Molecular basis of differential adventitious rooting competence in poplar genotypes

形成层 生物 转录组 转录因子 调节器 基因 细胞生物学 植物 基因表达 遗传学 木质部
作者
Alok Ranjan,Irene Perrone,Sanaria Alallaq,Rajesh Kumar Singh,Adeline Rigal,Federica Brunoni,Walter Chitarra,Frédéric Guinet,Annegret Kohler,Francis Martin,Nathaniel R. Street,Rishikesh P. Bhalerao,Valérie Legué,Catherine Bellini
出处
期刊:Journal of Experimental Botany [Oxford University Press]
卷期号:73 (12): 4046-4064 被引量:15
标识
DOI:10.1093/jxb/erac126
摘要

Recalcitrant adventitious root (AR) development is a major hurdle in propagating commercially important woody plants. Although significant progress has been made to identify genes involved in subsequent steps of AR development, the molecular basis of differences in apparent recalcitrance to form AR between easy-to-root and difficult-to-root genotypes remains unknown. To address this, we generated cambium tissue-specific transcriptomic data from stem cuttings of hybrid aspen, T89 (difficult-to-root) and hybrid poplar OP42 (easy-to-root), and used transgenic approaches to verify the role of several transcription factors in the control of adventitious rooting. Increased peroxidase activity was positively correlated with better rooting. We found differentially expressed genes encoding reactive oxygen species scavenging proteins to be enriched in OP42 compared with T89. A greater number of differentially expressed transcription factors in cambium cells of OP42 compared with T89 was revealed by a more intense transcriptional reprograming in the former. PtMYC2, a potential negative regulator, was less expressed in OP42 compared with T89. Using transgenic approaches, we demonstrated that PttARF17.1 and PttMYC2.1 negatively regulate adventitious rooting. Our results provide insights into the molecular basis of genotypic differences in AR and implicate differential expression of the master regulator MYC2 as a critical player in this process.
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