(J Insect Physiol[TA])
5,072 results
  • Effect of predatory pressure on behavior of termite Reticulitermes chinensis. [Journal Article]
    J Insect Physiol. 2026 Sep; 173:105049.Hassan H, Hassan A, … Lu MJI
  • Predation risk can shape prey behavior as strongly as direct killing, yet the non-lethal effects of predators on termites remain largely unknown. Current study investigated how chemical, contact, and soil-derived cues from fire ant Solenopsis invicta affect the behavior and physiology of termite Reticulitermes chinensis. Termites exposed to ant-derived cues elicited significantly elevated allogro…
  • A yellow body-colour phenotype in the pea aphid is associated with enhanced heat-stress tolerance. [Journal Article]
    J Insect Physiol. 2026 Sep; 173:105046.Li Y, Peng X, … Guo YQJI
  • Body-colour polymorphism is closely associated with fitness variation and environmental adaptation in insects, yet the genetic and physiological significance of rare colour morphs remains poorly characterized. During field surveys, we discovered a wild parthenogenetic yellow morph of the pea aphid, Acyrthosiphon pisum, and examined its inheritance pattern, fitness performance, and heat-stress phy…
  • The rectal sac as a second liver for detoxification in the metamorphosing silkworm. [Journal Article]
    J Insect Physiol. 2026 Sep; 173:105041.Chen R, Yang J, … Huang WJI
  • The insect larval fat body is the primary organ for detoxification of environmental pesticides and metabolic waste. During lepidopteran metamorphosis, the larval fat bodies undergo degradation and reprogramming for development, leaving the process of detoxification largely unknown at this stage. Using integrative approaches in the silkworm, Bombyx mori, we demonstrate that the pupal rectal sac, a…
  • Visual and olfactory evidence of host plant recognition by Cacopsylla pruni. [Journal Article]
    J Insect Physiol. 2026 Sep; 173:105039.Egri Á, Tholt G, … Molnár BPJI
  • The plum psyllid, Cacopsylla pruni (Hemiptera: Psyllidae), is the primary vector of 'Candidatus Phytoplasma prunorum', the causal agent of European Stone Fruit Yellows (ESFY). Its seasonal host alternation - from conifers in winter to Prunus species in spring - requires precise host recognition, yet the underlying sensory mechanisms remain poorly understood. We investigated the visual and olfacto…