Genes encoding plant antibiotic peptides show expression patterns that are consistent with a defence role. Transgenic over-expression of defence peptide genes is potentially useful to engineer resistance of plants to relevant pathogens. Pathogen mutants that are sensitive to plant peptides in vitro have been obtained and a decrease of their virulence in planta has been observed, which is consistent with their hypothetical defence role. A similar approach has been followed to elucidate the potential direct anti-microbial role of hydrogen peroxide. Additionally, a scavenger of peroxynitrite has been used to investigate its involvement in plant defenc
Antimicrobial peptides (AMPs) are small peptides with less than 50 amino acids and are part of the i...
Background: the Biopeptide BP100 is a synthetic and strongly cationic α-helical undecapeptide with h...
International audienceWith the aim of obtaining new strategies to control plant diseases, we investi...
AbstractGenes encoding plant antibiotic peptides show expression patterns that are consistent with a...
Plants have developed a variety of mechanisms to cope with abiotic and biotic stresses. In a previou...
Plants have developed a variety of mechanisms to cope with abiotic and biotic stresses. In a previou...
Plants have developed a variety of mechanisms to cope with abiotic and biotic stresses. In a previou...
Antimicrobial peptides constitute an important factor in the defense of plants against pathogens, an...
As our knowledge of the cellular and genetic mechanisms of plant disease resistance increase, so doe...
The emergence of drug-resistant pathogens poses a serious critical threat to global public health an...
Antimicrobial peptides (AMPs) are small peptides with less than 50 amino acids and are part of the i...
<div><p>Antimicrobial peptides (AMPs) are small peptides with less than 50 amino acids and are part ...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Peptides are important regulators that participate in the modulation of almost every physiological e...
The Biopeptide BP100 is a synthetic and strongly cationic α-helical undecapeptide with high, specifi...
Antimicrobial peptides (AMPs) are small peptides with less than 50 amino acids and are part of the i...
Background: the Biopeptide BP100 is a synthetic and strongly cationic α-helical undecapeptide with h...
International audienceWith the aim of obtaining new strategies to control plant diseases, we investi...
AbstractGenes encoding plant antibiotic peptides show expression patterns that are consistent with a...
Plants have developed a variety of mechanisms to cope with abiotic and biotic stresses. In a previou...
Plants have developed a variety of mechanisms to cope with abiotic and biotic stresses. In a previou...
Plants have developed a variety of mechanisms to cope with abiotic and biotic stresses. In a previou...
Antimicrobial peptides constitute an important factor in the defense of plants against pathogens, an...
As our knowledge of the cellular and genetic mechanisms of plant disease resistance increase, so doe...
The emergence of drug-resistant pathogens poses a serious critical threat to global public health an...
Antimicrobial peptides (AMPs) are small peptides with less than 50 amino acids and are part of the i...
<div><p>Antimicrobial peptides (AMPs) are small peptides with less than 50 amino acids and are part ...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Peptides are important regulators that participate in the modulation of almost every physiological e...
The Biopeptide BP100 is a synthetic and strongly cationic α-helical undecapeptide with high, specifi...
Antimicrobial peptides (AMPs) are small peptides with less than 50 amino acids and are part of the i...
Background: the Biopeptide BP100 is a synthetic and strongly cationic α-helical undecapeptide with h...
International audienceWith the aim of obtaining new strategies to control plant diseases, we investi...