AI Article Synopsis

  • The study focuses on enhancing plant growth and biomass due to rising global population demands, using zinc finger artificial transcription factors (ZF-ATFs) to manipulate Arabidopsis plants.
  • Two collections of Arabidopsis lines were created: one with a transcriptional repressor (3F-EAR) and another with an activator (3F-VP16), leading to noticeable growth improvements.
  • Six lines showed up to a 55% increase in rosette surface area, with five lines undergoing further analysis to understand the transcriptomic changes induced by the ZF-ATF constructs.

Article Abstract

The rapidly growing world population has a greatly increasing demand for plant biomass, thus creating a great interest in the development of methods to enhance the growth and biomass accumulation of crop species. In this study, we used zinc finger artificial transcription factor (ZF-ATF)-mediated genome interrogation to manipulate the growth characteristics and biomass of Arabidopsis plants. We describe the construction of two collections of Arabidopsis lines expressing fusions of three zinc fingers (3F) to the transcriptional repressor motif EAR (3F-EAR) or the transcriptional activator VP16 (3F-VP16), and the characterization of their growth characteristics. In total, six different 3F-ATF lines with a consistent increase in rosette surface area (RSA) of up to 55% were isolated. For two lines we demonstrated that 3F-ATF constructs function as dominant in trans acting causative agents for an increase in RSA and biomass, and for five larger plant lines we have investigated 3F-ATF induced transcriptomic changes. Our results indicate that genome interrogation can be used as a powerful tool for the manipulation of plant growth and biomass and that it might supply novel cues for the discovery of genes and pathways involved in these properties.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5373528PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0174236PLOS

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