Ploidy variation induces butterfly effect on chromatin topology in wheat

Author:

Jiao Wu1ORCID,Lu Kening1ORCID,Wen Mingxing1,Mao Junrong1ORCID,Ni Zhongfu2,Chen Z. Jeffrey3ORCID,Wang Xiue1,Song Qingxin1ORCID,Yuan Jingya1ORCID

Affiliation:

1. State Key Laboratory of Crop Genetics & Germplasm Enhancement and Utilization, Jiangsu Collaborative Innovation Center for Modern Crop Production Nanjing Agricultural University Nanjing 210095 Jiangsu China

2. Frontiers Science Center for Molecular Design Breeding/Key Laboratory of Crop Heterosis and Utilization (MOE)/College of Agronomy and Biotechnology China Agricultural University Beijing 100193 China

3. Department of Molecular Biosciences The University of Texas at Austin Austin 78712 Texas USA

Abstract

SUMMARYPolyploidy is a prominent driver of plant diversification, accompanied with dramatic chromosomal rearrangement and epigenetic changes that affect gene expression. How chromatin interactions within and between subgenomes adapt to ploidy transition remains poorly understood. We generate open chromatin interaction maps for natural hexaploid wheat (AABBDD), extracted tetraploid wheat (AABB), diploid wheat progenitor Aegilops tauschii (DD) and resynthesized hexaploid wheat (RHW, AABBDD). Thousands of intra‐ and interchromosomal loops are de novo established or disappeared in AB subgenomes after separation of D subgenome, in which 37–95% of novel loops are lost again in RHW after merger of D genome. Interestingly, more than half of novel loops are formed by cascade reactions that are triggered by disruption of chromatin interaction between AB and D subgenomes. The interaction repressed genes in RHW relative to DD are expression suppressed, resulting in more balanced expression of the three homoeologs in RHW. The interaction levels of cascade anchors are decreased step‐by‐step. Leading single nucleotide polymorphisms of yield‐ and plant architecture‐related quantitative trait locus are significantly enriched in cascade anchors. The expression of 116 genes interacted with these anchors are significantly correlated with the corresponding traits. Our findings reveal trans‐regulation of intrachromosomal loops by interchromosomal interactions during genome merger and separation in polyploid species.

Funder

National Natural Science Foundation of China

Priority Academic Program Development of Jiangsu Higher Education Institutions

Jiangsu Collaborative Innovation Center for Modern Crop Production

Publisher

Wiley

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