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强力霉素是昆虫 Tet-Off 转基因性别鉴定系统中替代四环素的可行选择,这在双翅目 Calliphoridae 的家蝇 Cochliomyia hominivorax 和丽蝇 Lucilia cuprina 中得到了评估。

Doxycycline is a viable alternative to tetracycline for use in insect Tet-Off transgenic sexing systems, as assessed in the blowflies Cochliomyia hominivorax and Lucilia cuprina (Diptera: Calliphoridae).

机构信息

USDA-ARS, Knipling-Bushland U.S. Livestock Insects Research Laboratory, Screwworm Research Site, Pacora, Panama.

Department of Entomology and Plant Pathology, North Carolina State University, Raleigh, NC, USA.

出版信息

J Econ Entomol. 2024 Apr 12;117(2):650-659. doi: 10.1093/jee/toae023.

Abstract

Transgenic insect strains with tetracycline repressible (Tet-Off) female-lethal genes provide significant advantages over traditional sterile insect techniques for insect population control, such as reduced diet and labor costs and more efficient population suppression. Tet-Off systems are suppressed by tetracycline-class antibiotics, most commonly tetracycline (Tc) or doxycycline (Dox), allowing for equal sex ratio colonies of transgenic insects when reared with Tc or Dox and male-only generations in their absence. Dox is a more stable molecule and has increased uptake than Tc, which could be advantageous in some insect mass-rearing systems. Here, we evaluated the suitability of Dox for rearing Tet-Off female-lethal strains of Australian sheep blowfly, Lucilia cuprina (Wiedemann, 1830) (Diptera: Calliphoridae), and New World screwworm, Cochliomyia hominivorax (Coquerel, 1858) (Diptera: Calliphoridae), and the effects of dosage on strain performance. For both species, colonies were able to be maintained with mixed-sex ratios at much lower dosages of Dox than Tc. Biological yields of C. hominivorax on either antibiotic were not significantly different. Reduction of Dox dosages in C. hominivorax diet did not affect biological performance, though rearing with 10 or 25 μg/mL was more productive than 50 μg/mL. Additionally, C. hominivorax mating performance and longevity were equal on all Dox dosages. Overall, Dox was a suitable antibiotic for mass-rearing Tet-Off female-lethal L. cuprina and C. hominivorax and was functional at much lower dosages than Tc.

摘要

带有四环素可诱导(Tet-Off)雌性致死基因的转基因昆虫品系在昆虫种群控制方面比传统的不育昆虫技术具有显著优势,例如降低了饲料和劳动力成本,并且种群抑制效率更高。Tet-Off 系统受四环素类抗生素的抑制,最常见的是四环素(Tc)或强力霉素(Dox),当用 Tc 或 Dox 饲养时,可以产生雌雄比例相等的转基因昆虫种群,而在没有抗生素的情况下则产生雄性单倍体世代。Dox 是一种更稳定的分子,比 Tc 更易被吸收,这在某些昆虫大规模饲养系统中可能具有优势。在这里,我们评估了 Dox 用于饲养澳大利亚绵羊蕈蝇 Lucilia cuprina(Wiedemann,1830)(双翅目:Calliphoridae)和新世界螺旋蝇 Cochliomyia hominivorax(Coquerel,1858)(双翅目:Calliphoridae)的 Tet-Off 雌性致死品系的适用性,以及剂量对品系性能的影响。对于这两个物种,与 Tc 相比,用低得多的 Dox 剂量就能维持混合性别比例的群体。两种抗生素对 C. hominivorax 的生物产量没有显著差异。降低 C. hominivorax 饮食中的 Dox 剂量不会影响生物性能,尽管在 10 或 25 μg/mL 时比 50 μg/mL 更具生产力。此外,C. hominivorax 在所有 Dox 剂量下的交配性能和寿命都相等。总的来说,Dox 是大规模饲养 Tet-Off 雌性致死的 L. cuprina 和 C. hominivorax 的合适抗生素,并且其功能所需的剂量比 Tc 低得多。

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