A cytokinin response factor PtCRF1 is involved in the regulation of wood formation in poplar

细胞分裂素 形成层 维管形成层 转录因子 生物 细胞生物学 磷脂酸盐 拟南芥 突变体 韧皮部 转录调控 信号转导 木质部 基因 植物 遗传学 生长素 二酰甘油激酶 蛋白激酶C
作者
Xiaokang Fu,Yufeng Xin,Gui Shen,Keming Luo,Changzheng Xu,WU Neng-biao
出处
期刊:Tree Physiology [Oxford University Press]
卷期号:44 (2) 被引量:1
标识
DOI:10.1093/treephys/tpad156
摘要

Abstract Wood formation is a complex developmental process under the control of multiple levels of regulatory transcriptional network and hormone signals in trees. It is well known that cytokinin (CK) signaling plays an important role in maintaining the activity of the vascular cambium. The CK response factors (CRFs) encoding a subgroup of AP2 transcription factors have been identified to mediate the CK-dependent regulation in different plant developmental processes. However, the functions of CRFs in wood development remain unclear. Here, we characterized the function of PtCRF1, a CRF transcription factor isolated from poplar, in the process of wood formation. The PtCRF1 is preferentially expressed in secondary vasculature, especially in vascular cambium and secondary phloem, and encodes a transcriptional activator. Overexpression of PtCRF1 in transgenic poplar plants led to a significant reduction in the cell layer number of vascular cambium. The development of wood tissue was largely promoted in the PtCRF1-overexpressing lines, while it was significantly compromised in the CRISPR/Cas9-generated double mutant plants of PtCRF1 and its closest homolog PtCRF2. The RNA sequencing (RNA-seq) and quantitative reverse transcription PCR (RT-qPCR) analyses showed that PtCRF1 repressed the expression of the typical CK-responsive genes. Furthermore, bimolecular fluorescence complementation assays revealed that PtCRF1 competitively inhibits the direct interactions between histidine phosphotransfer proteins and type-B response regulator by binding to PtHP protein. Collectively, these results indicate that PtCRF1 negatively regulates CK signaling and is required for woody cell differentiation in poplar.
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