Results 201 to 210 of about 10,621 (229)
Innovative strategies for high-throughput discovery and engineering of plant immune receptors. [PDF]
Zhao W, Sun T, Zhang Y, Fu ZQ, Que Y.
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Investigating PAMP-triggered immunity in the Arabidopsis thaliana/Hyaloperonospora arabidopsidis interaction [PDF]
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Early molecular events in PAMP-triggered immunity
Current Opinion in Plant Biology, 2009In plant innate immunity, the first line of microbial recognition leading to active defence responses relies on the perception of pathogen-associated molecular patterns (PAMPs) by pattern-recognition receptors (PRRs). This recognition leads to PAMP-triggered immunity (PTI).
Cyril Zipfel
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PopW activates PAMP-triggered immunity in controlling tomato bacterial spot disease
Biochemical and Biophysical Research Communications, 2015PopW, a protein elicitor, reduces tomato bacterial spot disease caused by Xanthomonas euvesicatoria (X.e.) with a significantly decreased titer of X.e., achieving more than 50% biocontrol efficacy. Along with phenotype changes, apparent reactive oxygen species (ROS) burst and callose deposition were triggered by PopW at the cellular level; The mRNA ...
Hongxia Liu
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Nucleic acid-mediated PAMP-triggered immunity in plants
Current Opinion in Virology, 2020With the discovery that pattern-triggered immunity (PTI) is active against virus infection in plants less than a decade ago, we began to understand that antiviral immunity goes far beyond RNA silencing and resistance gene-mediated immunity and is much more complex than previously thought.
Khalid, Amari, Annette, Niehl
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Analysis of PAMP-Triggered ROS Burst in Plant Immunity
2017The plant perception of pathogen-associated molecular patterns triggers a plethora of cellular immune responses. One of these responses is a rapid and transient burst of reactive oxygen species (ROS) mediated by plasma membrane-localized NADPH oxidases.
Yuying, Sang, Alberto P, Macho
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News from the frontline: recent insights into PAMP-triggered immunity in plants
Current Opinion in Plant Biology, 2008Plants have developed a complex defence network to fight off invading pathogens. In recent years, the full importance of pathogen-associated molecular pattern (PAMP)-triggered immunity (PTI) within this network became apparent. Several new PAMPs have been isolated and new pattern-recognition receptors (PRRs) identified.
Schwessinger, Benjamin, Zipfel, Cyril
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Pamp Triggered Immune Response in wheat leafs.
2018Hexaploid bread wheat, variety Chinese Spring, was treated with flg22 or chitin. Transcriptomes were sequenced before, 30 minutes and 180 minutes after treatment.
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Chapter 1 PAMP-Triggered Basal Immunity in Plants
2009Abstract Significant progress has recently been made in our understanding of the molecular mechanisms that underpin a plant's ability to cope with microbial infection. A new concept has derived thereof that provides evidence for a functional link between different types of microbial resistance in plants and their evolutionary relationship.
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Metabolomics, 2016
Introduction The rhizobacterial tomato pathogen Pseudomonas syringae pv. tomato str. DC3000 (PstDC3000), like many plant pathogenic bacteria, can elicit hypersensitive response in non-host plant cells. PstDC3000 uses a type III protein secretion system (T3SS) to deliver effector proteins.
Biswapriya B. Misra +2 more
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Introduction The rhizobacterial tomato pathogen Pseudomonas syringae pv. tomato str. DC3000 (PstDC3000), like many plant pathogenic bacteria, can elicit hypersensitive response in non-host plant cells. PstDC3000 uses a type III protein secretion system (T3SS) to deliver effector proteins.
Biswapriya B. Misra +2 more
openaire +1 more source

