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Increased callose deposition in plants lacking DYNAMIN-RELATED PROTEIN 2B is dependent upon POWDERY MILDEW RESISTANT 4.

Plant Signal Behav. 2016; 
Leslie ME, Rogers SW, Heese A.
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Catalog Peptides Next, we infiltrated three fully expanded leaves per plant with either a 100 nM flg22 (QRLSTGSRINSAKDDAAGLQIA; Genscript) solution or a mock solution (0. Get A Quote

摘要

Callose deposition within the cell wall is a well-documented plant immune response to pathogenic organisms as well as to pathogen-/microbe- associated molecular patterns (P/MAMPs). However, the molecular mechanisms that modulate pathogen-induced callose deposition are less understood. We reported previously that Arabidopsis plants lacking the vesicle trafficking component DYNAMIN-RELATED PROTEIN 2B (DRP2B) display increased callose deposition in response to the PAMP flg22. Here, we show that increased number of flg22-induced callose deposits in drp2b leaves is fully dependent on the callose synthase POWDERY MILDEW RESISTANT 4 (PMR4). We propose that in addition to functioning in flg22-induced endocytosis of the... More

关键词

Arabidopsis thaliana; DYNAMIN-RELATED PROTEIN 2B (DRP2B); Fiji image analysis; POWDERY MILDEW RESISTANT 4 (PMR4); Trainable Weka Segmentation plug-in; callose; flg22