Bhassu Subha, Shama Maryam, Tiruvayipati Suma, Soo Tze Chiew Christie, Ahmed Niyaz, Yusoff Khatijah
Animal Genetics and Genome Evolutionary Lab (AGAGEL), Division of Genetics and Molecular Biology, Institute of Biological Sciences, Faculty of Science, University of Malaya, Kuala Lumpur, Malaysia.
Centre for Research in Biotechnology for Agriculture (CEBAR), University of Malaya, Kuala Lumpur, Malaysia.
Front Mar Sci. 2024;11. doi: 10.3389/fmars.2024.1397708. Epub 2024 Oct 6.
Shrimp aquaculture has been growing rapidly over the last three decades. However, high-density aquaculture together with environmental degradation has led to increased incidence of shrimp infections. Thus, devising and implementing effective strategies to predict, diagnose and control the spread of infections of shrimps are crucial, also to ensure biosecurity and sustainability of the food industry. With the recent advancements in biotechnology, more attention has been given to develop novel promising therapeutic tools with potential to prevent disease occurrence and better manage shrimp health. Furthermore, owing to the advent of the next-generation sequencing (NGS) platforms, it has become possible to analyze the genetic basis of susceptibility or resistance of different stocks of shrimps to infections and how sustainable aquaculture could be made free of shrimp diseases.
在过去三十年里,对虾养殖业发展迅速。然而,高密度养殖加上环境退化导致对虾感染发病率上升。因此,制定和实施有效的策略来预测、诊断和控制对虾感染的传播至关重要,这对于确保食品行业的生物安全和可持续性也很关键。随着生物技术的最新进展,人们越来越关注开发有潜力预防疾病发生并更好地管理对虾健康的新型有前景的治疗工具。此外,由于下一代测序(NGS)平台的出现,分析不同对虾种群对感染的易感性或抗性的遗传基础以及如何使可持续养殖无对虾疾病成为可能。
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