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Extracellular peptide Kratos restricts cell death during vascular development and stress in Arabidopsis.

J. Exp. Bot.. 2019; 
EscamezSacha,StaelSimon,VainonenJulia P,WillemsPatrick,JinHuiting,KimuraSachie,Van BreusegemFrank,GevaertKris,WrzaczekMichael,TuominenHan
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Peptide Synthesis Data are presented as the average of 6 leaves in a representative experiment following day, the water was replaced with assay buffer containing 34 (Wako), 100 nM flg22 (GenScript) or synthetic peptides. Get A Quote

摘要

During plant vascular development, xylem tracheary elements (TEs) form water-conducting, empty pipes by genetically regulated cell death. Cell death is prevented from spreading to non-TEs by unidentified intercellular mechanisms, downstream of METACASPASE9 (MC9)-mediated regulation of autophagy in TEs. Here, we identified differentially abundant extracellular peptides in vascular-differentiating wild-type and MC9-down-regulated Arabidopsis cell suspensions. A peptide named Kratos rescued the abnormally high ectopic non-TE death resulting from either MC9 knockout or TE-specific overexpression of the ATG5 autophagy protein during experimentally induced vascular differentiation in Arabidopsis cotyledons. K... More

关键词

Arabidopsis,autophagy,cell death,peptide,peptidomics,programmed cell death,stress response,vascular development,x