A pan-TE map highlights transposable elements underlying domestication and agronomic traits in Asian rice

泛 TE 图谱突出了亚洲水稻驯化和农艺性状背后的转座因子

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作者:Xiaoxia Li, Xiaofan Dai, Huiying He, Yang Lv, Longbo Yang, Wenchuang He, Congcong Liu, Hua Wei, Xiangpei Liu, Qiaoling Yuan, Xianmeng Wang, Tianyi Wang, Bintao Zhang, Hong Zhang, Wu Chen, Yue Leng, Xiaoman Yu, Hongge Qian, Bin Zhang, Mingliang Guo, Zhipeng Zhang, Chuanlin Shi, Qianqian Zhang, Yan Cu

Abstract

Transposable elements (TEs) are ubiquitous genomic components and hard to study due to being highly repetitive. Here we assembled 232 chromosome-level genomes based on long-read sequencing data. Coupling the 232 genomes with 15 existing assemblies, we developed a pan-TE map comprising both cultivated and wild Asian rice. We detected 177 084 high-quality TE variations and inferred their derived state using outgroups. We found TEs were one source of phenotypic variation during rice domestication and differentiation. We identified 1246 genes whose expression variation was associated with TEs but not single-nucleotide polymorphisms (SNPs), such as OsRbohB, and validated OsRbohB's relative expression activity using a dual-Luciferase (LUC) reporter assays system. Our pan-TE map allowed us to detect multiple novel loci associated with agronomic traits. Collectively, our findings highlight the contributions of TEs to domestication, differentiation and agronomic traits in rice, and there is massive potential for gene cloning and molecular breeding by the high-quality Asian pan-TE map we generated.

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