Literature DB >> 32930788

The HD-Zip IV transcription factor SlHDZIV8 controls multicellular trichome morphology by regulating the expression of Hairless-2.

Qingmin Xie1, Yanna Gao1, Jing Li1, Qihong Yang1, Xiaolu Qu1, Hanxia Li1, Junhong Zhang1, Taotao Wang1, Zhibiao Ye1, Changxian Yang1.   

Abstract

Trichomes are specialized epidermal appendages that serve as excellent models to study cell morphogenesis. Although the molecular mechanism underlying trichome morphogenesis in Arabidopsis has been well characterized, most of the regulators essential for multicellular trichome morphology remain unknown in tomato. In this study, we determined that the recessive hairless-2 (hl-2) mutation in tomato causes severe distortion of all trichome types, along with increased stem fragility. Using map-based cloning, we found that the hl-2 phenotype was associated with a 100 bp insertion in the coding region of Nck-associated protein 1, a component of the SCAR/WAVE complex. Direct protein-protein interaction was detected between Hl-2 and Hl (SRA1, specifically Rac1-associated protein) using yeast two-hybrid and co-immunoprecipitation assays, suggesting that these proteins may work together during trichome formation. In addition, knock-down of a HD-Zip IV transcription factor, HDZIPIV8, distorted trichomes similar to the hl-2 mutant. HDZIPIV8 regulates the expression of Hl-2 by binding to the L1-box in the Hl-2 promoter region, and is involved in organizing actin filaments. The brittleness of hl-2 stems was found to result from decreased cellulose content. Taken together, these findings suggest that the Hl-2 gene plays an important role in controlling multicellular trichome morphogenesis and mechanical properties of stems in tomato plants.
© The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Experimental Biology. All rights reserved. For permissions, please email: journals.permissions@oup.com.

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Keywords:  zzm321990 HDZIV8zzm321990 ; zzm321990 hairless-2zzm321990 ; mechanical property; stem; tomato; trichome

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Year:  2020        PMID: 32930788     DOI: 10.1093/jxb/eraa428

Source DB:  PubMed          Journal:  J Exp Bot        ISSN: 0022-0957            Impact factor:   6.992


  6 in total

1.  Tomato ARPC1 regulates trichome morphology and density and terpene biosynthesis.

Authors:  Jae-In Chun; Seong-Min Kim; Na-Rae Jeong; Sang Hee Kim; Choonkyun Jung; Jin-Ho Kang
Journal:  Planta       Date:  2022-07-12       Impact factor: 4.540

Review 2.  Molecular Mechanisms of Plant Trichome Development.

Authors:  Guoliang Han; Yuxia Li; Zongran Yang; Chengfeng Wang; Yuanyuan Zhang; Baoshan Wang
Journal:  Front Plant Sci       Date:  2022-06-01       Impact factor: 6.627

Review 3.  HD-ZIP Gene Family: Potential Roles in Improving Plant Growth and Regulating Stress-Responsive Mechanisms in Plants.

Authors:  Rahat Sharif; Ali Raza; Peng Chen; Yuhong Li; Enas M El-Ballat; Abdur Rauf; Christophe Hano; Mohamed A El-Esawi
Journal:  Genes (Basel)       Date:  2021-08-17       Impact factor: 4.096

4.  Functional characterization of the tomato HAIRPLUS gene reveals the implication of the epigenome in the control of glandular trichome formation.

Authors:  Rocío Fonseca; Carmen Capel; Fernando J Yuste-Lisbona; Jorge L Quispe; Cristina Gómez-Martín; Ricardo Lebrón; Michael Hackenberg; José L Oliver; Trinidad Angosto; Rafael Lozano; Juan Capel
Journal:  Hortic Res       Date:  2022-01-18       Impact factor: 6.793

5.  Comparative Transcriptome Analysis of Hard and Tender Fruit Spines of Cucumber to Identify Genes Involved in the Morphological Development of Fruit Spines.

Authors:  Duo Lv; Gang Wang; Qi Zhang; Yao Yu; Pei-Chao Qin; Jin-An Pang; Jing-Xian Sun; Ke-Yan Zhang; Huan-Le He; Run Cai; Jun-Song Pan
Journal:  Front Plant Sci       Date:  2022-03-15       Impact factor: 5.753

6.  Genome-wide identification and characterization of the HD-Zip gene family and expression analysis in response to stress in Rehmannia glutinosa Libosch.

Authors:  Yunhao Zhu; Shuping Peng; Le Zhao; Weisheng Feng; Chengming Dong
Journal:  Plant Signal Behav       Date:  2022-12-31
  6 in total

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