吞吐量
基因组
单细胞测序
DNA测序
计算生物学
计算机科学
大规模并行测序
生物
基因
外显子组测序
遗传学
突变
电信
无线
作者
Yi Qiao,Tianguang Cheng,Zikun Miao,Yue Cui,Jing Tu
标识
DOI:10.1002/smtd.202400789
摘要
Abstract Single‐cell whole‐genome sequencing (scWGS) detects cell heterogeneity at the aspect of genomic variations, which are inheritable and play an important role in life processes such as aging and cancer progression. The recent explosive development of high‐throughput single‐cell sequencing methods has enabled high‐performance heterogeneity detection through a vast number of novel strategies. Despite the limitation on total cost, technical advances in high‐throughput single‐cell whole‐genome sequencing methods are made for higher genome coverage, parallel throughput, and level of integration. This review highlights the technical advancements in high‐throughput scWGS in the aspects of strategies design, data efficiency, parallel handling platforms, and their applications on human genome. The experimental innovations, remaining challenges, and perspectives are summarized and discussed.
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