Literature DB >> 26973687

COLORFUL-Circuit: A Platform for Rapid Multigene Assembly, Delivery, and Expression in Plants.

Hassan Ghareeb1, Sabine Laukamm2, Volker Lipka2.   

Abstract

Advancing basic and applied plant research requires the continuous innovative development of the available technology toolbox. Essential components of this toolbox are methods that simplify the assembly, delivery, and expression of multiple transgenes of interest. To allow simultaneous and directional multigene assembly on the same plant transformation vector, several strategies based on overlapping sequences or restriction enzymes have recently been developed. However, the assembly of homologous and repetitive DNA sequences can be inefficient and the frequent occurrence of target sequences recognized by commonly used restriction enzymes can be a limiting factor. Here, we noted that recognition sites for the restriction enzyme SfiI are rarely occurring in plant genomes. This fact was exploited to establish a multigene assembly system called "COLORFUL-Circuit." To this end, we developed a set of binary vectors which provide a flexible and cost efficient cloning platform. The gene expression cassettes in our system are flanked with unique SfiI sites, which allow simultaneous multi-gene cassette assembly in a hosting binary vector. We used COLORFUL-Circuit to transiently and stably express up to four fluorescent organelle markers in addition to a selectable marker and analyzed the impact of assembly design on coexpression efficiency. Finally, we demonstrate the utility of our optimized "COLORFUL-Circuit" system in an exemplary case study, in which we monitored simultaneously the subcellular behavior of multiple organelles in a biotrophic plant-microbe interaction by Confocal Laser Scanning Microscopy.

Entities:  

Keywords:  binary vectors; circuit design; gene stacking; multigene coexpression; plant biotechnology; synthetic biology

Year:  2016        PMID: 26973687      PMCID: PMC4772762          DOI: 10.3389/fpls.2016.00246

Source DB:  PubMed          Journal:  Front Plant Sci        ISSN: 1664-462X            Impact factor:   5.753


  54 in total

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Journal:  Science       Date:  2014-08-21       Impact factor: 47.728

10.  Evolutionary conservation of a microbody targeting signal that targets proteins to peroxisomes, glyoxysomes, and glycosomes.

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5.  Development of an R4 dual-site (R4DS) gateway cloning system enabling the efficient simultaneous cloning of two desired sets of promoters and open reading frames in a binary vector for plant research.

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6.  Nimble Cloning: A Simple, Versatile, and Efficient System for Standardized Molecular Cloning.

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7.  A New Set of Golden-Gate-Based Organelle Marker Plasmids for Colocalization Studies in Plants.

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9.  Quantitative Hormone Signaling Output Analyses of Arabidopsis thaliana Interactions With Virulent and Avirulent Hyaloperonospora arabidopsidis Isolates at Single-Cell Resolution.

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