Apoptosis in plants: from semantic appeal to empirical rejection
Minina, E. A.; Dauphinee, A. N.; Ballhaus, F.; Gogvadze, V.; Smertenko, A. P.; Bozhkov, P. V.
Show abstract
BackgroundAnimals and plants diverged over one billion years ago and evolved unique mechanisms for many cellular processes, including cell death. One of the most well-studied cell-death programmes in animals, apoptosis, involves gradual cell dismantling and engulfment of cellular fragments, apoptotic bodies, through phagocytosis. However, rigid cell walls prevent plant cell fragmentation and thus apoptosis is not applicable for executing cell death in plants. Furthermore, plants are devoid of the key components of apoptotic machinery, including phagocytosis as well as caspases and Bcl-2 family proteins. Nevertheless, the concept of plant "apoptosis-like programmed cell death" (AL-PCD) is widespread. This is largely due to superficial morphological resemblances between plant cell death and apoptosis; in particular between protoplast shrinkage in plant cells killed by various stimuli and animal cell volume decrease preceding fragmentation into apoptotic bodies. ResultsHere, we provide a comprehensive spatio-temporal analysis of cytological and biochemical events occurring in plant cells subjected to heat shock at 40-55{degrees}C and 85{degrees}C, the experimental conditions typically used to trigger AL-PCD and necrotic cell death, respectively. We show that cell death under both conditions was not accompanied by membrane blebbing or formation of apoptotic bodies, as would be expected during apoptosis. Instead, we observed instant and irreversible permeabilization of the plasma membrane and ATP depletion. These processes did not depend on mitochondrial functionality or the presence of Ca2+ and could not be prevented by an inhibitor of ferroptosis. We further reveal that the lack of protoplast shrinkage at 85{degrees}C, the only striking morphological difference between cell deaths induced by 40-55{degrees}C or 85{degrees}C heat shock, is a consequence of the fixative effect of the high temperature on intracellular contents. ConclusionsWe conclude that heat shock-induced cell death is an energy-independent process best matching definition of necrosis. Although the initial steps of this necrotic cell death could be genetically regulated, classifying it as apoptosis or AL-PCD is a terminological misnomer. Our work supports the viewpoint that apoptosis is not conserved across animal and plant kingdoms and demonstrates the importance of focusing on plant-specific aspects of cell death pathways.
Matching journals
The top 11 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- PAM18-3, a J-domain protein, maintains mitochondrial integrity and plant growth and development in Arabidopsis thaliana 94%
- Combination of transcriptomic, proteomic and degradomic profiling reveals common and distinct patterns of pathogen-induced cell death in maize 94%
- A Tyrosine Phospho-switch within the Longin Domain of VAMP721 modulates SNARE functionality 93%
Similar papers in this journal
- Osmotic stress in roots drives lipoxygenase-dependent plastid remodeling through singlet oxygen production 95%
- Myosin XI drives polarized growth by vesicle clustering and local enrichment of F-actin in Physcomitrium (Physcomitrella) patens 94%
- The secreted hypersensitive response inducing protein 1 from Botrytis cinerea displays non-canonical PAMP-activity 93%
Similar papers in this journal
- Hypoxia-activated fluorescent probes as markers of oxygen levels in plant cells and tissues 94%
- LORE receptor homomerization is required for 3-hydroxydecanoic acid-induced immune signaling and determines the natural variation of immunosensitivity within the Arabidopsis genus 93%
- Ferroptosis contributes to developmental cell death in rice blast 93%
Similar papers in this journal
- The Autophagy Receptor NBR1 Directs the Clearance of Photodamaged Chloroplasts 93%
- Cell detoxification of secondary metabolites by P4-ATPase mediated vesicle transport 92%
- Unbiased proteomic and forward genetic screens reveal that mechanosensitive ion channel MSL10 functions at ER-plasma membrane contact sites in Arabidopsis thaliana 92%
Similar papers in this journal
- Nucleotide limitation results in impaired photosynthesis, reduced growth and seed yield together with massively altered gene expression 93%
- Stromule geometry allows optimal spatial regulation of organelle interactions in the quasi-2D cytoplasm 93%
- Arabidopsis CML13 and CML14 Have Essential And Overlapping Roles In Plant Development 93%
"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.