Going Green: reprogramming roots into shoots using TCP transcription factors

BBSRC · United Kingdom government procurement

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September 29, 2027
Response Due
Active
Status

Opportunity Overview

As cells differentiate, their capacity to switch fate becomes progressively limited, which poses a problem for repairing
tissues and organs. Unlike other multicellular organisms, plants are known for their developmental plasticity. For
example, shoot cuttings can regenerate root systems and vice versa. During regeneration, plant cells have the unique
capability to change their identity by reprogramming their fate, a key mechanism in their ability to regenerate organs and
tissues. Cell fate reprogramming requires changes in gene expression, which in turn requires changes in chromatin
accessibility so that different genes can be accessed by the transcription machinery. Crucially, some transcription factors
called pioneer factors can bind inaccessible chromatin and change its conformation so that other factors can
access the DNA to initiate transcription, changing gene expression and causing cell reprogramming to a different fate.
Ectopic overexpression of a plant transcription factor, TCP4, drives the conversion of Arabidopsis roots into shoot/stem-
like organs, indicating that TCP4 has a central role in plant cell reprogramming. TCP4 regulates the expression of
several chromatin remodellers, which suggests that TCP4 has a broader role in controlling the chromatin landscape and
might be a novel plant pioneer factor.
To understand how TCP4 reprogrammes root cells, a combination of next generation sequencing techniques,
bioinformatics, and live cell imaging in inducible TCP4 lines will be used to obtain a comprehensive picture of the TCP4-
induced switch in cell fate. Chromatin maps from different timepoints of the root-to-shoot conversion process will be
obtained through the use of chromatin particle spectrum analysis (CPSA) and chromatin immunoprecipitation (ChIP-seq).
These maps will be compared to global changes in gene expression (RNA-seq) induced by TCP4 at the same timepoints to
identify regions of the chromatin that may have been made accessible by TCP4 to...

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Solicitation Details

Issuing agencyBBSRC
CountryUnited Kingdom
CategoryResearch Development
PublishedSeptember 30, 2023
Procurement stageActive solicitation
Response dueSeptember 29, 2027
StatusOpen — accepting responses
Official sourceView original notice
Last verifiedAugust 12, 2026

Source: UK Research and Innovation (UKRI) — Open Government Licence v3.0.

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