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Konopinska, N.

Publications and source records attributed to Konopinska, N..

2 recordsLinked to original sources

Effects of tachykinin-related peptides on the reproductive system of Tenebrio molitor females: implications for insect breeding and pest control

The global population, which is expected to reach 10.4 billion by 2086, will significantly increase the demand for sustainable food sources. Edible insects such as Tenebrio molitor are promising alternatives because of their nutritional value, low environmental footprint, and suitability for mass rearing. However, the efficiency of industrial production depends on the optimization of reproductive processes. Moreover, T. molitor is also a pest species that contributes to grain loss, highlighting the dual need for strategies that increase reproduction under farming conditions and suppress fertility in pest populations. Neuropeptides, including tachykinin-related peptides (TRPs), are known regulators of metabolism and immunity, but their role in reproduction remain unclear. Here, we investigated whether TRPs are involved in female T. molitor reproduction. Expression analyses revealed strong correlations between TRP, TRPR and vitellogenin (Vg) gene expression, suggesting TRP-mediated stimulation of yolk precursor synthesis. The application of Tenmo-TRP-7 affects basic reproductive parameters, including egg production, follicular epithelium permeability, and terminal oocyte volume. These effects are confirmed by the use of dsRNA directed against the gene encoding TRP precursor. These findings show that TRPs regulate reproduction at multiple levels, positioning them as molecular targets for both enhancing insect farming and developing environmentally safe pest control strategies.

physiology↗

Tachykinin-related peptide signalling is important for the immune response of the mealworm beetle Tenebrio molitor L.

Insects possess a well-developed innate immune system, which encompasses both cellular and humoral mechanisms. On the basis of the similarities in neuropeptide actions between insects and vertebrates, we assume that neuropeptides such as tachykinin-related peptides (TRPs) regulate insect immune responses and are themselves modulated following infection. In this study, we examined how immune activation affects the expression of genes encoding TRP precursors and receptors (TRP and TRPR) and whether TRPs directly modulates selected immune mechanisms in the pest species Tenebrio molitor. Our results revealed two important insights. First, after activation of the immune system, TRP and TRPR genes were significantly downregulated in the nervous system and immune-related cells. These changes are closely correlated with the changes of the expression level of immune genes. We then show using Spantide II, a potent antagonist of TRPR, and RNAi knock-down of TRP and TRPR the modulation of key processes of the T. molitor humoral response. This includes the over-expression of genes encoding antimicrobial peptides and the important arthropod immune effector phenoloxidase activity. Our findings highlight a compelling association between the TRP and immune regulation in Tenebrio and provide insights into the hormonal regulation of physiological processes in insects. Our research also provides novel insights that can contribute to the development of sustainable pest control strategies amid increasing insecticide resistance.

immunology↗