Flowers represent a relatively unexplored source of antimicrobial peptides of biotechnological potential. This review focuses on flower-derived defense peptide classes with inhibitory activity towards plant pathogens. Small cationic peptides display diverse activities, including inhibition of digestive enzymes and bacterial and/or fungal inhibition. Considerable research is ongoing in this area, with natural crop plant defense potentially improved through the application of transgenic technologies. In this report, comparisons were made of peptide tertiary structures isolated from diverse flower species. A summary is provided of molecular interactions between flower peptides and pathogens, which include the role of membrane proteins and lipi...
<div><p>This work describes the <i>de-novo</i> design of peptides that inhibit a broad range of plan...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Bioactive peptides are part of an innate response elicited by most living forms. In plants, they are...
Mechanisms related to biotic interactions, such as pathogen attack, herbivory and symbiosis are impo...
This work describes the de-novo design of peptides that inhibit a broad range of plant pathogens. Fo...
This work describes the de-novo design of peptides that inhibit a broad range of plant pathogens. Fo...
Numerous studies have led to a better understanding of the mechanisms of action of viruses in system...
International audienceNumerous studies have led to a better understanding of the mechanisms of actio...
International audienceNumerous studies have led to a better understanding of the mechanisms of actio...
International audienceNumerous studies have led to a better understanding of the mechanisms of actio...
Even in a natural ecosystem, plants are continuously threatened by various microbial diseases. To sa...
International audienceNumerous studies have led to a better understanding of the mechanisms of actio...
Numerous studies have led to a better understanding of the mechanisms of action of viruses in system...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Bioactive peptides are part of an innate response elicited by most living forms. In plants, they are...
<div><p>This work describes the <i>de-novo</i> design of peptides that inhibit a broad range of plan...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Bioactive peptides are part of an innate response elicited by most living forms. In plants, they are...
Mechanisms related to biotic interactions, such as pathogen attack, herbivory and symbiosis are impo...
This work describes the de-novo design of peptides that inhibit a broad range of plant pathogens. Fo...
This work describes the de-novo design of peptides that inhibit a broad range of plant pathogens. Fo...
Numerous studies have led to a better understanding of the mechanisms of action of viruses in system...
International audienceNumerous studies have led to a better understanding of the mechanisms of actio...
International audienceNumerous studies have led to a better understanding of the mechanisms of actio...
International audienceNumerous studies have led to a better understanding of the mechanisms of actio...
Even in a natural ecosystem, plants are continuously threatened by various microbial diseases. To sa...
International audienceNumerous studies have led to a better understanding of the mechanisms of actio...
Numerous studies have led to a better understanding of the mechanisms of action of viruses in system...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Bioactive peptides are part of an innate response elicited by most living forms. In plants, they are...
<div><p>This work describes the <i>de-novo</i> design of peptides that inhibit a broad range of plan...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Bioactive peptides are part of an innate response elicited by most living forms. In plants, they are...