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Orchestration of Processing Body Dynamics and mRNA Decay in Arabidopsis Immunity.

Cell Rep. 2019; 
Yu X, Li B, Jang GJ, Jiang S, Jiang D, Jang JC, Wu SH, Shan L, He P.
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Gene Synthesis Scientific Cat # P-1713 Calf intestinal alkaline phosphatase (CIP) New England BioLabs Cat # M0290S Lambda protein phosphatase (lPP) New England BioLabs Cat # P0753S Cordycepin Sigma-Aldrich Cat # C9137 RiboZol RNA Extraction Reagent AMRESCO Cat # N580 RNase-free DNase I New England BioLabs Cat # M0303L flg22 Genscript N/A elf18 Genscript N/A chitin Sigma-Aldrich Cat # C9752 peptidoglycan Sigma-Aldrich Cat # 77140 lipopolysaccharide Sigma-Aldrich Cat # L2012 IPTG Sigma-Aldrich Cat# I6758 Pierce glutathione agarose Thermo Scientific Cat# 16101 amylose resin New England BioLabs Cat# E8021L Critical Commercial Assays M-MuLV Reverse Transcriptase New England BioLabs Cat # M0253L iTaq SYBR green Supermix Bio-Rad Cat # 1725124 Experimental Models: Organisms/Strains Arabidopsis thaliana Col-0 wild-type Li et al. Get A Quote

摘要

Proper transcriptome reprogramming is critical for hosts to launch an effective defense response upon pathogen attack. How immune-related genes are regulated at the posttranscriptional level remains elusive. We demonstrate here that P-bodies, the non-membranous cytoplasmic ribonucleoprotein foci related to 5'-to-3' mRNA decay, are dynamically modulated in plant immunity triggered by microbe-associated molecular patterns (MAMPs). The DCP1-DCP2 mRNA decapping complex, a hallmark of P-bodies, positively regulates plant MAMP-triggered responses and immunity against pathogenic bacteria. MAMP-activated MAP kinases directly phosphorylate DCP1 at the serine237 residue, which further stimulates its interaction with XRN4... More

关键词

MAP kinases; mRNA decapping complex; mRNA decay; microbe-associated molecular patterns; plant immunity; processing body