Javascript must be enabled to continue!
Insecticidal Effects of Transgenic Maize Bt-Cry1Ab, Bt-Vip3Aa, and Bt-Cry1Ab+Vip3Aa against the Oriental Armyworm, Mythimna separata (Walker) in Southwest China
View through CrossRef
The oriental armyworm, Mythimna separata (Walker), an important migratory pest of maize and wheat, is posing a severe threat to maize production in Asian countries. As source areas of spring–summer emigratory populations, the control of M. separata in southwestern China is of great significance for East Asian maize production. To assess the toxicity of Bt maize against the pest, bioassays of Bt-(Cry1Ab+Vip3Aa) maize (event DBN3601T), Bt-Cry1Ab maize (event DBN9936), and Bt-Vip3Aa maize (event DBN9501) were conducted in Yunnan province of southwest China. There were significant differences in insecticidal activity between the three Bt maize events, and DBN3601T presented the highest insecticidal role. The results also indicated that the insecticidal effect of various Bt maize tissues took an order in leaf > kernel > silk, which is highly consistent with the expression amounts of Bt insecticidal protein in leaf (69.69 ± 1.18 μg/g), kernel (11.69 ± 0.75 μg/g), and silk (7.32 ± 0.31 μg/g). In field trials, all larval population densities, plant damage rates, and leaf damage levels of DBN3601T maize were significantly lower than the conventional maize. This research indicated that the DBN3601T event had a high control efficiency against M. separata and could be deployed in southwest China for the management of M. separata.
Title: Insecticidal Effects of Transgenic Maize Bt-Cry1Ab, Bt-Vip3Aa, and Bt-Cry1Ab+Vip3Aa against the Oriental Armyworm, Mythimna separata (Walker) in Southwest China
Description:
The oriental armyworm, Mythimna separata (Walker), an important migratory pest of maize and wheat, is posing a severe threat to maize production in Asian countries.
As source areas of spring–summer emigratory populations, the control of M.
separata in southwestern China is of great significance for East Asian maize production.
To assess the toxicity of Bt maize against the pest, bioassays of Bt-(Cry1Ab+Vip3Aa) maize (event DBN3601T), Bt-Cry1Ab maize (event DBN9936), and Bt-Vip3Aa maize (event DBN9501) were conducted in Yunnan province of southwest China.
There were significant differences in insecticidal activity between the three Bt maize events, and DBN3601T presented the highest insecticidal role.
The results also indicated that the insecticidal effect of various Bt maize tissues took an order in leaf > kernel > silk, which is highly consistent with the expression amounts of Bt insecticidal protein in leaf (69.
69 ± 1.
18 μg/g), kernel (11.
69 ± 0.
75 μg/g), and silk (7.
32 ± 0.
31 μg/g).
In field trials, all larval population densities, plant damage rates, and leaf damage levels of DBN3601T maize were significantly lower than the conventional maize.
This research indicated that the DBN3601T event had a high control efficiency against M.
separata and could be deployed in southwest China for the management of M.
separata.
Related Results
Silicon Supplementation Reinforces Maize Defence to Defeat the Oriental Armyworm
Silicon Supplementation Reinforces Maize Defence to Defeat the Oriental Armyworm
ABSTRACTMaize is a critical component of global food security; however, pests like the oriental armyworm (Mythimna separata Walker) cause significant yield losses to this crop. Con...
Development and reproduction of Tetranychus cinnabarinus (Acari: Tetranychiae) on transgenic insect-resistant cotton plants
Development and reproduction of Tetranychus cinnabarinus (Acari: Tetranychiae) on transgenic insect-resistant cotton plants
The effects of two insect-resistant transgenic cotton strains (transgenic Bt pest-resistant cotton Zhongkangza 5 and Lumianyan 23, transgenic Bt+CpTI pest-resistant cotton sGK958 a...
Eggplant’s foliar chlorogenic acid provides resistance against the tropical armyworm
Eggplant’s foliar chlorogenic acid provides resistance against the tropical armyworm
Abstract
Lepidopteran pests are the major crop devastators. Farmers have to resort to heavy synthetic pesticide application for their control. It increases the pest...
Push-pull cropping system soil legacy alter maize metabolism and fall armyworm, Spodoptera frugiperda (Lepidoptera: Noctuidae) resistance through tritrophic interactions”
Push-pull cropping system soil legacy alter maize metabolism and fall armyworm, Spodoptera frugiperda (Lepidoptera: Noctuidae) resistance through tritrophic interactions”
Abstract
Background and aims
Crop cultivation practices and soil legacies are intrinsically linked and are hypothesized to influence plant direct and indirect defence again...
Variation in the phenotypic performance of top-cross fall armyworm resistant maize hybrids under optimal growing conditions in a derived savanna agro-ecology
Variation in the phenotypic performance of top-cross fall armyworm resistant maize hybrids under optimal growing conditions in a derived savanna agro-ecology
Abstract
Fall armyworm (
Spodoptera frugiperda
) severely threatens sustainable maize production in smallhold...
Legume based Profitable Intercropping System for Management of Fall Armyworm in Maize
Legume based Profitable Intercropping System for Management of Fall Armyworm in Maize
Background: Incidence of fall armyworm in maize has been reported at a severe level since 2018 resulting in low yield and in extreme cases complete failure of the crop. In view of ...
Resistance management for Bt maize and above-ground lepidopteran targets in the USA: from single gene to pyramided traits.
Resistance management for Bt maize and above-ground lepidopteran targets in the USA: from single gene to pyramided traits.
Abstract
Since first being commercialized in 1996, transgenic maize expressing Bacillus thuringiensis (Bt) proteins has gained widespread acceptance in the world. In 2013, ...
KELAYAKAN USAHATANI JAGUNG HIBRIDA DI KABUPATEN MUNA PROVINSI SULAWESI TENGGARA
KELAYAKAN USAHATANI JAGUNG HIBRIDA DI KABUPATEN MUNA PROVINSI SULAWESI TENGGARA
<p>Feasibility Study of Hybrid Maize Farming in Muna District Southeast Sulawesi Province. Maize harvest area in 2015 in Muna District was 13,159 ha with the production by 32...

