The main reason for the varying degrees of success of peptidase inhibitors (PI) as biological insecticides is the existence of a poorly understood mechanism, which allows pest insects to compensate for PI present in their diet. To challenge this highly flexible physiological mechanism and to prolong the inhibitory effect of PI on insect growth, a number of measures were taken into account before and during experiments with a notorious pest insect, the desert locust, Schistocerca gregaria: (i) non-plant PI (pacifastin-related inhibitors) were used to reduce the risk of a specific co-evolutionary adaptation of the pest insect, (ii) based on the main types of digestive enzymes present in the midgut, mixtures of multiple PI with different enzym...
Recently, a new serine protease inhibitor family has been described in arthropods. Eight members wer...
Plants are at the basis of the food chain, but there is no such thing as a “free lunch” for herbivor...
The last decade, a new scrine protease inhibitor family has been described in arthropods. Eight memb...
Information on the structural characteristics and inhibitory activity of the pacifastin family is re...
In the last decade, a new serine protease inhibitor family has been described in arthropods. Eight m...
Members of the pacifastin family have been characterized as serine peptidase inhibitors (PI), but th...
Protease inhibitors (PIs) are plant defensive com-pounds that are considered as candidates for futur...
In mammalian pancreatic cells, the pancreatic secretory trypsin inhibitor (PSTI) prevents the premat...
A novel serine protease inhibitor peptide family, designated as the pacifastin family', has recently...
Insect-resistant transgenic plants have been suggested to have deleterious effects on beneficial pre...
Members of the pacifastin family are serine peptidase inhibitors, found in arthropods and have many ...
Herbivorous insects evolved adaptive mechanisms to compensate for the presence of plant defensive pr...
Plants and herbivores have been co-evolving for thousands of years, and as a result, plants have def...
Insect-resistant transgenic plants have been suggested to have deleterious effects on beneficial pre...
Proteases from the digestive system of insects are targets of plant defense: the plant produces prot...
Recently, a new serine protease inhibitor family has been described in arthropods. Eight members wer...
Plants are at the basis of the food chain, but there is no such thing as a “free lunch” for herbivor...
The last decade, a new scrine protease inhibitor family has been described in arthropods. Eight memb...
Information on the structural characteristics and inhibitory activity of the pacifastin family is re...
In the last decade, a new serine protease inhibitor family has been described in arthropods. Eight m...
Members of the pacifastin family have been characterized as serine peptidase inhibitors (PI), but th...
Protease inhibitors (PIs) are plant defensive com-pounds that are considered as candidates for futur...
In mammalian pancreatic cells, the pancreatic secretory trypsin inhibitor (PSTI) prevents the premat...
A novel serine protease inhibitor peptide family, designated as the pacifastin family', has recently...
Insect-resistant transgenic plants have been suggested to have deleterious effects on beneficial pre...
Members of the pacifastin family are serine peptidase inhibitors, found in arthropods and have many ...
Herbivorous insects evolved adaptive mechanisms to compensate for the presence of plant defensive pr...
Plants and herbivores have been co-evolving for thousands of years, and as a result, plants have def...
Insect-resistant transgenic plants have been suggested to have deleterious effects on beneficial pre...
Proteases from the digestive system of insects are targets of plant defense: the plant produces prot...
Recently, a new serine protease inhibitor family has been described in arthropods. Eight members wer...
Plants are at the basis of the food chain, but there is no such thing as a “free lunch” for herbivor...
The last decade, a new scrine protease inhibitor family has been described in arthropods. Eight memb...