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Surget, A.

Publications and source records attributed to Surget, A..

3 recordsLinked to original sources

Synaptic tagging and capture underlie neuronal co-allocation and temporal association memory in behaving mice

Episodic memory has the ability to link distinct memories formed at temporal proximity (minutes-hours) into a coherent episodic representation. The neuronal mechanisms supporting such time associations remain however to be understood. The synaptic tagging and capture hypothesis (STC) provides a theoretical framework in which plasticity-related proteins produced for consolidating a memory trace at a synapse can potentially benefit to the consolidation of another trace at another synapse of the same neuron, thereby promoting neuronal co-allocations and temporal associations of memory traces. STC has however never been demonstrated in behaving animals, leaving its existence and functional relevance for memory formation unknown. We therefore investigated STC-like mechanisms in freely-behaving mice by recording hippocampal CA1 neurons during encoding and retrieval of distinct events. We found that reactivation of engram neurons at retrieval and the stability of place cells were strongly impaired by protein synthesis inhibition during encoding, but strikingly, were rescued in neurons that were coactive at another encoding close in time, having potentially benefitted from proteins produced at temporal proximity, as predicted by STC hypothesis. All our results together provide the first evidence of STC-like mechanisms in behaving animals and reveal an instrumental role of STC for time association of memory traces.

neuroscience↗

High carbohydrate to protein ratio promotes changes in intestinal microbiota and host metabolism in rainbow trout (Oncorhynchus mykiss) fed plant-based diet.

To ensure the sustainability of aquaculture, it is necessary to change the "menu" of carnivorous fish such as rainbow trout from a fish-based diet to one with plant-based ingredients. However, there is a major problem with the growth performance decrease of fish fed with a 100% plant-based diet due to the reduction in feed intake and feed efficiency. For the first time, we incorporated high levels of digestible carbohydrates (high-starch diet) in a 100% plant-based diet during a 12-week feeding trial in order to improve protein utilization for growth (protein sparing effect) and reduce nitrogen waste. We measured the changes in the intestinal microbiota, Short-Chain Fatty Acid (SCFA) levels and metabolic responses in liver. Dietary carbohydrates had a strong effect on alpha and beta diversity and abundance of 12 genera, including Ralstonia and Bacillus in digesta associated microbiota whereas mucosa associated microbiota was less affected. The change in microbial diversity might be linked to the change observed in SCFA production. High levels of Mycoplasma were observed in the intestinal mucosa. Overall, hepatic gene expression was significantly altered by the CHO/protein ratio. Up-regulation of genes involved in glucose metabolism (gcka, gckb, g6pcb2a), down-regulation of genes involved in lipid metabolism (hadh, acox3, srebp2a, and cyp51a) were associated with higher enzymatic activities (such as glucokinase or pyruvate kinase) and higher glycogen levels in the liver, suggesting adequate adaptation to diet. Interestingly, strong correlations were observed between abundances of certain bacterial OTUs and gene expression in the liver. The inclusion of digestible carbohydrates in combination with a 100% plant-based diet, could be a promising way to improve and reduce the use of plant proteins in rainbow trout. In addition, the relationship between intestinal microbiota and host metabolism needs further investigation to better understand fish nutrition.

molecular biology↗

Rainbow trout neomales broodstocks are able to eat and use a high carbohydrate diet during a complete reproductive cycle

The main challenge of the aquaculture relies on the shift from fishmeal to more sustainable ingredients. Interest on carbohydrates has growing rapidly as they are considered as promising resources, providing energy and preserving proteins for growth. However, rainbow trout is considered as a poor user of carbohydrates displaying postprandial hyperglycaemia and impaired growth performances when fed with diets containing more than 20% of carbohydrates. Nonetheless, recent evidence points that broodstocks could be better user of high carbohydrate diet compared to juveniles. However, no study investigates how sex-reversed females - neomales - eat, grow and reproduce under a high carbohydrate diet. Our objective was thus to assess growth and reproductive performances of neomales fed with a high carbohydrate diet during an entire reproductive cycle. Our results demonstrate that neomales display specific metabolic and physiological changes when fed with a high carbohydrate diet compared to both females and males broodstocks as well as compared to juveniles. Altogether, our data demonstrate the critical relevance to formulate specific diets in accordance with specificities of each type of broodstocks (i.e. females, males and neomales).

molecular biology↗