In 1995, the launch of the first commercial chitin synthesis inhibitor (CSI) bait led to the transformation of the subterranean termite control industry around the world. Their slow mode of action, which relies on both their ability to be transferred among nestmates and termite molting biology, has made them cost-effective solutions for subterranean termite colony elimination while minimizing the introduction of pesticides into the soil toward an environmentally sustainable strategy. However, despite successful commercial implementations, the acceptance of their use varies within the pest control industry around the world. Notably, the nuanced complexity of how CSI baits lead to colony elimination upon feeding by termite foragers has, in part, remained elusive for the past 3 decades, allowing for long-lasting misconceptions to persist. A recent series of studies has since provided complementary elements of understanding how CSI baits utilize termites' inherent colony demography, behavior, and physiology to trigger colony elimination after a characteristic succession of events within the colony collapse process. I here provide a synthetic overview of subterranean termite colony characteristics when exposed to CSI baits using Coptotermes (Wasmann) (Blattodea: Heterotermitidae) as a primary model system. The changes in colony demography through the colony collapse reflect how the mode of action of CSI baits makes them a prime solution for sustainable subterranean termite pest management. Following decades of innovation, ongoing interactions among termite researchers, bait product manufacturers, and pest management providers must continue to bring solutions to existing and emerging termite pest problems around the world.
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http://dx.doi.org/10.1093/jee/toae243 | DOI Listing |
Front Microbiol
December 2024
Department of Entomology, Louisiana State University Agricultural Center, Baton Rouge, LA, United States.
The Ironwood tree () holds a significant ecological role in Guam where a decline in Ironwood trees was first documented in 2002. Studies have linked the Ironwood tree decline (IWTD) to bacteria from the complex and wetwood bacteria, specifically and . Presence of termites was first found to be associated with IWTD in 2010; however, the role of termites in IWTD is still not clear.
View Article and Find Full Text PDFBiosystems
December 2024
Division of Industrial Mathematics, National Institute for Mathematical Sciences Daejeon, 34047, Republic of Korea.
Subterranean termites build complex underground tunnel networks to efficiently gather food. Empirical observations indicate specific individuals are dedicated to tunneling, rarely interchanging tasks. However, considering the limited tunneling energy of termite populations, it is reasonable to expect regular task shifts between fatigued and rested individuals to maintain continuous tunneling and optimize foraging.
View Article and Find Full Text PDFJ Insect Physiol
December 2024
Applied Research Center for Life Science, Xi'an International University, Xi'an, Shaanxi 710077, PR China.
Pest Manag Sci
November 2024
Syngenta AG, Basel, Switzerland.
Background: Isoxazolines inhibit γ-aminobutyric acid chloride channels in insects and acarids by binding to postsynaptic receptors. This prevents chloride influx, leading to depolarization/hyperexcitation, paralysis, and death. Here, we evaluated the potential utility of a novel isoxazoline, isocycloseram, against several urban insect pests.
View Article and Find Full Text PDFJ Econ Entomol
October 2024
Ft. Lauderdale Research and Education Center, Entomology and Nematology Department, University of Florida, Ft. Lauderdale, FL, USA.
The Formosan subterranean termite, Coptotermes formosanus Shiraki, is both an economically impactful pest and a successful invader. One method of subterranean termite control is baiting. According to the label, baits are installed surrounding the structure at a uniform interval distance of ≈3 m.
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