Effect of RNAi mediated silencing of DIB, JHE, and CAM on the diapause termination of Calliptamus italicus (Orthoptera: Acrididae) eggs

Author:

Zhao Na1,He Wei1ORCID,Hu Hongxia1,Lv Xuefeng2,Yu Fei1,Ji Rong1,Ye Xiaofang1

Affiliation:

1. International Center for the Collaborative Management of Cross‐border Pest in Central Asia, Xinjiang Key Laboratory of Special Species Conservation and Regulatory Biology, Key Laboratory of Special Environment Biodiversity Application and Regulation in Xinjiang College of Life Sciences, Xinjiang Normal University Urumqi China

2. Institute of Animal Husbandry Quality Standards Xinjiang Academy of Animal Sciences Urumqi China

Abstract

AbstractBACKGROUNDCalliptamus italicus L. is a major pest in Xinjiang grassland. The diapause overwintering strategy is one of the important reasons for the large population of this pest. This study investigated the function of the genes associated with the release of diapause (DIB, JHE and CAM) in Calliptamus italicus by RNA interference (RNAi) technology to aid in its biological control.RESULTSThe expression levels of DIB and its downstream‐associated genes (EcR and FTZ‐F1) in the eggs injected with dsDIB for 12 h decreased by 96.6%, 55.8% and 81.8%, respectively. Diapause began to terminate on day 3, and development was almost complete on day 6. However, the head was significantly smaller. The expression levels of JHE and its downstream‐associated genes (JHEH and VgR) at 48 h after dsJHE treatment decreased by 76.5%, 85.6% and 85.9%, respectively. The termination of diapause occured on day 3 of incubation. The development was basically complete on day 6, but the yolk had been incompletely absorbed. The expression of CAM and its downstream‐associated genes (CAMK4 and MYL) at 24 h after dsCAM treatment decreased by 42.4%, 95.3% and 82.7%, respectively. Diapause termination was completed on day 4 for incubation, and development was abnormal on day 6. The absorption of yolk was incomplete.CONCLUSIONDIB, JHE and CAM can delay the diapause termination of Calliptamus italicus eggs to different degrees and can be developed as potential target genes for its biological control. © 2024 Society of Chemical Industry.

Funder

Natural Science Foundation of Xinjiang Uygur Autonomous Region

Xinjiang Normal University

Publisher

Wiley

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