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分离雄性特异性转化外显子作为大头金蝇(双翅目:丽蝇科)未成熟标本性别鉴定的一种方法

Isolation of the Male-Specific Transformer Exon as a Method for Immature Specimen Sex Identification in Chrysomya megacephala (Diptera: Calliphoridae).

作者信息

Smith J L, Wells J D

机构信息

Department of Biological Sciences, Florida International University, OE 167, 11200 SW 8th St., Miami, FL 33199 (

出版信息

J Med Entomol. 2017 Mar 1;54(2):496-500. doi: 10.1093/jme/tjw198.

Abstract

Being able to efficiently differentiate between male and female individuals in the immature forms of insects allows for investigations into sexually dimorphic patterns of growth rates and gene expression. For species lacking sex-specific morphological characteristics during these periods, alternative methods must be devised. Commonly, isolation of sex determination genes reveals sex-specific band patterns and allows for markers that can be used in insect control. For blow flies, a family that includes flies of medical and forensic importance, sex has previously been identified in some members using the male-specific exon in the transformer gene. This gene is relatively conserved between members of the genera Cochliomyia and Lucilia (Diptera: Calliphoridae), and we isolated a portion of this gene in an additional forensically and medically important blow fly genus using the widespread Chrysomya megacephala (F.). We found a relatively high level of conservation between exons 1 and 2 of transformer and were able to amplify a region containing the male-specific exon in C. megacephala. A sex-specific molecular diagnostic test based on the presence of sexually dimorphic PCR product bands showed the expected genotype for adults and intrapuparial period specimens of known sex. The same result could be obtained from single third-instar larval specimens, opening up the possibility to not only determine if development rates are sex dependent, but also to investigate the development of sexually dimorphic traits of interest in C. megacephala.

摘要

能够有效地区分未成熟昆虫的雌雄个体,有助于研究生长速率和基因表达的两性差异模式。对于在这些时期缺乏性别特异性形态特征的物种,必须设计其他方法。通常,分离性别决定基因可揭示性别特异性条带模式,并能获得可用于昆虫控制的标记。对于丽蝇科(包括具有医学和法医重要性的苍蝇),以前在一些成员中利用transformer基因中的雄性特异性外显子来鉴定性别。该基因在丽蝇属和绿蝇属(双翅目:丽蝇科)的成员之间相对保守,我们利用广泛分布的大头金蝇(Chrysomya megacephala (F.))在另一个具有法医和医学重要性的丽蝇属中分离了该基因的一部分。我们发现transformer基因外显子1和2之间具有较高的保守性,并能够在大头金蝇中扩增出包含雄性特异性外显子的区域。基于性别特异性PCR产物条带的存在进行的性别特异性分子诊断测试,显示了已知性别的成虫和蛹内期标本的预期基因型。从单个三龄幼虫标本中也能得到相同的结果,这不仅为确定发育速率是否依赖性别提供了可能,还为研究大头金蝇中感兴趣的两性异形特征的发育提供了可能。

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