Jenkins Kristie, Layton Daniel, Gough Tamara, O'Neil Terri, Malaver Otega Luis, Mishra Ketan, Bruce Kerri, Morris Kirsten, Wise Terry, Challagulla Arjun, Doran Tim, Bean Andrew
Australian Centre for Disease Preparedness, CSIRO Health and Biosecurity, Geelong, VIC, Australia.
Anim Biotechnol. 2025 Dec;36(1):2523027. doi: 10.1080/10495398.2025.2523027. Epub 2025 Jun 26.
The advancement of genetic engineering in chickens has enabled significant advancement in developmental biology, bioreactors, and disease resilience. The development of CRISPR/Cas9 genome engineering technology has further expanded the potential applications of genetic engineering in poultry. In this study we aimed to evaluate the efficacy of a direct transfection method, previously demonstrated to produce transgenic chickens, in generating gene knockout (KO) chickens. Specifically, we targeted the Interferon-α/β Receptor 1 (IFNAR1) and Interleukin 1 receptor, type I (IL1R1), both critical pathways in the inflammatory and antiviral responses. We designed guide RNAs targeting the genes and validated their efficiency vivo via microinjection into the developing embryos. PCR analysis confirmed the presence of gene deletions in chimeric roosters, which were subsequently bred to produce G1 germline heterozygote KO offspring. Homozygous KO chickens were generated and subjected to phenotypic and functional analyses. Our results demonstrated successful generation of functional knockouts of both IFNAR1 and IL1R1 using a direct transfection. Overall, this study demonstrates that direct transfection provides a robust and predictable method for generating KO chickens, facilitating further research into avian immune responses and the development of antiviral strategies.
鸡的基因工程进展已在发育生物学、生物反应器和疾病抗性方面取得了重大进展。CRISPR/Cas9基因组工程技术的发展进一步扩大了基因工程在家禽中的潜在应用。在本研究中,我们旨在评估一种先前已证明可产生转基因鸡的直接转染方法在生成基因敲除(KO)鸡方面的效果。具体而言,我们靶向干扰素-α/β受体1(IFNAR1)和白细胞介素1受体I型(IL1R1),这两者都是炎症和抗病毒反应中的关键途径。我们设计了靶向这些基因的引导RNA,并通过显微注射到发育中的胚胎中在体内验证了它们的效率。PCR分析证实了嵌合公鸡中存在基因缺失,随后将其进行繁殖以产生G1种系杂合子KO后代。产生了纯合KO鸡并对其进行了表型和功能分析。我们的结果表明使用直接转染成功产生了IFNAR1和IL1R1的功能性敲除。总体而言,本研究表明直接转染为生成KO鸡提供了一种强大且可预测的方法,有助于进一步研究禽类免疫反应和抗病毒策略的开发。