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1. Cytokinin Plays a Multifaceted Role in Ralstonia solanacearum-Triggered Plant Disease Development.

2. NBR1-mediated selective autophagy of ARF7 modulates root branching.

3. Spatial IMA1 regulation restricts root iron acquisition on MAMP perception.

4. Arabidopsis metacaspase MC1 localizes in stress granules, clears protein aggregates, and delays senescence.

5. A phloem-localized Arabidopsis metacaspase (AtMC3) improves drought tolerance.

6. Robust transcriptional indicators of immune cell death revealed by spatiotemporal transcriptome analyses.

7. Detection and Quantification of the Hypersensitive Response Cell Death in Arabidopsis thaliana.

8. A primary cell wall cellulose-dependent defense mechanism against vascular pathogens revealed by time-resolved dual transcriptomics.

9. A genome-wide association study reveals cytokinin as a major component in the root defense responses against Ralstonia solanacearum.

10. Deep Sequencing Reveals Early Reprogramming of Arabidopsis Root Transcriptomes Upon Ralstonia solanacearum Infection.

11. AtSERPIN1 is an inhibitor of the metacaspase AtMC1-mediated cell death and autocatalytic processing in planta.

12. Type III Secretion-Dependent and -Independent Phenotypes Caused by Ralstonia solanacearum in Arabidopsis Roots.

13. A Conserved Core of Programmed Cell Death Indicator Genes Discriminates Developmentally and Environmentally Induced Programmed Cell Death in Plants.

14. The plant metacaspase AtMC1 in pathogen-triggered programmed cell death and aging: functional linkage with autophagy.

15. Arabidopsis type I metacaspases control cell death.

16. A mutation in the Arabidopsis mTERF-related plastid protein SOLDAT10 activates retrograde signaling and suppresses (1)O(2)-induced cell death.

17. Characterization of soldat8, a suppressor of singlet oxygen-induced cell death in Arabidopsis seedlings.

18. Cryptochrome-1-dependent execution of programmed cell death induced by singlet oxygen in Arabidopsis thaliana.

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