Rhodojaponin III, as a botanical insecticide, affects a wide variety of biological processes in insects, including reduction of feeding, suspension of development, and oviposition deterring of adults in a dose-dependent manner. However, the mode of these actions remains obscure. (L.). Following treating 48 hours, newly emergence moths were collected and protein samples were prepared. The proteins were separated by 2-DE, and total 31 proteins were significantly affected by rhodojaponin III compared to the control identified by MALDI-TOF/TOF-MS/MS. These differentially expressed proteins act in the nervous transduction, odorant degradation and metabolic change pathways. Further, gene expression patterns in treated and untreated moths were con...
Jasmonic acid (JA) is a key hormone involved in plant defense responses. The effect of JA treatment ...
Abstract Background Chemosensory proteins are a family of insect-specific chemical sensors that sens...
AbstractStrategies for insect population control are currently targeting chemical communication at t...
Rhodojaponin III, as a botanical insecticide, affects a wide variety of biological processes in inse...
BACKGROUND: Rhodojaponin III, as a botanical insecticide, affects a wide variety of biological proce...
Background: Rhodojaponin III, as a botanical insecticide, affects a wide variety of biological proce...
<div><p>Background</p><p>Rhodojaponin III, as a botanical insecticide, affects a wide variety of bio...
<p>(A) The effect of Rhodojaponin-III on the frequency of feeding activity after silenced BdorCSP2 b...
Rhodojaponin-III is a nonvolatile botanical grayanoid diterpene compound, which has antifeedant and ...
International audienceInsect pest management relies mainly on neurotoxic insecticides, including neo...
<p>(A) Rhodojaponin III untreated; (B) Rhodojaponin III treated. The data represent the mean values ...
International audienceInsect pest management relies mainly on neurotoxic insecticides, including neo...
Insect-resistant transgenic plants have been suggested to have deleterious effects on beneficial pre...
Insect-resistant transgenic plants have been suggested to have deleterious effects on beneficial pre...
The olfaction system of insects plays an important role in mediating various physiological behaviors...
Jasmonic acid (JA) is a key hormone involved in plant defense responses. The effect of JA treatment ...
Abstract Background Chemosensory proteins are a family of insect-specific chemical sensors that sens...
AbstractStrategies for insect population control are currently targeting chemical communication at t...
Rhodojaponin III, as a botanical insecticide, affects a wide variety of biological processes in inse...
BACKGROUND: Rhodojaponin III, as a botanical insecticide, affects a wide variety of biological proce...
Background: Rhodojaponin III, as a botanical insecticide, affects a wide variety of biological proce...
<div><p>Background</p><p>Rhodojaponin III, as a botanical insecticide, affects a wide variety of bio...
<p>(A) The effect of Rhodojaponin-III on the frequency of feeding activity after silenced BdorCSP2 b...
Rhodojaponin-III is a nonvolatile botanical grayanoid diterpene compound, which has antifeedant and ...
International audienceInsect pest management relies mainly on neurotoxic insecticides, including neo...
<p>(A) Rhodojaponin III untreated; (B) Rhodojaponin III treated. The data represent the mean values ...
International audienceInsect pest management relies mainly on neurotoxic insecticides, including neo...
Insect-resistant transgenic plants have been suggested to have deleterious effects on beneficial pre...
Insect-resistant transgenic plants have been suggested to have deleterious effects on beneficial pre...
The olfaction system of insects plays an important role in mediating various physiological behaviors...
Jasmonic acid (JA) is a key hormone involved in plant defense responses. The effect of JA treatment ...
Abstract Background Chemosensory proteins are a family of insect-specific chemical sensors that sens...
AbstractStrategies for insect population control are currently targeting chemical communication at t...