Perception of Arabidopsis AtPep peptides, but not bacterial elicitors, accelerates starvation-induced senescence
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Summary
It is reported that Pep-perception accelerates dark/starvation-induced senescence via an early induction of chlorophyll degradation and autophagy, unrelated to PTI.
- Type
- article
- Published
- 2015-01-23
- Cited by
- 35
- References
- 51
- Access
- Open access
- OpenAlex
- https://openalex.org/W25667591
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11133863
Keywords
Poetics, Metanarrative, Syncretism (linguistics), Character (mathematics), Subject (documents)
References
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- Autophagy machinery controls nitrogen remobilization at the whole-plant level under both limiting and ample nitrate conditions in Arabidopsis.
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- Argonaute—a database for gene regulation by mammalian microRNAs
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- Dark-inducible genes from Arabidopsis thaliana are associated with leaf senescence and repressed by sugars.
- Perception of the Arabidopsis Danger Signal Peptide 1 Involves the Pattern Recognition Receptor AtPEPR1 and Its Close Homologue AtPEPR2*
- Autophagic Nutrient Recycling in Arabidopsis Directed by the ATG8 and ATG12 Conjugation Pathways1
Cited by
- Differential and tissue-specific activation pattern of the AtPROPEP and AtPEPR genes in response to biotic and abiotic stress in Arabidopsis thaliana
- The Plant Peptidome: An Expanding Repertoire of Structural Features and Biological Functions[OPEN]
- Quo vadis, Pep? Plant elicitor peptides at the crossroads of immunity, stress, and development.
- Reactive Oxygen Species Play a Role in the Infection of the Necrotrophic Fungi, Rhizoctonia solani in Wheat
- Fine control of plant immunity through recognition of danger-associated molecular patterns.
- Receptor-Like Kinases and Regulation of Plant Innate Immunity.
- Dying to live: cell elimination as a developmental strategy in angiosperm seeds.
- Structural Insight into Recognition of Plant Peptide Hormones by Receptors.
- Novel Rosaceae plant elicitor peptides as sustainable tools to control Xanthomonas arboricola pv. pruni in Prunus spp.
- Proteomic insight into the mitigation of wheat root drought stress by arbuscular mycorrhizae.
- In roots of Arabidopsis thaliana, the damage-associated molecular pattern AtPep1 is a stronger elicitor of immune signalling than flg22 or the chitin heptamer
- Expression of tomato prosystemin gene in Arabidopsis reveals systemic translocation of its mRNA and confers necrotrophic fungal resistance.
- Integrated DNA methylome and transcriptome analysis reveals the ethylene-induced flowering pathway genes in pineapple
- Integration of danger peptide signals with herbivore‐associated molecular pattern signaling amplifies anti‐herbivore defense responses in rice
- Biodiversity-based options for arable weed management. A review
- Chlorophyll catabolism precedes changes in chloroplast structure and proteome during leaf senescence
- The role of endogenous elicitor peptides in plant resistance to biotic stress
- Type-II Metacaspases Mediate the Processing of Plant Elicitor Peptides in Arabidopsis.
- Combined transcriptomic and metabolomic analyses uncover rearranged gene expression and metabolite metabolism in tobacco during cold acclimation
- Grain Yields and Nitrogen Use Efficiencies in Different Types of Stay-Green Maize in Response to Nitrogen Fertilizer
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