Elevated atmospheric carbon dioxide concentrations (eCO) can affect both herbivorous insects and their host plants. The fall armyworm (FAW), is a highly polyphagous agricultural pest that may attack more than 350 host plant species and has developed resistance to both conventional and novel-action insecticides. However, the effects of eCO on host adaptability and insecticide resistance of FAW are unclear. We hypothesized that eCO might affect insecticide resistance of FAW by affecting its host plants. To test this hypothesis, we investigated the effect of eCO on (1) FAW's susceptibility to chlorantraniliprole after feeding on wheat, (2) FAW's population performance traits (including the growth and reproduction), and (3) changes in gene expression in the FAW by transcriptome sequencing. The toxicity of chlorantraniliprole against the FAW under eCO (800 µL/L) stress showed that the LC values were 2.40, 2.06, and 1.46 times the values at the ambient CO concentration (400 µL/L, aCO) for the three generations, respectively. Under eCO, the life span of pupae and adults and the total number of generations were significantly shorter than the FAW under aCO. Compared to the aCO treatment, the weights of the 3rd and 4th instar larvae and pupae of FAW under eCO were significantly heavier. Transcriptome sequencing results showed that more than 79 detoxification enzyme genes in FAW were upregulated under eCO treatment, including 40 P450, 5 CarE, 17 ABC, and 7 UGT genes. Our results showed that eCO increased the population performance of FAW on wheat and reduced its susceptibility to chlorantraniliprole by inducing the expression of detoxification enzyme genes. This study has important implications for assessing the damage of FAW in the future under the environment of increasing atmospheric CO concentration.
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http://dx.doi.org/10.3390/insects13111029 | DOI Listing |
Hypertension
January 2025
Clinical Research Institute, Institute of Advanced Clinical Medicine, Peking University, Beijing, China (X.Z., W.X., Y.W.).
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School of Mechanical Engineering and Automation, Foshan University, Foshan 528225, China.
Inspection robots, which improve hazard identification and enhance safety management, play a vital role in the examination of high-risk environments in many fields, such as power distribution, petrochemical, and new energy battery factories. Currently, the position precision of the robots is a major barrier to their broad application. Exact kinematic model and control system of the robots is required to improve their location accuracy during movement on the unstructured surfaces.
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School of Mechanical and Electrical Engineering, Changchun University of Science and Technology, Changchun 130022, China.
The curing process of hair-pin motor stator insulation is critical, as residual stress increases the risk of partial discharge and shortens a motor's lifespan. However, studies on the stress-induced defects during insulation varnish curing remain limited. This research integrates three-dimensional numerical simulations and experimental analysis to develop a curing model based on unsaturated polyester imide resin, aiming to explore the mechanisms of residual stress formation and optimization strategies.
View Article and Find Full Text PDFInsects
December 2024
Julius-Kuehn Institute, Koenigin-Luise-Str. 19, 14195 Berlin, Germany.
Maize productivity has remained low and has worsened in the wake of a changing climate, resulting in new invasive pests, with pests that were earlier designated as minor becoming major and with pathogens being transported by pests and/or entering their feeding sites. A study was conducted in 2021 in the Kisumu and Makueni counties, Kenya, to determine how different maize cropping systems affect insect diversity, insect damage to maize, and insects' ability to spread mycotoxigenic fungi in pre-harvest maize. The field experiments used a randomized complete block design, with the four treatments being maize monocrop, maize intercropped with beans, maize-bean intercrop with the addition of at planting, and push-pull technology.
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