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Altered expression levels of long non‐coding natural antisense transcripts overlapping the UGT73C6 gene affect rosette size in Arabidopsis thaliana

玫瑰花结(裂殖体外观) 拟南芥 生物 基因 遗传学 基因表达 编码区 拟南芥 情感(语言学) 突变体 沟通 社会学 免疫学
作者
Shiv Kumar Meena,Michel Heidecker,Susanne Engelmann,Ammar Jaber,Tebbe de Vries,Saskia Triller,Katja Baumann-Kaschig,Steffen Abel,Sven‐Erik Behrens,Selma Gago‐Zachert
出处
期刊:Plant Journal [Wiley]
卷期号:113 (3): 460-477 被引量:8
标识
DOI:10.1111/tpj.16058
摘要

Natural antisense long non-coding RNAs (lncNATs) are involved in the regulation of gene expression in plants, modulating different relevant developmental processes and responses to various stimuli. We have identified and characterized two lncNATs (NAT1UGT73C6 and NAT2UGT73C6 , collectively NATsUGT73C6 ) from Arabidopsis thaliana that are transcribed from a gene fully overlapping UGT73C6, a member of the UGT73C subfamily of genes encoding UDP-glycosyltransferases (UGTs). Expression of both NATsUGT73C6 is developmentally controlled and occurs independently of the transcription of UGT73C6 in cis. Downregulation of NATsUGT73C6 levels through artificial microRNAs results in a reduction of the rosette area, while constitutive overexpression of NAT1UGT73C6 or NAT2UGT73C6 leads to the opposite phenotype, an increase in rosette size. This activity of NATsUGT73C6 relies on its RNA sequence and, although modulation of UGT73C6 in cis cannot be excluded, the observed phenotypes are not a consequence of the regulation of UGT73C6 in trans. The NATsUGT73C6 levels were shown to affect cell proliferation and thus individual leaf size. Consistent with this concept, our data suggest that the NATsUGT73C6 influence the expression levels of key transcription factors involved in regulating leaf growth by modulating cell proliferation. These findings thus reveal an additional regulatory layer on the process of leaf growth. In this work, we characterized at the molecular level two long non-coding RNAs (NATsUGT73C6 ) that are transcribed in the opposite direction to UGT73C6, a gene encoding a glucosyltransferase involved in brassinosteroid homeostasis in A. thaliana. Our results indicate that NATsUGT73C6 expression influences leaf growth by acting in trans and by modulating the levels of transcription factors that are involved in the regulation of cell proliferation.
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