Even in a natural ecosystem, plants are continuously threatened by various microbial diseases. To save themselves from these diverse infections, plants build a robust, multilayered immune system through their natural chemical compounds. Among the several crucial bioactive compounds possessed by plants’ immune systems, antimicrobial peptides (AMPs) rank in the first tier. These AMPs are environmentally friendly, anti-pathogenic, and do not bring harm to humans. Antimicrobial peptides can be isolated in several ways, but recombinant protein production has become increasingly popular in recent years, with the Escherichia coli expression system being the most widely used. However, the efficacy of this expression system is compromised due to the...
Flowers represent a relatively unexplored source of antimicrobial peptides of biotechnological poten...
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...
The emergence of drug-resistant pathogens poses a serious critical threat to global public health an...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
One action to furnish the increasing demand for food and feed of the growing world population is to ...
There has been a spurt in the spread of microbial resistance to antibiotics due to indiscriminate us...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Several families of plant antimicrobial peptides have been isolated from different organs and interc...
Mechanisms related to biotic interactions, such as pathogen attack, herbivory and symbiosis are impo...
Antibiotic-resistant pathogens continue to become a pressing issue globally and current broad spect...
Antimicrobial peptides (AMPs) constitute an essential part of the plant immune system. They are rega...
Antimicrobial peptides (AMPs) are low-molecular-weight defense polypeptides, produced in all living ...
Botany-derived antimicrobial peptides (BAMPs), a class of small, cysteine-rich peptides produced in ...
Flowers represent a relatively unexplored source of antimicrobial peptides of biotechnological poten...
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...
The emergence of drug-resistant pathogens poses a serious critical threat to global public health an...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
One action to furnish the increasing demand for food and feed of the growing world population is to ...
There has been a spurt in the spread of microbial resistance to antibiotics due to indiscriminate us...
Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate i...
Several families of plant antimicrobial peptides have been isolated from different organs and interc...
Mechanisms related to biotic interactions, such as pathogen attack, herbivory and symbiosis are impo...
Antibiotic-resistant pathogens continue to become a pressing issue globally and current broad spect...
Antimicrobial peptides (AMPs) constitute an essential part of the plant immune system. They are rega...
Antimicrobial peptides (AMPs) are low-molecular-weight defense polypeptides, produced in all living ...
Botany-derived antimicrobial peptides (BAMPs), a class of small, cysteine-rich peptides produced in ...
Flowers represent a relatively unexplored source of antimicrobial peptides of biotechnological poten...
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...