Biological Sciences, North Dakota State University, Fargo, North Dakota, United States of America.
Developmental Biology Program, Sloan-Kettering Institute, New York, New York, United States of America.
PLoS Genet. 2023 Aug 29;19(8):e1010914. doi: 10.1371/journal.pgen.1010914. eCollection 2023 Aug.
Suppression of transposable elements (TEs) is paramount to maintain genomic integrity and organismal fitness. In D. melanogaster, the flamenco locus is a master suppressor of TEs, preventing the mobilization of certain endogenous retrovirus-like TEs from somatic ovarian support cells to the germline. It is transcribed by Pol II as a long (100s of kb), single-stranded, primary transcript, and metabolized into ~24-32 nt Piwi-interacting RNAs (piRNAs) that target active TEs via antisense complementarity. flamenco is thought to operate as a trap, owing to its high content of recent horizontally transferred TEs that are enriched in antisense orientation. Using newly-generated long read genome data, which is critical for accurate assembly of repetitive sequences, we find that flamenco has undergone radical transformations in sequence content and even copy number across simulans clade Drosophilid species. Drosophila simulans flamenco has duplicated and diverged, and neither copy exhibits synteny with D. melanogaster beyond the core promoter. Moreover, flamenco organization is highly variable across D. simulans individuals. Next, we find that D. simulans and D. mauritiana flamenco display signatures of a dual-stranded cluster, with ping-pong signals in the testis and/or embryo. This is accompanied by increased copy numbers of germline TEs, consistent with these regions operating as functional dual-stranded clusters. Overall, the physical and functional diversity of flamenco orthologs is testament to the extremely dynamic consequences of TE arms races on genome organization, not only amongst highly related species, but even amongst individuals.
转座元件 (TEs) 的抑制对于维持基因组完整性和生物适应性至关重要。在 D. melanogaster 中,flamenco 基因座是 TEs 的主要抑制剂,可防止某些内源性逆转录病毒样 TEs 从体细胞卵巢支持细胞向生殖细胞转移。它由 Pol II 转录为长(100s kb)的单链、初级转录本,并代谢为~24-32nt 的 Piwi 相互作用 RNA (piRNAs),通过反义互补靶向活性 TEs。flamenco 被认为是一种陷阱,因为它含有大量最近水平转移的 TEs,这些 TEs 富含反义取向。使用新生成的长读基因组数据,这对于重复序列的准确组装至关重要,我们发现 flamenco 在序列内容甚至拷贝数方面在 simulans 进化枝的果蝇物种中经历了激进的转变。果蝇 simulans flamenco 发生了复制和分化,并且两个拷贝都没有与 D. melanogaster 除核心启动子之外的区域具有基因座同线性。此外,flamenco 的组织在 D. simulans 个体中高度可变。接下来,我们发现 D. simulans 和 D. mauritiana flamenco 显示出双链簇的特征,在睾丸和/或胚胎中存在 ping-pong 信号。这伴随着生殖系 TEs 的拷贝数增加,与这些区域作为功能性双链簇一致。总体而言,flamenco 同源物的物理和功能多样性证明了 TE 军备竞赛对基因组组织的极其动态的后果,不仅在高度相关的物种之间,甚至在个体之间也是如此。