WHIRLY1 regulates aliphatic glucosinolate biosynthesis in early seedling development of Arabidopsis

硫代葡萄糖苷 生物 苗木 拟南芥 拟南芥 基因 突变体 遗传学 野生型 非生物胁迫 植物 生物化学 芸苔属
作者
Nguyễn Thùy Linh,Pinelopi Moutesidi,Jörg Ziegler,Anike Glasneck,Solmaz Khosravi,Steffen Abel,Göetz Hensel,Karin Krupinska,Klaus Humbeck
出处
期刊:Plant Journal [Wiley]
标识
DOI:10.1111/tpj.17181
摘要

SUMMARY WHIRLY1 belongs to a family of plant‐specific transcription factors capable of binding DNA or RNA in all three plant cell compartments that contain genetic materials. In Arabidopsis thaliana , WHIRLY1 has been studied at the later stages of plant development, including flowering and leaf senescence, as well as in biotic and abiotic stress responses. In this study, WHIRLY1 knockout mutants of A. thaliana were prepared by CRISPR/Cas9‐mediated genome editing to investigate the role of WHIRLY1 during early seedling development. The loss‐of‐function of WHIRLY1 in 5‐day‐old seedlings did not cause differences in the phenotype and the photosynthetic performance of the emerging cotyledons compared with the wild type. Nevertheless, comparative RNA sequencing analysis revealed that the knockout of WHIRLY1 affected the expression of a small but specific set of genes during this critical phase of development. About 110 genes were found to be significantly deregulated in the knockout mutant, wherein several genes involved in the early steps of aliphatic glucosinolate (GSL) biosynthesis were suppressed compared with wild‐type plants. The downregulation of these genes in WHIRLY1 knockout lines led to decreased GSL contents in seedlings and in seeds. Since GSL catabolism mediated by myrosinases was not altered during seed‐to‐seedling transition, the results suggest that AtWHIRLY1 plays a major role in modulation of aliphatic GSL biosynthesis during early seedling development. In addition, phylogenetic analysis revealed a coincidence between the evolution of methionine‐derived aliphatic GSLs and the addition of a new WHIRLY in core families of the plant order Brassicales.

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