Hariyani Imtiyaz E, Das Sudeshna, Le Emma M, Gamero-Castano Carmen, Soroudi Tina, Choi Joshua, Swarup Vivek, Ranz Jose M
Department of Ecology and Evolutionary Biology, University of California Irvine, CA 92697, USA.
Department of Neurobiology and Behavior, University of California Irvine, CA 92697, USA.
bioRxiv. 2025 Jul 8:2025.07.04.663238. doi: 10.1101/2025.07.04.663238.
Gene expression evolution in reproductive organs plays a central role in species divergence, yet cell-type-resolved patterns in invertebrates remain poorly understood. We used single-nucleus RNA-sequencing to profile testis and ovary transcriptomes from the sibling species and . Despite conserved cellular composition, we observed highly cell-type-specific expression and coexpression network divergence between species. In the testis, mitotic cells were conserved across species, mirroring patterns in mammals, while divergence peaked in late spermatocytes. In the ovary, divergence was less pronounced, peaking in early germline and late-stage follicle cells, and enriched on the chromosome, consistent with a faster- effect driven by positive selection. Genes expressed in these cell types exhibited narrower expression breadth, younger phylogenetic age, and elevated rates of protein evolution in both tissues. Our findings reveal contrasting evolutionary regimes in male and female germlines, shaped by adaptive and non-adaptive mechanisms, contingent on cell type and chromosomal context.
生殖器官中的基因表达进化在物种分化中起着核心作用,但无脊椎动物中细胞类型解析的模式仍知之甚少。我们使用单核RNA测序来分析姊妹种和的睾丸和卵巢转录组。尽管细胞组成保守,但我们观察到物种间高度细胞类型特异性的表达和共表达网络差异。在睾丸中,有丝分裂细胞在物种间保守,这与哺乳动物中的模式相似,而差异在晚期精母细胞中达到峰值。在卵巢中,差异不太明显,在早期生殖系和晚期卵泡细胞中达到峰值,并在染色体上富集,这与正选择驱动的更快效应一致。在这些细胞类型中表达的基因在两种组织中均表现出更窄的表达广度、更年轻的系统发育年龄和更高的蛋白质进化速率。我们的研究结果揭示了雄性和雌性生殖系中由适应性和非适应性机制塑造的不同进化模式,这取决于细胞类型和染色体背景。