| Literature DB >> 26644504 |
Riccardo Siligato1, Xin Wang1, Shri Ram Yadav1, Satu Lehesranta1, Guojie Ma1, Robertas Ursache1, Iris Sevilem1, Jing Zhang1, Maartje Gorte1, Kalika Prasad1, Michael Wrzaczek1, Renze Heidstra1, Angus Murphy1, Ben Scheres1, Ari Pekka Mähönen2.
Abstract
A powerful method to study gene function is expression or overexpression in an inducible, cell type-specific system followed by observation of consequent phenotypic changes and visualization of linked reporters in the target tissue. Multiple inducible gene overexpression systems have been developed for plants, but very few of these combine plant selection markers, control of expression domains, access to multiple promoters and protein fusion reporters, chemical induction, and high-throughput cloning capabilities. Here, we introduce a MultiSite Gateway-compatible inducible system for Arabidopsis (Arabidopsis thaliana) plants that provides the capability to generate such constructs in a single cloning step. The system is based on the tightly controlled, estrogen-inducible XVE system. We demonstrate that the transformants generated with this system exhibit the expected cell type-specific expression, similar to what is observed with constitutively expressed native promoters. With this new system, cloning of inducible constructs is no longer limited to a few special cases but can be used as a standard approach when gene function is studied. In addition, we present a set of entry clones consisting of histochemical and fluorescent reporter variants designed for gene and promoter expression studies.Entities:
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Year: 2015 PMID: 26644504 PMCID: PMC4734558 DOI: 10.1104/pp.15.01246
Source DB: PubMed Journal: Plant Physiol ISSN: 0032-0889 Impact factor: 8.340