Lee Jeong-Woon, Cho Je-Yoel
Department of Biochemistry, College of Veterinary Medicine, Seoul National University, Seoul 08826, Korea.
BK21 Plus and Research Institute for Veterinary Science, Seoul National University, Seoul 08826, Korea.
J Vet Sci. 2025 Jan;26(1):e9. doi: 10.4142/jvs.24259.
Chromatin accessibility is vital for gene regulation, determining the ability of DNA-binding proteins to access the genomic regions and drive transcriptional activity, reflecting environmental changes. Although human and murine studies have advanced the understanding of chromatin dynamics, domestic animals remain comparatively underexplored despite their importance in agriculture and veterinary medicine. Investigating the accessibility of chromatin in these species is crucial for improving traits such as productivity, disease resistance, and environmental adaptation. This review assessed chromatin accessibility research in domestic animals, highlighting its significance in understanding and improving livestock traits.
This review outlines chromatin accessibility research in domestic animals, focusing on critical developmental processes, tissue-specific regulation, and economically significant traits. Advances in techniques, such as Assay for Transposase-Accessible Chromatin using sequencing, have enabled detailed mapping of regulatory elements, shedding light on epigenetic regulation of traits, such as muscle development and productivity. Comparative studies have uncovered conserved and species-specific cis-regulatory elements across multiple species. These findings offer insights into regulatory mechanisms that can enhance breeding strategies and animal management. In addition, high-throughput techniques, such as single-cell analysis and deep-learning models, have advanced the study of chromatin accessibility in lesser-studied species.
Chromatin accessibility is crucial in gene regulation in domestic animals, influencing development, immune response, and productivity. Despite the progress, more comprehensive epigenomic datasets and cross-species analytical tools are needed to harness chromatin accessibility in domestic animal research. Understanding these mechanisms has practical applications in improving livestock traits, advancing breeding programs, and developing disease-resistant animals, highlighting the importance of integrating epigenetic and genomic tools for enhancing animal health and productivity.
染色质可及性对于基因调控至关重要,它决定了DNA结合蛋白进入基因组区域并驱动转录活性的能力,反映了环境变化。尽管人类和小鼠研究推进了对染色质动力学的理解,但家畜在农业和兽医学中具有重要意义,却仍相对未得到充分探索。研究这些物种中染色质的可及性对于改善诸如生产力、抗病性和环境适应性等性状至关重要。本综述评估了家畜中染色质可及性的研究,强调了其在理解和改善家畜性状方面的重要性。
本综述概述了家畜中染色质可及性的研究,重点关注关键发育过程、组织特异性调控和具有经济意义的性状。诸如使用测序的转座酶可及染色质分析等技术的进步,使得能够详细绘制调控元件图谱,揭示了诸如肌肉发育和生产力等性状的表观遗传调控。比较研究发现了多个物种间保守和物种特异性的顺式调控元件。这些发现为可增强育种策略和动物管理的调控机制提供了见解。此外,诸如单细胞分析和深度学习模型等高通量技术推进了对研究较少物种中染色质可及性的研究。
染色质可及性在家畜基因调控中至关重要,影响发育、免疫反应和生产力。尽管取得了进展,但仍需要更全面的表观基因组数据集和跨物种分析工具,以在家畜研究中利用染色质可及性。理解这些机制在改善家畜性状、推进育种计划和培育抗病动物方面具有实际应用,突出了整合表观遗传和基因组工具以增强动物健康和生产力的重要性。