A telomere-to-telomere cotton genome assembly reveals centromere evolution and a Mutator transposon-linked module regulating embryo development

IF 31.7 1区 生物学 Q1 GENETICS & HEREDITY Nature genetics Pub Date : 2024-08-15 DOI:10.1038/s41588-024-01877-6
Gai Huang, Zhigui Bao, Li Feng, Jixian Zhai, Jonathan F. Wendel, Xiaofeng Cao, Yuxian Zhu
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Abstract

Assembly of complete genomes can reveal functional genetic elements missing from draft sequences. Here we present the near-complete telomere-to-telomere and contiguous genome of the cotton species Gossypium raimondii. Our assembly identified gaps and misoriented or misassembled regions in previous assemblies and produced 13 centromeres, with 25 chromosomal ends having telomeres. In contrast to satellite-rich Arabidopsis and rice centromeres, cotton centromeres lack phased CENH3 nucleosome positioning patterns and probably evolved by invasion from long terminal repeat retrotransposons. In-depth expression profiling of transposable elements revealed a previously unannotated DNA transposon (MuTC01) that interacts with miR2947 to produce trans-acting small interfering RNAs (siRNAs), one of which targets the newly evolved LEC2 (LEC2b) to produce phased siRNAs. Systematic genome editing experiments revealed that this tripartite module, miR2947–MuTC01–LEC2b, controls the morphogenesis of complex folded embryos characteristic of Gossypium and its close relatives in the cotton tribe. Our study reveals a trans-acting siRNA-based tripartite regulatory pathway for embryo development in higher plants. A telomere-to-telomere genome assembly of the diploid cotton species Gossypium raimondii reveals centromere evolution and a Mutator transposon-linked tripartite module, miR2947–MuTC01–LEC2b that regulates cotton embryo development.

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端粒到端粒的棉花基因组组装揭示了中心粒的进化和调控胚胎发育的突变体转座子关联模块
组装完整的基因组可以揭示序列草案中缺失的功能遗传元件。在这里,我们展示了近乎完整的棉花物种 Gossypium raimondii 的端粒到端粒和连续基因组。我们的组配发现了之前组配中的缺口和定向错误或组装错误的区域,并产生了 13 个中心粒,25 个染色体末端具有端粒。与卫星丰富的拟南芥和水稻中心粒相比,棉花中心粒缺乏分阶段的CENH3核小体定位模式,可能是由长末端重复反转座子入侵进化而来。对转座元件的深入表达谱分析发现了一个以前未注明的DNA转座子(MuTC01),它与miR2947相互作用产生反式作用的小干扰RNA(siRNA),其中一个靶标是新进化的LEC2(LEC2b),以产生分阶段的siRNA。系统的基因组编辑实验显示,这个三方模块(miR2947-MuTC01-LEC2b)控制着棉花及其近亲的复杂折叠胚的形态发生。我们的研究揭示了一种基于 siRNA 的反式作用的三方调控途径,可用于高等植物的胚胎发育。
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来源期刊
Nature genetics
Nature genetics 生物-遗传学
CiteScore
43.00
自引率
2.60%
发文量
241
审稿时长
3 months
期刊介绍: Nature Genetics publishes the very highest quality research in genetics. It encompasses genetic and functional genomic studies on human and plant traits and on other model organisms. Current emphasis is on the genetic basis for common and complex diseases and on the functional mechanism, architecture and evolution of gene networks, studied by experimental perturbation. Integrative genetic topics comprise, but are not limited to: -Genes in the pathology of human disease -Molecular analysis of simple and complex genetic traits -Cancer genetics -Agricultural genomics -Developmental genetics -Regulatory variation in gene expression -Strategies and technologies for extracting function from genomic data -Pharmacological genomics -Genome evolution
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