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O Neill, P.

Publications and source records attributed to O Neill, P..

2 recordsLinked to original sources

The neural control of infanticide and parental behaviors in male mice

Infanticide, the killing of conspecific young, is a natural behavior observed commonly in non-parental animals across species, including mice. Our recent study in female mice revealed a mutually inhibitory circuit, composed of estrogen receptor alpha cells in the medial preoptic area (MPOAEsr1) and the posterior part of the bed nucleus of stria terminalis (BNSTpEsr1), that controls pup-directed behaviors, with the former driving maternal care and the latter promoting infanticide. Given that both MPOA and BNSTp are sexually dimorphic, here we asked whether the same circuit operates in males. Our functional manipulations and in vivo and in vitro recordings reveal that MPOAEsr1 and BNSTpEsr1 cells similarly and respectively drive paternal care and infanticide and antagonize each other in male mice. Furthermore, during fatherhood, MPOAEsr1 cell excitability increases while BNSTpEsr1 cell excitability decreases to enable the switch from infanticide to paternal care. Despite the similarity in circuit organization, a direct comparison between males and females reveals sex differences in the intrinsic properties of MPOAEsr1 and BNSTpEsr1 cells. Thus, MPOAEsr1-BNSTpEsr1 emerges as a common circuit motif for controlling pup-directed behaviors in both sexes, whereas the activity balance between these two populations differs between sexes and likely contributes to the different tendencies in males and females to express pup-caring versus killing behaviors.

neuroscience↗

Yersinia pseudotuberculosis employs a multifaceted strategy to survive antimicrobials

Microbes have evolved a variety of strategies to survive exposure to naturally occurring and synthetic antimicrobials. These strategies have been investigated extensively in model bacterial organisms, whereas less is known about under explored pathogenic bacteria such as bacteria within the Yersinia genus. In this study we investigated the inhibitory effect and bactericidal activity of antibiotics from five different classes and of the disinfectant hydrogen peroxide against Yersinia pseudotuberculosis, the ancestral species from which Yersinia pestis and Yersinia enterocolitica have emerged. We found that Y. pseudotuberculosis is able to survive exposure to clinical antibiotics and disinfectants by employing a variety of strategies, with persisters and the Eagle effect playing a role in survival to quinolones, tolerance playing a role in survival to ceftriaxone and overexpression of catalases and peroxidases playing a role in survival to hydrogen peroxide. Our findings suggest that future research should focus on informing new, effective ways to treat infections caused by Yersinia species. IMPORTANCEAntimicrobial resistance is routinely investigated by measuring the minimum inhibitory concentration of antimicrobials needed to stop microbial growth. Here we show that the bacterial pathogen Yersinia pseudotuberculosis is not killed when antibiotics and disinfectants are used at these concentrations and that, in some cases, increasing antibiotic concentrations decreases their activity against this bacterium, therefore posing a potential risk to human and animal health.

microbiology↗