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用于螺旋蝇(双翅目:丽蝇科)种间和种内分化的扩增片段长度多态性

Amplified fragment length polymorphism used for inter- and intraspecific differentiation of screwworms (Diptera: Calliphoridae).

作者信息

Alamalakala L, Skoda S R, Foster J E

机构信息

Department of Entomology, Insect Genetics Laboratory, University of Nebraska, Lincoln, NE 68583-0816, USA.

出版信息

Bull Entomol Res. 2009 Apr;99(2):139-49. doi: 10.1017/S0007485308006202. Epub 2008 Nov 12.

Abstract

Morphologically, early immature stages of the economically important pest called screwworms, Cochliomyia hominivorax (Coquerel) (Diptera: Calliphoridae), and non-pest secondary screwworms, Cochliomyia macellaria (Fabricius) (Diptera: Calliphoridae), are nearly indistinguishable. Correct identification is crucial to the ongoing eradication and exclusion program protecting the United States, Mexico and Central America from reinvasion of screwworms persistent in South America and the Caribbean. Amplified fragment length polymorphism (AFLP) polymerase chain reaction was used to differentiate populations of C. hominivorax and to discriminate them from C. macellaria. Ten primer pairs screened for interspecific discrimination of C. hominivorax from C. macellaria showed 52 discrete bands, allowing the two species to be readily distinguished; divergent branches on resulting dendrograms showed 100% bootstrap support. C. macellaria populations grouped at the 92% level; C. hominivorax populations grouped at the 68% level. Of the 52 bands, seven were monomorphic for both species, 22 were specific to C. macellaria, ten were present only in C. hominivorax and the remaining 13 bands differentiated C. hominivorax populations. Separate studies using ten strains of C. hominivorax showed a higher level of genetic similarity within than between populations. Analyses using 72 bands (19 monomorphic bands, 53 bands grouped all ten strains at the 58% similarity level) resolved seven mutant strains from Mexico (85% similarity level); all ten strains were resolved at the 72% similarity level. Diagnostic bands were identified for species and strain identification. We conclude that AFLP can be a valuable tool for studies of interspecific and intraspecific genetic variation in screwworm populations.

摘要

在形态学上,具有经济重要性的害虫——螺旋锥蝇,即嗜人锥蝇(Cochliomyia hominivorax (Coquerel),双翅目:丽蝇科),以及非害虫次生螺旋锥蝇,即蛆症异蚤蝇(Cochliomyia macellaria (Fabricius),双翅目:丽蝇科)的早期未成熟阶段几乎无法区分。正确识别对于正在进行的根除和排除计划至关重要,该计划旨在保护美国、墨西哥和中美洲免受南美洲和加勒比地区持续存在的螺旋锥蝇再次入侵。扩增片段长度多态性(AFLP)聚合酶链反应被用于区分嗜人锥蝇种群,并将它们与蛆症异蚤蝇区分开来。为了对嗜人锥蝇和蛆症异蚤蝇进行种间鉴别而筛选的十对引物显示出52条离散条带,这使得这两个物种能够很容易地被区分;所得树形图上的不同分支显示出100%的自展支持率。蛆症异蚤蝇种群在92%的水平上聚类;嗜人锥蝇种群在68%的水平上聚类。在这52条条带中,有7条对两个物种都是单态的,22条是蛆症异蚤蝇特有的,10条仅存在于嗜人锥蝇中,其余13条条带区分了嗜人锥蝇种群。使用十株嗜人锥蝇进行的单独研究表明,种群内部的遗传相似性高于种群之间。使用72条带(19条单态带,53条带在58%的相似性水平上对所有十株菌株进行了聚类)的分析分辨出了来自墨西哥的七个突变菌株(85%的相似性水平);所有十株菌株在72%的相似性水平上被分辨出来。已鉴定出用于物种和菌株鉴定的诊断条带。我们得出结论,AFLP可以成为研究螺旋锥蝇种群种间和种内遗传变异的有价值工具。

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