A novel sensor to map auxin response and distribution at high spatio-temporal resolution

Archive ouverte

Brunoud, Geraldine | Wells, Darren M. | Oliva, Marina | Larrieu, Antoine | Mirabet, Vincent | Burrow, Amy H. | Beeckman, Tom | Kepinski, Stefan | Traas, Jan | Bennett, Malcolm J. | Vernoux, Teva

Edité par CCSD ; Nature Publishing Group -

International audience. Auxin is a key plant morphogenetic signal(1) but tools to analyse dynamically its distribution and signalling during development are still limited. Auxin perception directly triggers the degradation of Aux/IAA repressor proteins(2-6). Here we describe a novel Aux/IAA-based auxin signalling sensor termed DII-VENUS that was engineered in the model plant Arabidopsis thaliana. The VENUS fast maturing form of yellow fluorescent protein(7) was fused in-frame to the Aux/IAA auxin-interaction domain (termed domain II; DII)(5) and expressed under a constitutive promoter. We initially show that DII-VENUS abundance is dependent on auxin, its TIR1/AFBs co-receptors(4-6,8) and proteasome activities. Next, we demonstrate that DII-VENUS provides a map of relative auxin distribution at cellular resolution in different tissues. DII-VENUS is also rapidly degraded in response to auxin and we used it to visualize dynamic changes in cellular auxin distribution successfully during two developmental responses, the root gravitropic response and lateral organ production at the shoot apex. Our results illustrate the value of developing response input sensors such as DII-VENUS to provide high-resolution spatio-temporal information about hormone distribution and response during plant growth and development.

Consulter en ligne

Suggestions

Du même auteur

Root gravitropism is regulated by a transient lateral auxin gradient controlled by a tipping-point mechanism.

Archive ouverte | Band, Leah R | CCSD

International audience. Gravity profoundly influences plant growth and development. Plants respond to changes in orientation by using gravitropic responses to modify their growth. Cholodny and Went hypothesized over...

A fluorescent hormone biosensor reveals the dynamics of jasmonate signalling in plants

Archive ouverte | Larrieu, Antoine | CCSD

International audience. Activated forms of jasmonic acid (JA) are central signals coordinating plant responses to stresses, yet tools to analyse their spatial and temporal distribution are lacking. Here we describe ...

Systems analysis of auxin transport in the Arabidopsis root apex

Archive ouverte | Band, Leah R. | CCSD

Auxin is a key regulator of plant growth and development. Within the root tip, auxin distribution plays a crucial role specifying developmental zones and coordinating tropic responses. Determining how the organ-scale auxin pattern...

Chargement des enrichissements...