Laboratory of Evolutionary Genetics and Genomics, The Rockefeller University, New York, New York, United States of America.
Department of Molecular Genetics and The Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, Toronto, Ontario, Canada.
PLoS Genet. 2021 Aug 17;17(8):e1009728. doi: 10.1371/journal.pgen.1009728. eCollection 2021 Aug.
Dosage compensation equalizes X-linked expression between XY males and XX females. In male fruit flies, expression levels of the X-chromosome are increased approximately two-fold to compensate for their single X chromosome. In testis, dosage compensation is thought to cease during meiosis; however, the timing and degree of the resulting transcriptional suppression is difficult to separate from global meiotic downregulation of each chromosome. To address this, we analyzed testis single-cell RNA-sequencing (scRNA-seq) data from two Drosophila melanogaster strains. We found evidence that the X chromosome is equally transcriptionally active as autosomes in somatic and pre-meiotic cells, and less transcriptionally active than autosomes in meiotic and post-meiotic cells. In cells experiencing dosage compensation, close proximity to MSL (male-specific lethal) chromatin entry sites (CES) correlates with increased X chromosome transcription. We found low or undetectable levels of germline expression of most msl genes, mle, roX1 and roX2 via scRNA-seq and RNA-FISH, and no evidence of germline nuclear roX1/2 localization. Our results suggest that, although dosage compensation occurs in somatic and pre-meiotic germ cells in Drosophila testis, there might be non-canonical factors involved in the dosage compensation mechanism. The single-cell expression patterns and enrichment statistics of detected genes can be explored interactively in our database: https://zhao.labapps.rockefeller.edu/gene-expr/.
剂量补偿使 XY 雄性和 XX 雌性之间的 X 连锁表达平衡。在雄性果蝇中,X 染色体的表达水平增加了大约两倍,以补偿其单个 X 染色体。在睾丸中,剂量补偿被认为在减数分裂过程中停止;然而,转录抑制的时间和程度很难与每条染色体的整体减数分裂下调分开。为了解决这个问题,我们分析了来自两个黑腹果蝇品系的睾丸单细胞 RNA-seq(scRNA-seq)数据。我们有证据表明,X 染色体在体细胞和减数分裂前细胞中的转录活性与常染色体相当,而在减数分裂和减数分裂后细胞中的转录活性低于常染色体。在经历剂量补偿的细胞中,靠近 MSL(雄性特异性致死)染色质进入位点(CES)与 X 染色体转录的增加相关。我们通过 scRNA-seq 和 RNA-FISH 发现,大多数 msl 基因、mle、roX1 和 roX2 的生殖系表达水平较低或无法检测到,也没有生殖系核 roX1/2 定位的证据。我们的结果表明,尽管果蝇睾丸中的体细胞和减数分裂前生殖细胞中发生了剂量补偿,但可能涉及非典型因素参与剂量补偿机制。可以在我们的数据库中交互式地探索检测到的基因的单细胞表达模式和富集统计信息:https://zhao.labapps.rockefeller.edu/gene-expr/。