Inhibition of Pre-mRNA Splicing Promotes Root Hair Development in Arabidopsis thaliana

被引:9
作者
Ishizawa, Miku [1 ]
Hashimoto, Kayo [1 ,7 ]
Ohtani, Misato [2 ]
Sano, Ryosuke [3 ]
Kurihara, Yukio [4 ]
Kusano, Hiroaki [5 ]
Demura, Taku [3 ]
Matsui, Minami [4 ]
Sato-Nara, Kumi [1 ,6 ]
机构
[1] Nara Womens Univ, Grad Sch Humanities & Sci, Dept Chem Biol & Environm Sci, Kitauoyanishimachi, Nara 6308506, Japan
[2] Univ Tokyo, Grad Sch Frontier Sci, Dept Integrated Biosci, Kashiwa, Chiba 2778562, Japan
[3] Nara Inst Sci & Technol, Grad Sch Sci & Technol, Div Biol Sci, 8916-5 Takayama, Ikoma, Nara 6300192, Japan
[4] RIKEN, Biomass Engn Res Div, Ctr Sustainable Resource Sci, Synthet Genom Res Grp,Tsurumi Ku, 1-7-22 Tsurumi Ku Suehirocho, Yokohama, Kanagawa 2300045, Japan
[5] Kyoto Univ, Res Inst Sustainable Humanosphere, Lab Plant Gene Express, Uji, Kyoto 6110011, Japan
[6] Nara Womens Univ, Div Nat Sci, Res Grp Biol Sci, Kitauoyanishimachi, Nara 6308506, Japan
[7] Natl Inst Basic Biol, Div Symbiot Syst, Okazaki, Aichi 4448585, Japan
基金
日本学术振兴会;
关键词
Arabidopsis thaliana; Light regulation; p14; protein; Pre-mRNA splicing; Root hair development; Splicing factor; SNRNP PROTEIN; RS DOMAIN; LIGHT; PHOTOMORPHOGENESIS; TRANSCRIPTOME; RESPONSES; U2;
D O I
10.1093/pcp/pcz150
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Root hairs protruding from epidermal cells increase the surface area for water absorption and nutrient uptake. Various environmental factors including light, oxygen concentration, carbon dioxide concentration, calcium and mycorrhizal associations promote root hair formation in Arabidopsis thaliana. Light regulates the expression of a large number of genes at the transcriptional and post-transcriptional levels; however, there is little information linking the light response to root hair development. In this study, we describe a novel mutant, light-sensitive root-hair development 1 (lrh1), that displays enhanced root hair development in response to light. Hypocotyl and root elongation was inhibited in the lrh1 mutant, which had a late flowering phenotype. We identified the gene encoding the p14 protein, a putative component of the splicing factor 3b complex essential for pre-mRNA splicing, as being responsible for the lrh1 phenotype. Indeed, regulation of alternative splicing was affected in lrh1 mutants and treatment with a splicing inhibitor mimicked the lrh1 phenotype. Genome-wide alterations in pre-mRNA splicing patterns including differential splicing events of light signaling- and circadian clock-related genes were found in lrh1 as well as a difference in transcriptional regulation of multiple genes including upregulation of essential genes for root hair development. These results suggest that pre-mRNA splicing is the key mechanism regulating root hair development in response to light signals.
引用
收藏
页码:1974 / 1985
页数:12
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