Literature DB >> 18183416

Multiple interactions between cryptochrome and phototropin blue-light signalling pathways in Arabidopsis thaliana.

Bin Kang1, Nicolas Grancher, Vladimir Koyffmann, Danielle Lardemer, Sarah Burney, Margaret Ahmad.   

Abstract

Higher plants contain two structurally unrelated flavoprotein blue-light photoreceptors, the cryptochromes and the phototropins, which mediate largely distinct response pathways. Cryptochromes regulate plant development and photomorphogenesis whereas phototropins are primarily implicated in photomovement responses such as phototropism and chloroplast relocation. In the present study we identify interactions between cryptochromes and phototropins in several photoresponses of Arabidopsis thaliana. Cryptochromes are shown to exert a positive effect on phototropic curvature under long-term irradiation conditions. Specifically, in a phot1-deficient genetic background (phot1 mutant), curvature is reduced in the absence of cryptochromes, particularly at wavelengths where cryptochromes show preferential absorption. Phototropins in turn exert a small promotive effect on such cryptochrome-mediated responses as hypocotyl elongation and anthocyanin accumulation. These effects are apparent in a cryptochrome-deficient (cry1cry2 mutant) genetic background. In addition to positive interactions between signalling pathways, we demonstrate that the cryptochromes also exert a negative regulatory effect. Levels of phot1 protein decrease in blue light as a function of cryptochrome photoreceptor activation. This negative regulation occurs in part at the level of phot1 transcription but may also involve post-transcriptional mechanisms. These two classes of photoreceptor thereby reciprocally modulate their overall responsivity to blue light through multiple forms of interaction.

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Year:  2008        PMID: 18183416     DOI: 10.1007/s00425-007-0683-z

Source DB:  PubMed          Journal:  Planta        ISSN: 0032-0935            Impact factor:   4.116


  26 in total

1.  A common fluence threshold for first positive and second positive phototropism in Arabidopsis thaliana.

Authors:  A Janoudi; K L Poff
Journal:  Plant Physiol       Date:  1990       Impact factor: 8.340

2.  Action spectrum for cryptochrome-dependent hypocotyl growth inhibition in Arabidopsis.

Authors:  Margaret Ahmad; Nicholas Grancher; Mary Heil; Robert C Black; Baldissera Giovani; Paul Galland; Danielle Lardemer
Journal:  Plant Physiol       Date:  2002-06       Impact factor: 8.340

3.  Light-induced electron transfer in a cryptochrome blue-light photoreceptor.

Authors:  Baldissera Giovani; Martin Byrdin; Margaret Ahmad; Klaus Brettel
Journal:  Nat Struct Biol       Date:  2003-06

4.  Second positive phototropism results from coordinated co-action of the phototropins and cryptochromes.

Authors:  Craig W Whippo; Roger P Hangarter
Journal:  Plant Physiol       Date:  2003-07       Impact factor: 8.340

5.  Unexpected roles for cryptochrome 2 and phototropin revealed by high-resolution analysis of blue light-mediated hypocotyl growth inhibition.

Authors:  K M Folta; E P Spalding
Journal:  Plant J       Date:  2001-06       Impact factor: 6.417

6.  Cryptochrome blue-light photoreceptors of Arabidopsis implicated in phototropism.

Authors:  M Ahmad; J A Jarillo; O Smirnova; A R Cashmore
Journal:  Nature       Date:  1998-04-16       Impact factor: 49.962

7.  From The Cover: A role for Arabidopsis cryptochromes and COP1 in the regulation of stomatal opening.

Authors:  Jian Mao; Yan-Chun Zhang; Yi Sang; Qing-Hua Li; Hong-Quan Yang
Journal:  Proc Natl Acad Sci U S A       Date:  2005-08-10       Impact factor: 11.205

Review 8.  Phototropins: a new family of flavin-binding blue light receptors in plants.

Authors:  W R Briggs; J M Christie; M Salomon
Journal:  Antioxid Redox Signal       Date:  2001-10       Impact factor: 8.401

9.  ACD6, a novel ankyrin protein, is a regulator and an effector of salicylic acid signaling in the Arabidopsis defense response.

Authors:  Hua Lu; Debra N Rate; Jong Tae Song; Jean T Greenberg
Journal:  Plant Cell       Date:  2003-09-24       Impact factor: 11.277

Review 10.  Phototropin blue-light receptors.

Authors:  John M Christie
Journal:  Annu Rev Plant Biol       Date:  2007       Impact factor: 26.379

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  8 in total

1.  A gain-of-function mutation of Arabidopsis cryptochrome1 promotes flowering.

Authors:  Vivien Exner; Cristina Alexandre; Gesa Rosenfeldt; Pietro Alfarano; Mena Nater; Amedeo Caflisch; Wilhelm Gruissem; Alfred Batschauer; Lars Hennig
Journal:  Plant Physiol       Date:  2010-10-06       Impact factor: 8.340

2.  Phototropism: mechanism and outcomes.

Authors:  Ullas V Pedmale; R Brandon Celaya; Emmanuel Liscum
Journal:  Arabidopsis Book       Date:  2010-08-31

3.  Phototropism: growing towards an understanding of plant movement.

Authors:  Emmanuel Liscum; Scott K Askinosie; Daniel L Leuchtman; Johanna Morrow; Kyle T Willenburg; Diana Roberts Coats
Journal:  Plant Cell       Date:  2014-01-30       Impact factor: 11.277

4.  Blue-light regulation of ZmPHOT1 and ZmPHOT2 gene expression and the possible involvement of Zmphot1 in phototropism in maize coleoptiles.

Authors:  Hiromi Suzuki; Ai Okamoto; Akane Kojima; Takeshi Nishimura; Makoto Takano; Takatoshi Kagawa; Akeo Kadota; Takeshi Kanegae; Tomokazu Koshiba
Journal:  Planta       Date:  2014-05-11       Impact factor: 4.116

5.  Dissection of HY5/HYH expression in Arabidopsis reveals a root-autonomous HY5-mediated photomorphogenic pathway.

Authors:  Yonghong Zhang; Chen Li; Jingxuan Zhang; Jiajing Wang; Jingwei Yang; Yanxia Lv; Nian Yang; Jianping Liu; Xuanbin Wang; Gergo Palfalvi; Guodong Wang; Lanlan Zheng
Journal:  PLoS One       Date:  2017-07-06       Impact factor: 3.240

6.  Cryptochrome-mediated hypocotyl phototropism was regulated antagonistically by gibberellic acid and sucrose in Arabidopsis.

Authors:  Qing-Ping Zhao; Jin-Dong Zhu; Nan-Nan Li; Xiao-Nan Wang; Xiang Zhao; Xiao Zhang
Journal:  J Integr Plant Biol       Date:  2019-05-24       Impact factor: 7.061

Review 7.  Molecular genetic analysis of phototropism in Arabidopsis.

Authors:  Tatsuya Sakai; Ken Haga
Journal:  Plant Cell Physiol       Date:  2012-08-03       Impact factor: 4.927

8.  Effect of Red and Blue Light on Anthocyanin Accumulation and Differential Gene Expression in Strawberry (Fragaria × ananassa).

Authors:  Yunting Zhang; Leiyu Jiang; Yali Li; Qing Chen; Yuntian Ye; Yong Zhang; Ya Luo; Bo Sun; Xiaorong Wang; Haoru Tang
Journal:  Molecules       Date:  2018-04-03       Impact factor: 4.411

  8 in total

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