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Genetic framework for flowering-time regulation by ambient temperature-responsive miRNAs in Arabidopsis

Authors
Lee, HannaYoo, Seong JeonLee, Jeong HwanKim, WanhuiYoo, Seung KwanFitzgerald, HeatherCarrington, James C.Ahn, Ji Hoon
Issue Date
5월-2010
Publisher
OXFORD UNIV PRESS
Citation
NUCLEIC ACIDS RESEARCH, v.38, no.9, pp.3081 - 3093
Indexed
SCIE
SCOPUS
Journal Title
NUCLEIC ACIDS RESEARCH
Volume
38
Number
9
Start Page
3081
End Page
3093
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/116478
DOI
10.1093/nar/gkp1240
ISSN
0305-1048
Abstract
Flowering is the primary trait affected by ambient temperature changes. Plant microRNAs (miRNAs) are small non-coding RNAs playing an important regulatory role in plant development. In this study, to elucidate the mechanism of flowering-time regulation by small RNAs, we identified six ambient temperature-responsive miRNAs (miR156, miR163, miR169, miR172, miR398 and miR399) in Arabidopsis via miRNA microarray and northern hybridization analyses. We also determined the expression profile of 120 unique miRNA loci in response to ambient temperature changes by miRNA northern hybridization analysis. The expression of the ambient temperature-responsive miRNAs and their target genes was largely anticorrelated at two different temperatures (16 and 23 degrees C). Interestingly, a lesion in short vegetative phase (SVP), a key regulator within the thermosensory pathway, caused alteration in the expression of miR172 and a subset of its target genes, providing a link between a thermosensory pathway gene and miR172. The miR172-overexpressing plants showed a temperature-independent early flowering phenotype, suggesting that modulation of miR172 expression leads to temperature insensitivity. Taken together, our results suggest a genetic framework for flowering-time regulation by ambient temperature-responsive miRNAs under non-stress temperature conditions.
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