Biotinylated Tn5 transposase‐mediated CUT &Tag efficiently profiles transcription factor‐DNA interactions in plants

生物 拟南芥 染色质 生物素化 转录因子 计算生物学 DNA 转座酶 遗传学 细胞生物学 基因 分子生物学 基因组 转座因子 突变体
作者
Xiaoyuan Tao,Xueying Guan,Gaojie Hong,Yuqing He,Sujuan Li,Shouli Feng,Jian Wang,Guang Chen,Fei Xu,Jia‐Wei Wang,Shengchun Xu
出处
期刊:Plant Biotechnology Journal [Wiley]
卷期号:21 (6): 1191-1205 被引量:5
标识
DOI:10.1111/pbi.14029
摘要

In contrast to CUT&Tag approaches for profiling bulk histone modifications, current CUT&Tag methods for analysing specific transcription factor (TF)-DNA interactions remain technically challenging due to TFs having relatively low abundance. Moreover, an efficient CUT&Tag strategy for plant TFs is not yet available. Here, we first applied biotinylated Tn5 transposase-mediated CUT&Tag (B-CUT&Tag) to produce high-quality libraries for interrogating TF-DNA interactions. B-CUT&Tag combines streptavidin-biotin-based DNA purification with routine CUT&Tag, optimizing the removal of large amounts of intact chromatin not targeted by specific TFs. The biotinylated chromatin fragments are then purified for construction of deep sequencing libraries or qPCR analysis. We applied B-CUT&Tag to probe genome-wide DNA targets of Squamosa promoter-binding-like protein 9 (SPL9), a well-established TF in Arabidopsis; the resulting profiles were efficient and consistent in demonstrating its well-established target genes in juvenile-adult transition/flowering, trichome development, flavonoid biosynthesis, wax synthesis and branching. Interestingly, our results indicate functions of AtSPL9 in modulating growth-defence trade-offs. In addition, we established a method for applying qPCR after CUT&Tag (B-CUT&Tag-qPCR) and successfully validated the binding of SPL9 in Arabidopsis and PHR2 in rice. Our study thus provides a convenient and highly efficient CUT&Tag strategy for profiling TF-chromatin interactions that is widely applicable to the annotation of cis-regulatory elements for crop improvement.
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