿皮蝇(Linnaeus)(双翅目,狂蝇科)的表皮结构和细胞色素氧化酶I基因序列进行了比较。通过扫描电子显微镜检查了每个物种的第三期幼虫,揭示了不同物种在头部和胸部节段的刺的模式和形态、第十腹节的刺模式以及气门板形态上的差异。这些物种细胞色素氧化酶I(COI)基因最可变区域的分子特征支持了形态学方法,该区域通过聚合酶链反应进行扩增和分析。扩增产物用独特的限制性内切酶BfaI进行消化,提供了能够同时区分所有所检查皮蝇物种的诊断图谱。这些发现证实了形态特征在区分最常见皮蝇幼虫方面的实用性,并再次证实了COI基因在研究昆虫鉴定和系统发育方面的作用。