Literature DB >> 22318226

The cyclophilin DIAGEOTROPICA has a conserved role in auxin signaling.

Meirav Lavy1, Michael J Prigge, Kristof Tigyi, Mark Estelle.   

Abstract

Auxin has a fundamental role throughout the life cycle of land plants. Previous studies showed that the tomato cyclophilin DIAGEOTROPICA (DGT) promotes auxin response, but its specific role in auxin signaling remains unknown. We sequenced candidate genes in auxin-insensitive mutants of Physcomitrella patens and identified mutations in highly conserved regions of the moss ortholog of tomato DGT. As P. patens and tomato diverged from a common ancestor more than 500 million years ago, this result suggests a conserved and central role for DGT in auxin signaling in land plants. In this study we characterize the P. patens dgt (Ppdgt) mutants and show that their response to auxin is altered, affecting the chloronema-to-caulonema transition and the development of rhizoids. To gain an understanding of PpDGT function we tested its interactions with the TIR1/AFB-dependent auxin signaling pathway. We did not observe a clear effect of the Ppdgt mutation on the degradation of Aux/IAA proteins. However, the induction of several auxin-regulated genes was reduced. Genetic analysis revealed that dgt can suppress the phenotype conferred by overexpression of an AFB auxin receptor. Our results indicate that the DGT protein affects auxin-induced transcription and has a conserved function in auxin regulation in land plants.

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Year:  2012        PMID: 22318226      PMCID: PMC3283122          DOI: 10.1242/dev.074831

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  49 in total

1.  The auxin-resistant diageotropica mutant of tomato responds to gravity via an auxin-mediated pathway.

Authors:  M S Rice; T L Lomax
Journal:  Planta       Date:  2000-05       Impact factor: 4.116

2.  Role of ABA and ABI3 in desiccation tolerance.

Authors:  A Khandelwal; S H Cho; H Marella; Y Sakata; P-F Perroud; A Pan; R S Quatrano
Journal:  Science       Date:  2010-01-29       Impact factor: 47.728

3.  Insensitivity of the diageotropica tomato mutant to auxin.

Authors:  M O Kelly; K J Bradford
Journal:  Plant Physiol       Date:  1986-11       Impact factor: 8.340

4.  Auxin physiology of the tomato mutant diageotropica.

Authors:  S G Daniel; D L Rayle; R E Cleland
Journal:  Plant Physiol       Date:  1989       Impact factor: 8.340

Review 5.  Evolutionary crossroads in developmental biology: Physcomitrella patens.

Authors:  Michael J Prigge; Magdalena Bezanilla
Journal:  Development       Date:  2010-11       Impact factor: 6.868

6.  Some Physiological Characteristics of the Ethylene-requiring Tomato Mutant Diageotropica.

Authors:  R W Zobel
Journal:  Plant Physiol       Date:  1973-10       Impact factor: 8.340

7.  Cytokinin inhibits a subset of diageotropica-dependent primary auxin responses in tomato.

Authors:  Catharina Coenen; May Christian; Hartwig Lüthen; Terri L Lomax
Journal:  Plant Physiol       Date:  2003-04       Impact factor: 8.340

8.  Functional genomic analysis of the AUXIN/INDOLE-3-ACETIC ACID gene family members in Arabidopsis thaliana.

Authors:  Paul J Overvoorde; Yoko Okushima; José M Alonso; April Chan; Charlie Chang; Joseph R Ecker; Beth Hughes; Amy Liu; Courtney Onodera; Hong Quach; Alison Smith; Guixia Yu; Athanasios Theologis
Journal:  Plant Cell       Date:  2005-11-11       Impact factor: 11.277

9.  The evolution of nuclear auxin signalling.

Authors:  Ivan A Paponov; William Teale; Daniel Lang; Martina Paponov; Ralf Reski; Stefan A Rensing; Klaus Palme
Journal:  BMC Evol Biol       Date:  2009-06-03       Impact factor: 3.260

10.  Fine mapping in tomato using microsynteny with the Arabidopsis genome: the Diageotropica (Dgt) locus.

Authors:  KwangChul Oh; Kristine Hardeman; Maria G Ivanchenko; Mary Ellard-Ivey; Andreas Nebenführ; T J White; Terri L Lomax
Journal:  Genome Biol       Date:  2002-08-28       Impact factor: 13.583

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  17 in total

1.  A Trypsin Family Protein Gene Controls Tillering and Leaf Shape in Barley.

Authors:  Lingzhen Ye; Yin Wang; Lizhi Long; Hao Luo; Qiufang Shen; Sue Broughton; Dianxing Wu; Xiaoli Shu; Fei Dai; Chengdao Li; Guoping Zhang
Journal:  Plant Physiol       Date:  2019-08-19       Impact factor: 8.340

2.  Peptidyl-prolyl isomerization targets rice Aux/IAAs for proteasomal degradation during auxin signalling.

Authors:  Hongwei Jing; Xiaolu Yang; Jian Zhang; Xuehui Liu; Huakun Zheng; Guojun Dong; Jinqiang Nian; Jian Feng; Bin Xia; Qian Qian; Jiayang Li; Jianru Zuo
Journal:  Nat Commun       Date:  2015-06-22       Impact factor: 14.919

Review 3.  SCFTIR1/AFB-based auxin perception: mechanism and role in plant growth and development.

Authors:  Mohammad Salehin; Rammyani Bagchi; Mark Estelle
Journal:  Plant Cell       Date:  2015-01-20       Impact factor: 11.277

4.  Genome wide analysis of Cyclophilin gene family from rice and Arabidopsis and its comparison with yeast.

Authors:  Dipesh Kumar Trivedi; Sandep Yadav; Neha Vaid; Narendra Tuteja
Journal:  Plant Signal Behav       Date:  2012-10-16

5.  A Plant Phytosulfokine Peptide Initiates Auxin-Dependent Immunity through Cytosolic Ca2+ Signaling in Tomato.

Authors:  Huan Zhang; Zhangjian Hu; Cui Lei; Chenfei Zheng; Jiao Wang; Shujun Shao; Xin Li; Xiaojian Xia; Xinzhong Cai; Jie Zhou; Yanhong Zhou; Jingquan Yu; Christine H Foyer; Kai Shi
Journal:  Plant Cell       Date:  2018-03-06       Impact factor: 11.277

6.  Mutational studies of the Aux/IAA proteins in Physcomitrella reveal novel insights into their function.

Authors:  Sibo Tao; Mark Estelle
Journal:  New Phytol       Date:  2018-02-20       Impact factor: 10.151

7.  SELF-PRUNING Acts Synergistically with DIAGEOTROPICA to Guide Auxin Responses and Proper Growth Form.

Authors:  Willian B Silva; Mateus H Vicente; Jessenia M Robledo; Diego S Reartes; Renata C Ferrari; Ricardo Bianchetti; Wagner L Araújo; Luciano Freschi; Lázaro E P Peres; Agustin Zsögön
Journal:  Plant Physiol       Date:  2018-03-02       Impact factor: 8.340

Review 8.  Involvement of secondary messengers and small organic molecules in auxin perception and signaling.

Authors:  Dong-Wei Di; Caiguo Zhang; Guang-Qin Guo
Journal:  Plant Cell Rep       Date:  2015-02-19       Impact factor: 4.570

9.  Lateral root development in the maize (Zea mays) lateral rootless1 mutant.

Authors:  Eva Husakova; Frank Hochholdinger; Ales Soukup
Journal:  Ann Bot       Date:  2013-02-28       Impact factor: 4.357

10.  Auxin increases the hydrogen peroxide (H2O2) concentration in tomato (Solanum lycopersicum) root tips while inhibiting root growth.

Authors:  Maria G Ivanchenko; Désirée den Os; Gabriele B Monshausen; Joseph G Dubrovsky; Andrea Bednárová; Natraj Krishnan
Journal:  Ann Bot       Date:  2013-08-21       Impact factor: 4.357

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