Evolutionary Dynamics of Chromatin Structure and Duplicate Gene Expression in Diploid and Allopolyploid Cotton

Author:

Hu Guanjing12ORCID,Grover Corrinne E3ORCID,Vera Daniel L4,Lung Pei-Yau5,Girimurugan Senthil B6,Miller Emma R3,Conover Justin L378ORCID,Ou Shujun9,Xiong Xianpeng2,Zhu De2,Li Dongming210,Gallagher Joseph P11,Udall Joshua A12,Sui Xin5,Zhang Jinfeng5ORCID,Bass Hank W4ORCID,Wendel Jonathan F3ORCID

Affiliation:

1. State Key Laboratory of Cotton Bio-breeding and Integrated, Chinese Academy of Agricultural Sciences, Institute of Cotton Research , Anyang 455000 , China

2. Shenzhen Branch, Guangdong Laboratory of Lingnan Modern Agriculture, Key Laboratory of Synthetic Biology, Ministry of Agriculture and Rural Affairs, Chinese Academy of Agricultural Sciences, Agricultural Genomics Institute at Shenzhen , Shenzhen 518120 , China

3. Department of Ecology, Evolution and Organismal Biology, Iowa State University , Ames, IA 50011 , USA

4. Department of Biological Science, Florida State University , Tallahassee, FL 32306 , USA

5. Department of Statistics, Florida State University , Tallahassee, FL 32306 , USA

6. Department of Mathematics, Florida Gulf Coast University , Fort Myers, FL 33965 , USA

7. Department of Ecology and Evolutionary Biology, University of Arizona , Tucson, AZ 85721 , USA

8. Department of Molecular and Cellular Biology, University of Arizona , Tucson, AZ 85721 , USA

9. Department of Molecular Genetics, Ohio State University , Columbus, OH 43210 , USA

10. Zhengzhou Research Base, State Key Laboratory of Cotton Biology, School of Agricultural Sciences, Zhengzhou University , Zhengzhou 450000 , China

11. Forage Seed and Cereal Research Unit, USDA/Agricultural Research Service , Corvallis, OR 97331 , USA

12. Crop Germplasm Research Unit, USDA/Agricultural Research Service , College Station, TX 77845 , USA

Abstract

Abstract Polyploidy is a prominent mechanism of plant speciation and adaptation, yet the mechanistic understandings of duplicated gene regulation remain elusive. Chromatin structure dynamics are suggested to govern gene regulatory control. Here, we characterized genome-wide nucleosome organization and chromatin accessibility in allotetraploid cotton, Gossypium hirsutum (AADD, 2n = 4X = 52), relative to its two diploid parents (AA or DD genome) and their synthetic diploid hybrid (AD), using DNS-seq. The larger A-genome exhibited wider average nucleosome spacing in diploids, and this intergenomic difference diminished in the allopolyploid but not hybrid. Allopolyploidization also exhibited increased accessibility at promoters genome-wide and synchronized cis-regulatory motifs between subgenomes. A prominent cis-acting control was inferred for chromatin dynamics and demonstrated by transposable element removal from promoters. Linking accessibility to gene expression patterns, we found distinct regulatory effects for hybridization and later allopolyploid stages, including nuanced establishment of homoeolog expression bias and expression level dominance. Histone gene expression and nucleosome organization are coordinated through chromatin accessibility. Our study demonstrates the capability to track high-resolution chromatin structure dynamics and reveals their role in the evolution of cis-regulatory landscapes and duplicate gene expression in polyploids, illuminating regulatory ties to subgenomic asymmetry and dominance.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

National Science Foundation of United States

Publisher

Oxford University Press (OUP)

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