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Status of Single-cell RNA Sequencing for Reproductive Toxicology in Zebrafish and the Transcriptomic Trade-off

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Date 2024 Jun 7
PMID 38846809
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Abstract

The utilization of transcriptomic studies identifying profiles of gene expression, especially in toxicogenomics, has catapulted next-generation sequencing to the forefront of reproductive toxicology. An innovative yet underutilized RNA sequencing technique emerging into this field is single-cell RNA sequencing (scRNA-seq), which provides sequencing at the individual cellular level of gonad tissue. ScRNA-seq provides a novel and unique perspective for identifying distinct cellular profiles, including identification of rare cell subtypes. The specificity of scRNA-seq is a powerful tool for reproductive toxicity research, especially for translational animal models including zebrafish. Studies to date not only have focused on 'tissue atlassing' or characterizing what cell types make up different tissues but have also begun to include toxicant exposure as a factor that this review aims to explore. Future scRNA-seq studies will contribute to understanding exposure-induced outcomes; however, the trade-offs with traditional methods need to be considered.

References
1.
Farrell J, Wang Y, Riesenfeld S, Shekhar K, Regev A, Schier A . Single-cell reconstruction of developmental trajectories during zebrafish embryogenesis. Science. 2018; 360(6392). PMC: 6247916. DOI: 10.1126/science.aar3131. View

2.
Ziegenhain C, Vieth B, Parekh S, Reinius B, Guillaumet-Adkins A, Smets M . Comparative Analysis of Single-Cell RNA Sequencing Methods. Mol Cell. 2017; 65(4):631-643.e4. DOI: 10.1016/j.molcel.2017.01.023. View

3.
Baker B, Yee J, Meyer D, Yang D, Baker T . Histological and Transcriptomic Changes in Male Zebrafish Testes Due to Early Life Exposure to Low Level 2,3,7,8-Tetrachlorodibenzo-p-Dioxin. Zebrafish. 2016; 13(5):413-23. PMC: 5035372. DOI: 10.1089/zeb.2016.1275. View

4.
Whelan E, Yang F, Avarbock M, Sullivan M, Beiting D, Brinster R . Reestablishment of spermatogenesis after more than 20 years of cryopreservation of rat spermatogonial stem cells reveals an important impact in differentiation capacity. PLoS Biol. 2022; 20(5):e3001618. PMC: 9089916. DOI: 10.1371/journal.pbio.3001618. View

5.
Liu Y, Kossack M, McFaul M, Christensen L, Siebert S, Wyatt S . Single-cell transcriptome reveals insights into the development and function of the zebrafish ovary. Elife. 2022; 11. PMC: 9191896. DOI: 10.7554/eLife.76014. View