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Chemical genetic identification of a lectin receptor kinase that transduces immune responses and interferes with abscisic acid signaling.

Plant J.. 2019; 
ParkJiyoung,KimTae-Houn,TakahashiYohei,SchwabRebecca,DressanoKeini,StephanAaron B,CeciliatoPaulo H O,RamirezEduardo,GarinVince,HuffakerAlisa,SchroederJuli
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Peptide Synthesis A 23 amino acid peptide corresponding to AtPep1 active sequence (PEP1) was purchased from Genscript....06% DMSO (solvent control) or 1 μM flg22 (GenScript) for the indicated time periods. Get A Quote

摘要

Insight into how plants simultaneously cope with multiple stresses, for example, when challenged with biotic stress from pathogen infection and abiotic stress from drought, is important both for understanding evolutionary trade-offs and optimizing crop responses to these stresses. Mechanisms by which initial plant immune signaling antagonizes abscisic acid (ABA) signal transduction require further investigation. Using a chemical genetics approach, the small molecule [5-(3,4-dichlorophenyl)furan-2-yl]-piperidine-1-ylmethanethione (DFPM) has previously been identified due to its ability to suppress ABA signaling via plant immune signaling components. Here, we have used forward chemical genetics screen... More

关键词

Arabidopsis thaliana , [5-(3,4-dichlorophenyl)furan-2-yl]-piperidine-1-ylmethanethione (DFPM) , mitogen-activated protein kinase ,abscisic acid,chemical genetics,cross-interference,immune signaling,lectin receptor kinase,plant def