Temperature-dependent fasciation mutants provide a link between mitochondrial RNA processing and lateral root morphogenesis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 33443014.
- Also identified by DOI 10.7554/eLife.61611 and PMC identifier 7846275.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Although mechanisms that activate organogenesis in plants are well established, much less is known about the subsequent fine-tuning of cell proliferation, which is crucial for creating properly structured and sized organs. Here we show, through analysis of temperature-dependent fasciation (TDF) mutants of Arabidopsis, <i>root redifferentiation defective 1</i> (<i>rrd1</i>), <i>rrd2</i>, and <i>root initiation defective 4</i> (<i>rid4</i>), that mitochondrial RNA processing is required for limiting cell division during early lateral root (LR) organogenesis. These mutants formed abnormally broadened (i.e. fasciated) LRs under high-temperature conditions due to extra cell division. All TDF proteins localized to mitochondria, where they were found to participate in RNA processing: RRD1 in mRNA deadenylation, and RRD2 and RID4 in mRNA editing. Further analysis suggested that LR fasciation in the TDF mutants is triggered by reactive oxygen species generation caused by defective mitochondrial respiration. Our findings provide novel clues for the physiological significance of mitochondrial activities in plant organogenesis.
Medical subject headings
- Arabidopsis
- Arabidopsis Proteins
- Mutation
- Plant Roots
- RNA Processing, Post-Transcriptional
- RNA, Mitochondrial