Literature DB >> 28766720

Molecular characterization of rice arsenic-induced RING finger E3 ligase 2 (OsAIR2) and its heterogeneous overexpression in Arabidopsis thaliana.

Sun-Goo Hwang1, Sandeep Chapagain1, A-Reum Han1, Yong Chan Park1, Hyeon Mi Park1, Yong Hwan Kim2, Cheol Seong Jang1.   

Abstract

Arsenic (As) accumulation adversely affects the growth and productivity of plants and poses a serious threat to human health and food security. In this study, we identified one As-responsive Really Interesting New Gene (RING) E3 ubiquitin ligase gene from rice root tissues during As stress. We named it Oryza sativa As-Induced RING E3 ligase 2 (OsAIR2). Expression of OsAIR2 was induced under various abiotic stress conditions, including heat, salt, drought and As exposure. Results of an in vitro ubiquitination assay showed that OsAIR2 possesses an E3 ligase activity. Within the cell, OsAIR2 was found to be localized to the Golgi apparatus. Using yeast two-hybrid (Y2H) assay, the 3-ketoacyl-CoA thiolase (KAT) protein was identified as an interaction partner. We found that the O. sativa KAT1 (OsKAT1) is localized to the cytosol and peroxisomes. Moreover, in vitro pull-down assay verified the physical interaction between OsAIR2 and OsKAT1. Interestingly, in vitro ubiquitination assay and in vivo proteasomal degradation assay revealed that OsAIR2 ubiquitinates OsKAT1 and promotes the degradation of OsKAT1 via the 26S proteasome degradation pathway. Heterogeneous overexpression of OsAIR2 in Arabidopsis improved the seed germination and increased the root length under arsenate stress conditions. Therefore, these results suggest that OsAIR2 may be associated with the plant response to As stress and acts as a positive regulator of As stress tolerance.
© 2017 Scandinavian Plant Physiology Society.

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Year:  2017        PMID: 28766720     DOI: 10.1111/ppl.12607

Source DB:  PubMed          Journal:  Physiol Plant        ISSN: 0031-9317            Impact factor:   4.500


  6 in total

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Authors:  Ju Hee Kim; Sung Don Lim; Cheol Seong Jang
Journal:  Plant Mol Biol       Date:  2019-02-07       Impact factor: 4.076

2.  Oryza sativa salt-induced RING E3 ligase 2 (OsSIRP2) acts as a positive regulator of transketolase in plant response to salinity and osmotic stress.

Authors:  Sandeep Chapagain; Yong Chan Park; Ju Hee Kim; Cheol Seong Jang
Journal:  Planta       Date:  2017-12-28       Impact factor: 4.116

3.  SSR marker-based genetic diversity analysis and SNP haplotyping of genes associating abiotic and biotic stress tolerance, rice growth and development and yield across 93 rice landraces.

Authors:  Smitha Kunhiraman Vasumathy; Manickavelu Alagu
Journal:  Mol Biol Rep       Date:  2021-07-28       Impact factor: 2.316

4.  Two-State Co-Expression Network Analysis to Identify Genes Related to Salt Tolerance in Thai rice.

Authors:  Apichat Suratanee; Chidchanok Chokrathok; Panita Chutimanukul; Nopphawitchayaphong Khrueasan; Teerapong Buaboocha; Supachitra Chadchawan; Kitiporn Plaimas
Journal:  Genes (Basel)       Date:  2018-11-29       Impact factor: 4.096

5.  Relationships Among Arsenic-Related Traits, Including Rice Grain Arsenic Concentration and Straighthead Resistance, as Revealed by Genome-Wide Association.

Authors:  Shannon R M Pinson; D Jo Heuschele; Jeremy D Edwards; Aaron K Jackson; Santosh Sharma; Jinyoung Y Barnaby
Journal:  Front Genet       Date:  2022-03-14       Impact factor: 4.599

6.  Genome-Scale Profiling and High-Throughput Analyses Unravel the Genetic Basis of Arsenic Content Variation in Rice.

Authors:  Sang-Beom Lee; Gyeong-Jin Kim; Jung-Du Shin; Woojin Chung; Soo-Kwon Park; Geun-Hyoung Choi; Sang-Won Park; Yong-Jin Park
Journal:  Front Plant Sci       Date:  2022-07-18       Impact factor: 6.627

  6 in total

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