Genome‐wide DNase I‐hypersensitive site assay reveals distinct genomic distributions and functional features of open chromatin in autopolyploid sugarcane

生物 基因组 多倍体 染色质 基因 糖精 遗传学 发起人 计算生物学 转录因子 基因组组织 基因表达 植物
作者
Guangrun Yu,Bo Sun,Zhenggang Zhu,Eid M Mehareb,Allen C. T. Teng,Jinlei Han,Hui Zhang,Jiayong Liu,Xinlong Liu,Ghulam Raza,Baohong Zhang,Yuebin Zhang,Kai Wang
出处
期刊:Plant Journal [Wiley]
卷期号:117 (2): 573-589
标识
DOI:10.1111/tpj.16513
摘要

The characterization of cis-regulatory DNA elements (CREs) is essential for deciphering the regulation of gene expression in eukaryotes. Although there have been endeavors to identify CREs in plants, the properties of CREs in polyploid genomes are still largely unknown. Here, we conducted the genome-wide identification of DNase I-hypersensitive sites (DHSs) in leaf and stem tissues of the auto-octoploid species Saccharum officinarum. We revealed that DHSs showed highly similar distributions in the genomes of these two S. officinarum tissues. Notably, we observed that approximately 74% of DHSs were located in distal intergenic regions, suggesting considerable differences in the abundance of distal CREs between S. officinarum and other plants. Leaf- and stem-dependent transcriptional regulatory networks were also developed by mining the binding motifs of transcription factors (TFs) from tissue-specific DHSs. Four TEOSINTE BRANCHED 1, CYCLOIDEA, and PCF1 (TCP) TFs (TCP2, TCP4, TCP7, and TCP14) and two ethylene-responsive factors (ERFs) (ERF109 and ERF03) showed strong causal connections with short binding distances from each other, pointing to their possible roles in the regulatory networks of leaf and stem development. Through functional validation in transiently transgenic protoplasts, we isolate a set of tissue-specific promoters. Overall, the DHS maps presented here offer a global view of the potential transcriptional regulatory elements in polyploid sugarcane and can be expected to serve as a valuable resource for both transcriptional network elucidation and genome editing in sugarcane breeding.
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