Collí-Dulá Reyna C, Papatheodorou Irene
Departamento de Recursos del Mar, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, 97310 Mérida, Yucatán, Mexico; Consejo Nacional de Humanidades Ciencia y Tecnología, Ciudad de México, Mexico.
European Bioinformatics Institute (EMBL-EBI) European Molecular Biology Laboratory, Wellcome Trust Genome Campus, Hinxton, Cambridge CB10 1SD, United Kingdom; Earlham Institute Norwich Research Park, Norwich NR4 7UZ, UK; Medical School, University of East Anglia, Norwich Research Park, Norwich, NR4 7UA, UK.
Comp Biochem Physiol Part D Genomics Proteomics. 2024 Dec;52:101339. doi: 10.1016/j.cbd.2024.101339. Epub 2024 Oct 4.
Single-cell Sequencing technology (scSeq) has revolutionized our understanding of individual cells, uncovering unprecedented heterogeneity within tissues and cell populations, principality through single-cell RNA Sequencing (scRNA-Seq). This short review highlights the pivotal role of scRNA-Seq in elucidating genotype-phenotype relationships, particularly in biological systems. Based on published articles, our analysis involved manual curation and automated Scopus tools to illustrate recent advances in the application of scRNA-Seq. The results reveal that scRNA-Seq has been extensively utilized in various biological areas, including biochemistry, genetics, molecular biology, immunology, and microbiology, followed by health sciences covering studies related to the nervous system, immune system, human health, development, and diseases, with a particular focus on cancer research. However, the potential of scRNA-Seq extends beyond disease research, offering insights into non-model organisms' responses to environmental contaminants. By enabling the study of cellular reactions at a molecular level, scRNA-Seq provides a comprehensive understanding of intracellular heterogeneity that enhances our comprehension of physiological, biochemical, and pathological environmental impacts on non-model organisms exposed to pollution. This understanding has many practical benefits, as it can aid in regulation and conservation efforts that benefit the environment and the use of economically essential and ecologically relevant organisms.
单细胞测序技术(scSeq)彻底改变了我们对单个细胞的理解,揭示了组织和细胞群体中前所未有的异质性,主要是通过单细胞RNA测序(scRNA-Seq)实现的。这篇简短的综述强调了scRNA-Seq在阐明基因型-表型关系中的关键作用,特别是在生物系统中。基于已发表的文章,我们的分析涉及人工筛选和自动的Scopus工具,以说明scRNA-Seq应用的最新进展。结果表明,scRNA-Seq已被广泛应用于各个生物学领域,包括生物化学、遗传学、分子生物学、免疫学和微生物学,其次是涵盖与神经系统、免疫系统、人类健康、发育和疾病相关研究的健康科学领域,尤其侧重于癌症研究。然而,scRNA-Seq的潜力不仅限于疾病研究,它还能深入了解非模式生物对环境污染物的反应。通过在分子水平上研究细胞反应,scRNA-Seq提供了对细胞内异质性的全面理解,增强了我们对污染环境下非模式生物生理、生化和病理环境影响的认识。这种认识具有许多实际益处,因为它有助于进行有利于环境的监管和保护工作,以及对经济上重要和生态上相关的生物的利用。