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Potticary, A.

Publications and source records attributed to Potticary, A..

3 recordsLinked to original sources

takeout gene expression is associated with temporal kin recognition

A key component of parental care is avoiding killing and eating your own offspring. Many organisms commit infanticide but switch to parental care at the time when their own offspring would be expected, known as temporal kin recognition. It is unclear how such indirect kin recognition is so common across taxa. One possibility is that temporal kin recognition can be achieved by altering a simple mechanism, such as co-opting the regulation of timing and feeding in other contexts. Here we determine whether takeout, a gene implicated in coordinating feeding, influences temporal kin recognition in the roundneck sexton beetle, Nicrophorus orbicollis. We find that takeout expression is not associated with non-parental feeding changes resulting from hunger, or in the general switch to the full parental care repertoire. However, beetles that accepted and provided care to their offspring had a higher takeout expression than beetles that committed infanticide. Together, these data support the idea that the evolution of temporal kin recognition may be enabled by co-option of mechanisms that integrate feeding behaviour in other contexts.

animal behavior and cognition↗

Spatiotemporal variation in the competitive environment, with implications for how climate change may affect a species with parental care.

Burying beetles of the genus Nicrophorus have become a model for studying the evolution of complex parental care in a laboratory. Nicrophorus species depend on small vertebrate carcasses to breed, which they process and provision to their begging offspring. However, vertebrate carcasses are highly sought after by a wide variety of species and so competition is expected to be critical to the evolution of parental care. Despite this, the competitive environment for Nicrophorus is rarely characterized in the wild and remains a missing factor in laboratory studies. Here, we performed a systematic sampling of Nicrophorus orbicollis living near the southern extent of their range at Whitehall Forest in Clarke County, Georgia, USA. We determined the density of N. orbicollis and other necrophilous species that may affect the availability of this breeding resource through interference or exploitation competition. In addition, we characterize body size, a key trait involved in competitive ability, for all Nicrophorus species at Whitehall Forest throughout the season. Finally, we compare our findings to other published natural history data for Nicrophorines. We document a significantly longer active season than was observed twenty years previously at Whitehall Forest for both N. orbicollis and Nicrophorus tomentosus, potentially due to climate change. As expected, the adult body size of N. orbicollis was larger than N. tomentosus, the only other Nicrophorus species that was captured in 2022 at Whitehall Forest. The other most prevalent interspecific insects captured included species in the families Staphylinidae, Histeridae, Scarabaeidae, and Elateridae, which may act as competitors or predators of Nicrophorus eggs and larvae. Together, our results indicate significant variation in intra- and interspecific competition relative to populations within the N. orbicollis range. These findings suggest that the competitive environment varies extensively over space and time, which help to inform the role of ecology in the evolution of parental care in this species.

ecology↗

Oxytocin/vasopressin system of insects influences parental care in males but not females

AO_SCPLOWBSTRACTC_SCPLOWParental care is thought to evolve through modification of behavioral precursors, which predicts that the mechanistic changes occur in the genes underlying those traits. The duplicated gene system of oxytocin/vasopressin has been broadly co-opted across vertebrates to influence parenting, from a pre-duplication ancestral role in water balance. It remains unclear whether co-option of these genes for parenting is limited to vertebrates. Here, we experimentally tested for associations between inotocin gene expression and water balance, parental acceptance of offspring, and active parenting in the subsocial beetle Nicrophorus orbicollis, to test whether a single copy homologue, inotocin, has similarly been co-opted for parental care in a species with elaborate parenting. As expected, inotocin was associated with water balance in both sexes. Inotocin expression increased around sexual maturation in both males and females, although more clearly in males. Finally, we found that expression of inotocin was not associated with acceptance of larvae but was associated with a transition to male but not female parenting. Moreover, level of offspring provisioning behavior and gene expression were positively correlated in males but uncorrelated in females. Our results suggest a broad co-option of this system for parenting that may have existed prior to gene duplication, and that inotocin may be associated with flexibility in parenting behavior. IO_SCPLOWMPACTC_SCPLOW SO_SCPLOWUMMARYC_SCPLOWOxytocin/vasopressin are amongst the most studied neuropeptides in vertebrates, influencing water balance, mating interactions, and most notably, social bonding. This gene pair evolved from a duplication in the vertebrate lineage of an ancestral vasopressin-like gene. Are the multiple social effects in vertebrates due to this duplication, or are social influences also ancestral? Here, we demonstrate that, in a biparental social beetle with a single copy, inotocin is associated with social interactions between fathers and offspring as well as being associated with the ancestral role of water balance in both males and females. In vertebrates, both oxytocin and vasopressin have been shown to impact social interactions in both sexes, although often showing sex-specificity in their action within species. Our results suggest that this system may have been co-opted for parenting prior to gene duplication and may facilitate flexibility in caring behavior.

evolutionary biology↗