Simultaneous Establishing Single-cell Transcriptome Atlas and Chromatin Accessibility Landscapes in Allotetraploid Leguminous Plant

Author:

Liu Hao1,Deng Quanqing1,Du Puxuan1,Lu Qing2,Gangurde Sunil3ORCID,Xiao Yuan4,Hu Dongxiu4,Wang Wenyi5,Li Haifen2,Li Shaoxiong2,Liu Haiyan2,Huang Lu4,Wang Runfeng4,Liang Xuanqiang2,Varshney Rajeev6ORCID,Hong Yanbin2,Chen Xiaoping2

Affiliation:

1. Guangdong academy of agriculture sciences

2. Crops Research Institute, Guangdong Academy of Agricultural Sciences

3. University of Georgia

4. Guangdong Academy of Agricultural Sciences

5. South China Agriculture University

6. International Crops Research Institute for the Semi-Arid Tropics (ICRISAT)

Abstract

Abstract Plant cell proliferation associated with multiple layers of gene regulation, including modulation of transcriptome by changes in chromatin accessibility. However, cell proliferation is an asynchronous process precluding a temporal understanding of regulatory events leading to single-cell fate commitment. Here, a robust single nucleus RNA sequencing approach, where single nucleus employed for simultaneous investigation of transcriptome (snRNA-seq) and chromatin accessibility (snATAC-seq) landscapes in the same single-cell of Arachis hypogaea leaves. A total of 5,930 leaf cells with 10,793 expressed genes were used to construct development trajectory and characterized large-scale critical differentially expressed genes (DEGs). Additionally, uncovered extending insights of chromatin opening guided 5,315 DEGs expression involved biological pathway determines differentiation direction in distinct cell-types. But obtained members in each cell-clusters not exhibits obvious difference in distinct cell-cycling regulated genome duplication phases. Furthermore, snRNA-seq identified AT-hook transcription factor AhAHL11 promotes leaf area growth by modulating auxin content, but snATAC-seq identified AhBHLH143 displays contrasting results to repress the leaf development by jasmonic acid pathway in ectopically expressed Arabidopsis. We concluded that, snRNA-seq combined with snATAC-seq is an extensible platform to explore association between the chromatin regulatory events and gene expression across diversity cell-types in peanut leaf, broadly application of this approach will enable significant advances in the functional research of tissues ontology in plant species.

Publisher

Research Square Platform LLC

Reference58 articles.

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