Proteomics

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Proteomic changes in Oryza sativa leaves in response to MSP1 and flg22 treatments


ABSTRACT: Rice blast disease caused by Magnaporthe oryzae is one of the most damaging diseases affecting rice productivity. Previously, we reported a novel M. oryzae- secreted protein MSP1, which triggers cell death and pathogen-associated molecular pattern (PAMP)-triggered immune (PTI) responses in rice. To investigate the MSP1 induced defense response in rice at the protein level, we employed a label-free quantitative proteomic approach, in parallel with the flg22, which is a wellknown elicitor. Proteomics analysis using the MaxQuant-Perseus platform led to the identification of 4087 proteins of which 417 showed significant differences (multiple sample test, ANOVA p<0.05) in response to MSP1 and/or flg22 treatments. Functional annotation of the differential proteins showed that proteins related to the primary metabolism, secondary metabolism and lipid metabolism were strongly down-regulated, while elevated proteins were mainly associated with the stress response, chromatin remodeling, post-translational modification of proteins and signaling.

INSTRUMENT(S): Q Exactive

ORGANISM(S): Oryza Sativa (rice)

TISSUE(S): Photosynthetic Cell, Leaf

SUBMITTER: Iris Finkemeier  

LAB HEAD: Iris Finkemeier

PROVIDER: PXD008069 | Pride | 2018-07-06

REPOSITORIES: Pride

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Publications

A proteomic insight into the MSP1 and flg22 induced signaling in Oryza sativa leaves.

Meng Qingfeng Q   Gupta Ravi R   Min Chul Woo CW   Kim Jongyun J   Kramer Katharina K   Wang Yiming Y   Park Sang-Ryeol SR   Finkemeier Iris I   Kim Sun Tae ST  

Journal of proteomics 20180630


Previously, we reported a novel Magnaporthe oryzae- secreted protein MSP1, which triggers cell death and pathogen-associated molecular pattern (PAMP)-triggered immune (PTI) responses in rice. To investigate the MSP1 induced defense response in rice at the protein level, we employed a label-free quantitative proteomic approach, in parallel with flg22 treatment, which is a well-known elicitor. Exogenous application of MSP1 to rice leaves induced an oxidative burst, MAPK3/6 activation, and activati  ...[more]

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