Zhang Xiaowen, Peng Mingjian, Zhu Jianghao, Zhai Xue, Wei Chaoguang, Jiao He, Wu Zhichao, Huang Songqian, Liu Mingli, Li Wenhao, Yang Wenyi, Miao Kai, Xu Qiongqiong, Chen Liangbiao, Hu Peng
Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, Ministry of Education, Shanghai Ocean University, Shanghai, China.
International Research Center for Marine Biosciences, Ministry of Science and Technology, Shanghai Ocean University, Shanghai, China.
Nat Commun. 2025 Jul 1;16(1):5952. doi: 10.1038/s41467-025-61375-z.
Metabolic RNA labeling with high-throughput single-cell RNA sequencing (scRNA-seq) enables precise measurement of gene expression dynamics in complex biological processes, such as cell state transitions and embryogenesis. This technique, which tags newly synthesized RNA for detection through induced base conversions, relies on conversion efficiency, RNA integrity, and transcript recovery. These factors are influenced by the chosen chemical conversion method and platform compatibility. Despite its potential, a comprehensive comparison of chemical methods and platform compatibility has been lacking. Here, we benchmark ten chemical conversion methods using the Drop-seq platform, analyzing 52,529 cells. We find that on-beads methods, particularly the meta-chloroperoxy-benzoic acid/2,2,2-trifluoroethylamine combination, outperform in-situ approaches. To assess in vivo applications, we apply these optimized methods to 9883 zebrafish embryonic cells during the maternal-to-zygotic transition, identifying and experimentally validating zygotically activated transcripts, which enhanced zygotic gene detection capabilities. Additionally, we evaluate two commercial platforms with higher capture efficiency and find that on-beads iodoacetamide chemistry is the most effective. Our results provide critical guidance for selecting optimal chemical methods and scRNA-seq platforms, advancing the study of RNA dynamics in complex biological systems.
通过高通量单细胞RNA测序(scRNA-seq)进行代谢RNA标记,能够精确测量复杂生物过程中的基因表达动态,如细胞状态转变和胚胎发育。该技术通过诱导碱基转换来标记新合成的RNA以进行检测,它依赖于转换效率、RNA完整性和转录本回收率。这些因素受所选化学转换方法和平台兼容性的影响。尽管有其潜力,但一直缺乏对化学方法和平台兼容性的全面比较。在这里,我们使用Drop-seq平台对十种化学转换方法进行了基准测试,分析了52,529个细胞。我们发现珠上方法,特别是间氯过氧苯甲酸/2,2,2-三氟乙胺组合,优于原位方法。为了评估体内应用,我们将这些优化方法应用于9883个斑马鱼胚胎细胞在母型向合子型转变期间,鉴定并通过实验验证了合子激活的转录本,增强了合子基因检测能力。此外,我们评估了两个具有更高捕获效率的商业平台,发现珠上碘乙酰胺化学方法是最有效的。我们的结果为选择最佳化学方法和scRNA-seq平台提供了关键指导,推动了对复杂生物系统中RNA动态的研究。