
AbstractIn this study, a polymerase chain reaction (PCR) based on homology genes of Orco was utilized to identify DarmOrco, which is essential for olfaction in D. armandi. The results showed that DarmOrco shares significant sequence homology with Orco proteins had known in other insects. Quantitative real-time PCR (qRT-PCR) analysis suggested that DarmOrco was abundantly expressed in adult D. armandi; by contrast, DarmOrco showed trace amounts of expression level in other stages. Of different tissues, DarmOrco expression level was the highest in the antennae. In order to understand the functional significance of Orco, we injected siRNA of DarmOrco into the conjunctivum between the second and third abdominal segments and evaluated its expression after siRNA injected for 24 h, 48 h and 72 h. The results of qRT-PCR demonstrated that the reduction of mRNA expression level was significant (~80%) in DarmOrco siRNA-treated D. armandi than in water-injected and non-injected controls. The electroantennogram responses of females and males to 11 major volatiles of its host, were also reduced (30~68% for females; 16~70% for males) in siRNA-treated D. armandi compared with the controls. These results suggest that DarmOrco is crucial in mediating odorant perception.
Arthropod Antennae, Male, Base Sequence, Chemotactic Factors, Gene Expression, Pinus, Receptors, Odorant, Article, Organ Specificity, Gene Knockdown Techniques, Monoterpenes, Animals, Insect Proteins, Weevils, Female, RNA Interference, Amino Acid Sequence, RNA, Small Interfering, Conserved Sequence, Phylogeny
Arthropod Antennae, Male, Base Sequence, Chemotactic Factors, Gene Expression, Pinus, Receptors, Odorant, Article, Organ Specificity, Gene Knockdown Techniques, Monoterpenes, Animals, Insect Proteins, Weevils, Female, RNA Interference, Amino Acid Sequence, RNA, Small Interfering, Conserved Sequence, Phylogeny
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