Rearing and Double-stranded RNA-mediated Gene Knockdown in the Hide Beetle, Dermestes maculatus

  • Author(s): Xiang, Jie; Reding, Katie; Pick, Leslie
  • Title:
    Rearing and Double-stranded RNA-mediated Gene Knockdown in the Hide Beetle, Dermestes maculatus
  • Journal Title: Journal of Visualized Experiments
  • DOI: 10.3791/54976-v
  • URL: http://dx.doi.org/10.3791/54976-v
  • Issue: 118
  • Date: 2016-12-28
  • Keywords:
  • Abstract:
    Advances in genomics have raised the possibility of probing biodiversity at an unprecedented scale. However, sequence alone will not be informative without tools to study gene function. The development and sharing of detailed protocols for the establishment of new model systems in laboratories, and for tools to carry out functional studies, is thus crucial for leveraging the power of genomics. Coleoptera (beetles) are the largest clade of insects and occupy virtually all types of habitats on the planet. In addition to providing ideal models for fundamental research, studies of beetles can have impacts on pest control as they are often pests of households, agriculture, and food industries. Detailed protocols for rearing and maintenance of D. maculatus laboratory colonies and for carrying out dsRNA-mediated interference in D. maculatus are presented. Both embryonic and parental RNAi procedures-including apparatus set up, preparation, injection, and post-injection recovery-are described. Methods are also presented for analyzing embryonic phenotypes, including viability, patterning defects in hatched larvae, and cuticle preparations for unhatched larvae. These assays, together with in situ hybridization and immunostaining for molecular markers, make D. maculatus an accessible model system for basic and applied research. They further provide useful information for establishing procedures in other emerging insect model systems.
  • ISSN: 1940-087X
  • Document Type: Journal Article
  • Language: en
  • Publisher: MyJove Corporation

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Not cited in World Catalogue of Dermestidae (J. Hava, 2025)
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