The fnr-like mutants enhance isoxaben tolerance by initiating mitochondrial retrograde signalling
Broad, R.; Ogden, M.; Dracatos, P. M.; Whelan, J. M.; Persson, S.; Khan, G. A.
Show abstract
Isoxaben is a pre-emergent herbicide used to control broadleaf weeds. While the phytotoxic mechanism is not completely understood, isoxaben interferes with cellulose synthesis. Certain mutations in cellulose synthase complex proteins can confer isoxaben tolerance; however, these mutations cause compromised cellulose synthesis and perturbed plant growth, rendering them unsuitable as herbicide tolerance traits. We conducted a genetic screen to identify new genes associated with isoxaben tolerance by screening a selection of Arabidopsis thaliana T-DNA mutants. We found that mutations in a FERREDOXIN-NADP(+) OXIDOREDUCTASE-LIKE (FNRL) gene enhanced tolerance to isoxaben, exhibited as a reduction in primary root stunting, reactive oxygen species accumulation, and ectopic lignification. The fnrl mutant did not exhibit a reduction in cellulose levels following exposure to isoxaben, indicating that FNRL operates upstream of isoxaben-induced cellulose inhibition. In line with these results, transcriptomic analysis revealed a highly reduced response to isoxaben treatment in fnrl mutant roots. The fnrl mutants displayed constitutively induced mitochondrial retrograde signalling, and the observed isoxaben tolerance is partially dependent on the transcription factor ANAC017, a key regulator of mitochondrial retrograde signalling. Moreover, FNRL is highly conserved across all plant lineages, implying conservation of its function. Notably, fnrl mutants did not show a growth penalty in shoots, making FNRL a promising target for biotechnological applications in breeding isoxaben tolerance in crops.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Regulation of CYP94B1 by WRKY33 controls apoplastic barrier formation in the roots leading to salt tolerance 98%
- Endoplasmic reticulum calnexins participate in the primary root growth response to phosphate deficiency 97%
- GAUT10 is required for Arabidopsis root cell differentiation and elongation 97%
Similar papers in this journal
- Identification of a novel link connecting indole-3-acetamide with abscisic acid biosynthesis and signaling 97%
- Glucosinolate and phenylpropanoid biosynthesis are linked by proteasome-dependent degradation of PAL 97%
- Genetic screen to saturate guard cell signaling network reveals a role of GDP-L-fucose metabolism in stomatal closure 96%
Similar papers in this journal
- IBA endogenous auxin regulates Arabidopsis root system development in a glutathione-dependent way and is important for adaptation to phosphate deprivation. 97%
- Shoot-root interaction in control of camalexin exudation in Arabidopsis 97%
- Estradiol-inducible AvrRps4 expression reveals distinct properties of TIR-NLR-mediated effector-triggered immunity 97%
Similar papers in this journal
- MDF regulates a network of auxin-dependent and -independent pathways of adventitious root regeneration in Arabidopsis. 97%
- Rapid analysis of strigolactone receptor activity in a Nicotiana benthamiana dwarf14 mutant 97%
- Copper deficiency alters shoot architecture and reduces fertility of both gynoecium and androecium in Arabidopsis thaliana 96%
Similar papers in this journal
- Jasmonic Acid coordinates with Light, Glucose and Auxin signalling in Regulating Branching Angle of Arabidopsis Lateral Roots 97%
- Constitutive expression of JASMONATE RESISTANT 1 elevates content of several jasmonates and primes Arabidopsis thaliana to better withstand drought 97%
- Overexpression of the receptor-like kinase BIR1 gene causes SOBIR1- and EDS1-dependent cell death phenotypes in Arabidopsis 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.