First evidence of a causal link between genetic variation and thermal adaptation in a schistosome host snail
Maes, T.; Verheyen, J.; Senghor, B.; Mudavanhu, A.; Schols, R.; Hellemans, B.; Geslain, E.; Volckaert, F. A. M.; Gante, H. F.; Huyse, T.
Show abstract
Freshwater snails are pivotal in transmitting schistosomiasis, a tropical parasitic disease affecting over 150 million people. The adaptive potential of these snails is a critical factor in determining how climate change and other environmental factors influence disease transmission dynamics, yet it has remained unexplored. Bulinus truncatus is the schistosome intermediate host snail with the widest geographic distribution and therefore plays a pivotal role in determining the maximum range of urogenital schistosomiasis. In this study, we assessed the local adaptation capacity of B. truncatus to temperature through an integrative approach encompassing phenotypic, ecophysiological, and genomic data. Ten snail populations from diverse thermal environments were collected in three countries, with eight populations reared in a common garden. The F2 generation (total N= 2592) was exposed to eight chronic temperature treatments and various life-history traits were recorded for over 14 weeks. Subsequently, ecophysiological analyses were conducted on the ten last surviving snails per population. Genotyping the parental generation collected in the field using a genotyping-by-sequencing (GBS) approach, revealed 12,875 single nucleotide polymorphisms (SNPs), of which 4.91 % were potentially under selection. We observed a significant association between these outlier SNPs, temperature, and precipitation. Thermal adaptations in life-history traits were evident, with lower survival rates at high temperatures of warm- origin snails compensated for by higher reproduction rates. Cold-origin snails, on the other hand, exhibited higher growth rates adapted to a shorter growing season. Ecophysiological adaptations included elevated sugar and haemoglobin contents in cold-adapted snails. In contrast, warm-adapted snails displayed increased protein levels but also more oxidative damage. Furthermore, heightened phenoloxidase levels indicated a more robust immune response in snails from parasite-rich regions. The substantial local adaptation capacity of B. truncatus holds profound implications for its response to climate change, future schistosomiasis risk, and the effectiveness of schistosomiasis control measures. HighlightsO_LILocal adaptation influences species responses to climate change C_LIO_LIThe snail Bulinus truncatus showed a high thermal local adaptation (LA) potential C_LIO_LILA is apparent through variations in life history and ecophysiological traits C_LIO_LIWe identified a significant genetic basis underlying this LA C_LIO_LILA of the hosts could sustain schistosomiasis transmission under global warming C_LI
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Exploring links between climatic predictability and the evolution of within- and transgenerational plasticity 95%
- Autumn larval cold tolerance does not predict the northern range limit of a widespread butterfly species 95%
- Variation in developmental rates is not linked to environmental unpredictability in annual killifishes 95%
Similar papers in this journal
- Adaptive and maladaptive genetic diversity in small populations; insights from the Brook Charr (Salvelinus fontinalis) case study 94%
- Newly discovered tilapia cichlid fish biodiversity threatened by hybridization with non-native species 94%
- Complex genetic patterns and distribution limits mediated by native congeners of the worldwide invasive red-eared slider turtle 94%
Similar papers in this journal
- Urban Cepaea nemoralis snails are less likely to have nematodes trapped within their shells 95%
- Negative impact of mild arid conditions in natural rodent populations revealed using markers of physiological condition in natura 95%
- Pre- and post-oviposition behavioural strategies to protect eggs against extreme winter cold in an insect with maternal care 94%
Similar papers in this journal
- How past exposure to predation affects personality and behavioural plasticity? 93%
- Variation in temperature but not diet determines the stability of latitudinal clines in tolerance traits and their plasticity 93%
- Multidimensional plasticity in the Glanville fritillary butterfly: larval performance curves are temperature, host and family specific. 92%
Similar papers in this journal
- Recurrent extreme climatic events are driving gorgonian populations to local extinction: low adaptive potential to marine heatwaves. 94%
- Mountain stoneflies may tolerate warming streams: evidence from organismal physiology and gene expression 94%
- Urban living can rescue Darwin's finches from the lethal effects of invasive vampire flies 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.