Zhao_2019_Arch.Insect.Biochem.Physiol__e21554

Reference

Title : Molecular and functional properties of two Spodoptera exigua acetylcholinesterase genes - Zhao_2019_Arch.Insect.Biochem.Physiol__e21554
Author(s) : Zhao J , Hao D , Xiao L , Tan Y , Jiang Y , Bai L , Wang K
Ref : Archives of Insect Biochemistry & Physiology , :e21554 , 2019
Abstract :

Acetylcholinesterase (AChE) is a vital enzyme that hydrolyzes acetylcholine. Here, full-length complementary DNAs (cDNAs) of two acetylcholinesterase genes (SeAce1 and SeAce2) were obtained from Spodoptera exigua, a widespread phytophagous pest in agriculture. The complete SeAce1 cDNA comprised 5447 nucleotides including an open reading frame (ORF) encoding 694 amino acids, while SeAce2 cDNA encompassed a 1917-bp ORF which would likely yield 638 amino acids. Both SeAce1 and SeAce2 contained specific characteristics of functional AChE. A phylogenetic tree of all lepidopteran insect Aces showed S. exigua clustered with S. litura, Helicoverpa assulta, and H. armigera, all of which are Noctuidae. In S. exigua, SeAce1 gene expression levels (reverse transcription polymerase chain reaction [RT-PCR] and quantitative RT-PCR) were markedly increased compared with SeAce2 in all developmental phases and tissue types. Both genes were down regulated by inserting the corresponding dsRNAs in 5th instar larvae, which resulted in 56.7% (SeAce1) and 24.6% (SeAce2) death. Downregulation of both SeAce1 and SeAce2 significantly reduced fecundity and vitellogenin gene expression in S. exigua. These results revealed the biological functions of the two Ace genes (SeAce1 and SeAce2), providing novel insights into the development of strategies for controlling insect pests.

PubMedSearch : Zhao_2019_Arch.Insect.Biochem.Physiol__e21554
PubMedID: 31033012
Gene_locus related to this paper: spolt-ACHE2 , spolt-ACHE1

Related information

Gene_locus spolt-ACHE2    spolt-ACHE1

Citations formats

Zhao J, Hao D, Xiao L, Tan Y, Jiang Y, Bai L, Wang K (2019)
Molecular and functional properties of two Spodoptera exigua acetylcholinesterase genes
Archives of Insect Biochemistry & Physiology :e21554

Zhao J, Hao D, Xiao L, Tan Y, Jiang Y, Bai L, Wang K (2019)
Archives of Insect Biochemistry & Physiology :e21554