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Biology subjects

Diaz Pauli, B.

Publications and source records attributed to Diaz Pauli, B..

2 recordsLinked to original sources

Size-dependent harvest mortality indirectly affects boldness, feeding rate, and behaviour-linked gene expression in a decade-long selection experiment on guppies

Fisheries-induced mortality is size-selective, commonly targeting large individuals, which leads to evolution towards smaller size and early maturation. However, little is known on whether behaviour is affected. Here we aimed at testing whether size-dependent harvest indirectly affects behavioural traits that might have ecological consequences. Specifically, we assessed feeding rate - which affects prey abundance -, boldness - which determines a fish vulnerability to predators -, and sociability - which determines how a fish interacts with conspecifics and ultimately affects foraging and predation avoidance. In addition, we tested whether the differences in behaviour were associated to differences in selected key genes expression, to understand its molecular regulation. With a decade-long selection experiment on guppies Poecilia reticulata, we created populations with life histories adapted to positively size-dependent harvest, i.e., like that induced by fishing (fast life history). For comparison, we also created populations adapted to the opposite size-selection, and populations experiencing no size-selection. Fish exposed to positively size-dependent harvest were bolder, more likely to feed, were more social/aggressive, and expressed less brain avt (arginine vasotocin) relative to those exposed to negatively size-dependent harvest. In addition, higher expression of th and th2 (tyrosine hydroxylase 1 and 2), and neuroD2 (neuronal differentiation factor 2) were linked with bolder behaviour and higher feeding in normal (no-threat) conditions, while higher avt, th, and neuroD2 were associated with higher sociability/aggression after a threat. Fish exposed to positively size-dependent harvest presented behaviours linked to faster life histories as theoretically expected. Therefore, harvest selection does not only affect fish size and life history, but indirectly leads to boldness and higher feeding rates, which potentially results in higher vulnerability to predators and higher pressure on prey abundance, respectively. Our results suggest that size-dependent mortality have further consequences to the ecosystem, beyond the target species.

evolutionary biology↗

Within-species variation in the gut microbiome of fish is driven by the interaction of light intensity and genetic background

Unravelling evolution-by-environment interactions on the gut microbiome is particularly relevant considering the unprecedented level of human-driven disruption of the ecological and evolutionary trajectories of species. Here, we aimed to evaluate whether an evolutionary response to size-selective mortality influences the gut microbiome of medaka (Oryzias latipes), how environmental conditions interact with the genetic background of medaka on their microbiota, and the association between microbiome diversity and medaka growth-related traits. To do so, we studied two lineages of medaka with known divergence in foraging efficiency and life history raised under antagonistic size-selective regimes for 10 generations (i.e. the largest or the smallest breeders were removed to mimic fishing-like or natural mortality). In pond mesocosms, the two lineages were subjected to contrasting population density and light intensity (used as proxies of resource availability). We observed significant differences in the gut microbiome composition and richness between the two lines, and this effect was mediated by light intensity. The bacterial richness of fishing-like medaka (small-breeder line) was reduced by 34% under low-light conditions compared to high-light conditions, while it remained unchanged in natural mortality-selected medaka (large-breeder line). However, the observed changes in bacterial richness did not correlate with changes in adult growth rate or body condition. Given the growing evidence about the gut microbiomes importance to host health, more in-depth studies are required to fully understand the role of the microbiome in size-selected organisms and the possible ecosystem-level consequences.

ecology↗