Wuxi Fisheries College, Nanjing Agricultural University, Wuxi 214081, China.
National Demonstration Center for Experimental Fisheries Science Education, Shanghai Ocean University, Shanghai 201306, China.
Int J Mol Sci. 2024 Aug 27;25(17):9299. doi: 10.3390/ijms25179299.
Aquaculture, the world's fastest-growing food production sector, is critical for addressing food security concerns because of its potential to deliver high-quality, nutrient-rich supplies by 2050. This review assesses the effectiveness of CRISPR/Cas9 genome editing technology in enhancing desirable traits in fish species, including growth rates, muscle quality, disease resistance, pigmentation, and more. It also focuses on the potential effectiveness of the technology in allowing precise and targeted modifications of fish DNA to improve desirable characteristics. Many studies have reported successful applications of CRISPR/Cas9, such as knocking out reproductive genes to control reproduction and sex determination, enhancing feed conversion efficiency, and reducing off-target effects. Additionally, this technology has contributed to environmental sustainability by reducing nitrogen-rich waste and improving the nutritional composition of fish. However, the acceptance of CRISPR/Cas9 modified fish by the public and consumers is hindered by concerns regarding public perception, potential ecological impacts, and regulatory frameworks. To gain public approval and consumer confidence, clear communication about the editing process, as well as data on the safety and environmental considerations of genetically modified fish, are essential. This review paper discusses these challenges, provides possible solutions, and recommends future research on the integration of CRISPR/Cas9 into sustainable aquaculture practices, focusing on the responsible management of genetically modified fish to enable the creation of growth and disease-resistant strains. In conclusion, this review highlights the transformative potential of CRISPR/Cas9 technology in improving fish traits, while also considering the challenges and ethical considerations associated with sustainable and responsible practices in aquaculture.
水产养殖是世界上发展最快的食品生产部门,对于解决粮食安全问题至关重要,因为它有可能在 2050 年前提供高质量、营养丰富的供应。本综述评估了 CRISPR/Cas9 基因组编辑技术在增强鱼类品种理想特征方面的有效性,包括生长速度、肌肉质量、抗病性、色素沉着等。它还侧重于该技术在允许对鱼类 DNA 进行精确和靶向修饰以改善理想特征方面的潜在有效性。许多研究报告了 CRISPR/Cas9 的成功应用,例如敲除生殖基因以控制繁殖和性别决定、提高饲料转化率以及减少脱靶效应。此外,该技术通过减少富含氮的废物和改善鱼类的营养成分,有助于环境可持续性。然而,公众和消费者对 CRISPR/Cas9 修饰鱼类的接受程度受到公众看法、潜在生态影响和监管框架等问题的阻碍。为了获得公众的认可和消费者的信心,必须清楚地传达编辑过程的信息,以及关于基因改良鱼类的安全性和环境考虑因素的数据。本文综述讨论了这些挑战,提供了可能的解决方案,并建议未来在可持续水产养殖实践中整合 CRISPR/Cas9 技术,重点是对基因改良鱼类进行负责任的管理,以培育生长速度快和抗病能力强的鱼类品种。总之,本综述强调了 CRISPR/Cas9 技术在改善鱼类特征方面的变革潜力,同时考虑了与水产养殖可持续和负责任实践相关的挑战和伦理考虑因素。