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Biology subjects

Lockhart, K.

Publications and source records attributed to Lockhart, K..

2 recordsLinked to original sources

Aggregation of misfolded proteins in the sperm head impairs preimplantation embryo development

Paternal contributions to embryogenesis extend beyond DNA, yet the molecular cargo carried by sperm and its impact on development remain poorly defined. Aggresomes (AGG), cytoplasmic inclusions formed by misfolded proteins, are present in mammalian gametes, but their functional consequences are unclear. Here, we show that excessive AGG content in bovine sperm head compromises preimplantation embryo development. Using image-based flow cytometry, sperm from 32 sires were classified into low-, moderate-, and high-AGG groups. AGG levels were unrelated to sire age and did not affect in vitro capacitation or acrosome remodeling. However, embryos derived from high-AGG sires exhibited reduced blastocyst formation, delayed cleavage timing, and a higher incidence of developmental arrest at the 4-6 cell stage. Embryos from high-AGG sires also accumulated more AGG during development, showed elevated reactive oxygen species (ROS) levels, and displayed altered mitophagy dynamics. Supplementation with an ER stress inhibitor temporarily improved cleavage but did not enhance overall blastocyst formation, indicating a limited and stage-specific effect. In vivo, embryos from high-AGG sires showed lower transferable quality compared with those from low-AGG sires. These findings establish sperm head AGG content as a novel paternal determinant of embryo quality. By linking sperm-borne misfolded protein aggregates to disrupted developmental pathways in the resulting embryo, our study reveals a previously unrecognized mechanism of paternal influence on fertility and suggests new opportunities for molecular screening for male fertility. Significance StatementSperm contribute more to the embryo than DNA alone, yet the consequences of sperm-borne molecular cargo for early development remain largely unknown. We show that aggregates of misfolded proteins in the sperm head, a marker of disrupted protein quality control, impair preimplantation embryo development in cattle. Sires with elevated sperm aggregate content produce embryos that cleave later, arrest more frequently, and reach the blastocyst stage at lower rates, both in vitro and in vivo. These embryos carry greater aggregate loads, show heightened oxidative stress, and display dysregulated mitochondrial clearance. Our findings establish paternal proteostasis as a determinant of embryo quality and identify a class of sperm defects invisible to conventional semen analysis, opening new avenues for molecular fertility screening.

cell biology↗

Motivational trade-offs in a cockroach: impact of conditions, injury, and development

The ability to flexibly trade off access between competing or antagonistic stimuli ("motivational trade-offs") is a key criterion for assessing whether animals can feel pain. However, in some commonly farmed, exterminated, and studied insect orders such as Blattodea (cockroaches and termites), the ability to make motivational trade-offs is unconfirmed, which makes it difficult to assess their welfare needs. Here we gave cockroaches (Blaptica dubia) a choice between access to shelter or to nutrition across a series of linked experiments to assess whether they are capable of motivational trade-offs and if they are flexibly adjusted due to external conditions and/or injury and develop across ontogeny. We found cockroaches avoided a food reward when it was exposed to light (a behavioural trade-off), but they did not adjust their preference flexibly in response to lighting intensity or increased hunger level (no motivational trade-off). We did find that injury reduces willingness to accept light exposure when accessing nutrition, which is consistent with the idea of the sensation of pain reducing risk-taking behaviour. Finally, we showed that juvenile cockroaches match adults in not making a motivational trade-off. All together our results provide much-needed evidence for criteria of whether insects feel pain and suggest upper limits to cognitive complexity and flexibility in Blattodea. These findings can be integrated with other neurological and behavioural measures to help us judge how we treat insects and other invertebrates in our care.

animal behavior and cognition↗