Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Selective degradation of ARF monomers controls auxin response in Marchantia

View through CrossRef
Abstract The plant signaling molecule auxin controls a variety of growth and developmental processes in land plants. Auxin regulates gene expression through a nuclear auxin signaling pathway (NAP) consisting of a ubiquitin ligase auxin receptor TIR1/AFB, its Aux/IAA degradation substrate, and the DNA-binding ARF transcription factors. While extensive qualitative understanding of the pathway and its interactions has been obtained by studying the flowering plant Arabidopsis thaliana , it is so far unknown how these translate to quantitative system behaviour in vivo , a problem that is confounded by large NAP gene families in this species. Here we used the minimal NAP of the liverwort Marchantia polymorpha to quantitatively map NAP protein accumulation and dynamics in vivo through the use of knock-in fluorescent fusion proteins. Beyond revealing the native accumulation profile of the entire NAP protein network, we discovered that the two central ARFs MpARF1 and MpARF2 are proteasomally degraded. This degradation serves two functions: it tunes the stoichiometry of auxin-responsive, positively acting MpARF1 and auxin-independent, negatively acting MpARF2, thereby permitting auxin response. Secondly, through mapping a minimal degradation motif, we found that degradation is likely selective for MpARF2 monomers and favours accumulation of dimers. Interfering with MpARF1:MpARF2 stoichiometry or preventing degradation of MpARF2 monomers caused strong growth defects associated with auxin response defects. Thus, quantitative analysis of the entire Marchantia NAP, allowed to identify a novel regulatory mechanism in auxin response, built on regulated ARF degradation.
Title: Selective degradation of ARF monomers controls auxin response in Marchantia
Description:
Abstract The plant signaling molecule auxin controls a variety of growth and developmental processes in land plants.
Auxin regulates gene expression through a nuclear auxin signaling pathway (NAP) consisting of a ubiquitin ligase auxin receptor TIR1/AFB, its Aux/IAA degradation substrate, and the DNA-binding ARF transcription factors.
While extensive qualitative understanding of the pathway and its interactions has been obtained by studying the flowering plant Arabidopsis thaliana , it is so far unknown how these translate to quantitative system behaviour in vivo , a problem that is confounded by large NAP gene families in this species.
Here we used the minimal NAP of the liverwort Marchantia polymorpha to quantitatively map NAP protein accumulation and dynamics in vivo through the use of knock-in fluorescent fusion proteins.
Beyond revealing the native accumulation profile of the entire NAP protein network, we discovered that the two central ARFs MpARF1 and MpARF2 are proteasomally degraded.
This degradation serves two functions: it tunes the stoichiometry of auxin-responsive, positively acting MpARF1 and auxin-independent, negatively acting MpARF2, thereby permitting auxin response.
Secondly, through mapping a minimal degradation motif, we found that degradation is likely selective for MpARF2 monomers and favours accumulation of dimers.
Interfering with MpARF1:MpARF2 stoichiometry or preventing degradation of MpARF2 monomers caused strong growth defects associated with auxin response defects.
Thus, quantitative analysis of the entire Marchantia NAP, allowed to identify a novel regulatory mechanism in auxin response, built on regulated ARF degradation.

Related Results

An ultra-conserved ARF-DNA interface underlies auxin-triggered transcriptional response
An ultra-conserved ARF-DNA interface underlies auxin-triggered transcriptional response
Abstract Auxin Response Factor (ARF) plant transcription factors are the key effectors in auxin signalling. Their DNA-Binding Domain (DBD) contai...
Evaluating the ARF diagnosis calculator: A survey and content analysis. (Preprint)
Evaluating the ARF diagnosis calculator: A survey and content analysis. (Preprint)
BACKGROUND Acute Rheumatic Fever (ARF) is a critically important condition for which there is no diagnostic test. Diagnosis requires the use of a set of cri...
Auxin Information Processing; Partners and Interactions beyond the Usual Suspects
Auxin Information Processing; Partners and Interactions beyond the Usual Suspects
Auxin plays a major role in a variety of processes involved in plant developmental patterning and its adaptation to environmental conditions. Therefore, an important question is ho...
Abstract 1140: C/ebp beta represses Arf induction by tgf-beta2
Abstract 1140: C/ebp beta represses Arf induction by tgf-beta2
Abstract Arf is a bona fide tumor suppressor that regulates cell proliferation through p53-dependent and -independent mechanisms. Recent studies show that Arf also h...
Role of GOBLET and Auxin in Controlling Organ Development and Patterning
Role of GOBLET and Auxin in Controlling Organ Development and Patterning
The size and shape of plant leaves are extremely diverse within and among species, and are also sensitive to growth conditions. Compound leaves, such as those of tomato, maintain m...
Session 3
Session 3
Phase separation and mobile noncoding RNA regulate leaf senescence Nitrogen is an essential macronutrient that is absorbed by roots and stored in l...
Reverse engineering lateral root stable prebranch site formation; Complementary roles for auxin and auxin signalling
Reverse engineering lateral root stable prebranch site formation; Complementary roles for auxin and auxin signalling
Abstract Priming is the process through which periodic elevations in auxin signalling prepattern future sites for lateral root formation, called prebranch sites. Th...

Back to Top