A zinc finger protein, interacted with cyclophilin, affects root development via IAA pathway in rice
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Title
A zinc finger protein, interacted with cyclophilin, affects root development via IAA pathway in rice
Authors
Keywords
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Journal
Journal of Integrative Plant Biology
Volume 59, Issue 7, Pages 496-505
Publisher
Wiley
Online
2017-03-07
DOI
10.1111/jipb.12531
References
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Related references
Note: Only part of the references are listed.- SCFTIR1/AFB-Based Auxin Perception: Mechanism and Role in Plant Growth and Development
- (2015) Mohammad Salehin et al. PLANT CELL
- LATERAL ROOTLESS2, a Cyclophilin Protein, Regulates Lateral Root Initiation and Auxin Signaling Pathway in Rice
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- OsCYP2, a chaperone involved in degradation of auxin-responsive proteins, plays crucial roles in rice lateral root initiation
- (2013) Bo Kang et al. PLANT JOURNAL
- A zinc finger protein geneZFP5integrates phytohormone signaling to control root hair development in Arabidopsis
- (2012) Lijun An et al. PLANT JOURNAL
- Proteomic identification of OsCYP2, a rice cyclophilin that confers salt tolerance in rice (Oryza sativa L.) seedlings when overexpressed
- (2011) Song-Lin Ruan et al. BMC PLANT BIOLOGY
- A Gain-of-Function Mutation in OsIAA11 Affects Lateral Root Development in Rice
- (2011) Zhen-Xing Zhu et al. Molecular Plant
- Zinc Finger Protein5 Is Required for the Control of Trichome Initiation by Acting Upstream of Zinc Finger Protein8 in Arabidopsis
- (2011) Z. Zhou et al. PLANT PHYSIOLOGY
- Lateral root organogenesis — from cell to organ
- (2010) Eva Benková et al. CURRENT OPINION IN PLANT BIOLOGY
- Genetic control of root development in rice, the model cereal
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- Genome-wide analysis of the auxin-responsive transcriptome downstream of iaa1 and its expression analysis reveal the diversity and complexity of auxin-regulated gene expression
- (2009) Dong Ju Lee et al. JOURNAL OF EXPERIMENTAL BOTANY
- Heterologous Expression of a Salinity and Developmentally Regulated Rice Cyclophilin Gene (OsCyp2) in E. coli and S. cerevisiae Confers Tolerance Towards Multiple Abiotic Stresses
- (2009) Sumita Kumari et al. MOLECULAR BIOTECHNOLOGY
- Characterization of OsIAA1 gene, a member of rice Aux/IAA family involved in auxin and brassinosteroid hormone responses and plant morphogenesis
- (2009) Yaling Song et al. PLANT MOLECULAR BIOLOGY
- Arabidopsis lateral root development: an emerging story
- (2009) Benjamin Péret et al. TRENDS IN PLANT SCIENCE
- Domain II Mutations in CRANE/IAA18 Suppress Lateral Root Formation and Affect Shoot Development in Arabidopsis thaliana
- (2008) Takeo Uehara et al. PLANT AND CELL PHYSIOLOGY
- Comprehensive expression profiling analysis of OsIAA gene family in developmental processes and in response to phytohormone and stress treatments
- (2008) Yaling Song et al. PLANTA
- Auxin acts as a local morphogenetic trigger to specify lateral root founder cells
- (2008) J. G. Dubrovsky et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
- Conserved and diverse mechanisms in root development
- (2007) Frank Hochholdinger et al. CURRENT OPINION IN PLANT BIOLOGY
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