Title : ACE: an efficient and sensitive tool to detect insecticide resistance-associated mutations in insect acetylcholinesterase from RNA-Seq data - Guo_2017_BMC.Bioinformatics_18_330 |
Author(s) : Guo D , Luo J , Zhou Y , Xiao H , He K , Yin C , Xu J , Li F |
Ref : BMC Bioinformatics , 18 :330 , 2017 |
Abstract :
BACKGROUND: Insecticide resistance is a substantial problem in controlling agricultural and medical pests. Detecting target site mutations is crucial to manage insecticide resistance. Though PCR-based methods have been widely used in this field, they are time-consuming and inefficient, and typically have a high false positive rate. Acetylcholinesterases (Ace) is the neural target of the widely used organophosphate (OP) and carbamate insecticides. However, there is not any software available to detect insecticide resistance associated mutations in RNA-Seq data at present. |
PubMedSearch : Guo_2017_BMC.Bioinformatics_18_330 |
PubMedID: 28693417 |
Guo D, Luo J, Zhou Y, Xiao H, He K, Yin C, Xu J, Li F (2017)
ACE: an efficient and sensitive tool to detect insecticide resistance-associated mutations in insect acetylcholinesterase from RNA-Seq data
BMC Bioinformatics
18 :330
Guo D, Luo J, Zhou Y, Xiao H, He K, Yin C, Xu J, Li F (2017)
BMC Bioinformatics
18 :330