uemurq

@uemurq.bsky.social

I study salmonid fishes in Hokkaido. (website) https://sites.google.com/view/uemura

Our new paper suggests that temperature alone cannot explain coexistence between ecologically similar salmonids, Dolly Varden and white-spotted charr, in Japanese streams. Instead, priority effects—advantages of early occupants—may shape local salmonid distributions. doi.org/10.1007/s004...

Mechanisms of local coexistence in juvenile congeneric salmonids in small tributaries with different thermal regimes - Oecologia

Understanding how ecologically similar species coexist remains a central question in ecology. Shifts in species composition along environmental gradients offer opportunities to explore underlying mechanisms, such as condition-specific competition—where competitive dominance reverses across environments. However, broad-scale gradients often involve multiple co-varying abiotic factors, making causal inference difficult, and experimental evidence for competition reversal remains limited. Although temperature is widely regarded as a key driver of salmonid distributions, its mechanistic role remains unclear. We investigated the roles of temperature and species interactions for the coexistence of juvenile Dolly Varden (Salvelinus curilus, colder-adapted) and white-spotted charr (S. leucomaenis, warmer-adapted) in multiple replicated tributaries that minimized spatial-autocorrelation and co-varying physiochemical factors. Structural equation modeling revealed that water temperature significantly influenced Dolly Varden density but not that of white-spotted charr. In addition, Dolly Varden density negatively affected white-spotted charr density, while the reverse effect was not detected, contradicting prior findings of white-spotted charr competitive dominance. A transplant experiment showed that white-spotted charr persisted and grew well in cold tributaries where Dolly Varden numerically dominated. These results suggest that white-spotted charr avoid cold habitats not due to thermal limitations, but due to biotic interactions with Dolly Varden, potentially mediated by food availability. Thus, although temperature shapes species distributions, temperature-specific competition reversal is unlikely to be the dominant mechanism. Because Dolly Varden typically establish themselves in these habitats earlier and attain numerical dominance, we propose that prior residence effects—where early occupants gain competitive advantages—may better explain local coexistence patterns in this system.

doi.org

オショロコマとアメマスのローカルな共存メカニズムに関する論文がOecologiaに掲載されました。 両種の夏季分布は、過去に競争実験で示されていた「アメマスが優位」「高温条件では、より優位」という結果だけで説明できませんでした。 今回は野外データに基づくパス解析を行った上で、先住効果が両種のローカルな共存を促すという新たな仮説(メカニズム)を提唱し野外実験によって検証しました。 #オショロコマ #アメマス #岩魚 doi.org/10.1007/s004...

Mechanisms of local coexistence in juvenile congeneric salmonids in small tributaries with different thermal regimes - Oecologia

Understanding how ecologically similar species coexist remains a central question in ecology. Shifts in species composition along environmental gradients offer opportunities to explore underlying mechanisms, such as condition-specific competition—where competitive dominance reverses across environments. However, broad-scale gradients often involve multiple co-varying abiotic factors, making causal inference difficult, and experimental evidence for competition reversal remains limited. Although temperature is widely regarded as a key driver of salmonid distributions, its mechanistic role remains unclear. We investigated the roles of temperature and species interactions for the coexistence of juvenile Dolly Varden (Salvelinus curilus, colder-adapted) and white-spotted charr (S. leucomaenis, warmer-adapted) in multiple replicated tributaries that minimized spatial-autocorrelation and co-varying physiochemical factors. Structural equation modeling revealed that water temperature significantly influenced Dolly Varden density but not that of white-spotted charr. In addition, Dolly Varden density negatively affected white-spotted charr density, while the reverse effect was not detected, contradicting prior findings of white-spotted charr competitive dominance. A transplant experiment showed that white-spotted charr persisted and grew well in cold tributaries where Dolly Varden numerically dominated. These results suggest that white-spotted charr avoid cold habitats not due to thermal limitations, but due to biotic interactions with Dolly Varden, potentially mediated by food availability. Thus, although temperature shapes species distributions, temperature-specific competition reversal is unlikely to be the dominant mechanism. Because Dolly Varden typically establish themselves in these habitats earlier and attain numerical dominance, we propose that prior residence effects—where early occupants gain competitive advantages—may better explain local coexistence patterns in this system.

doi.org

北海道の広域で、過去にオショロコマが確認された地点を再訪し、局所的な消失を検証した論文がFreshwater Biologyに掲載されました。 また、温暖化に伴う局所絶滅予測モデル(過去)の妥当性と、未考慮要素をモデルに加えて予測精度が向上するか調べました。 #オショロコマ onlinelibrary.wiley.com/doi/10.1111/...

Validating a Past Local Extinction Model Using Site‐Level Disappearances in a Cold‐Adapted Salmonid Under Global Warming

Global warming poses an increasing threat to biodiversity by elevating the risk of local extinctions. Species distribution models are widely used to forecast extinction risk under future climate s...

onlinelibrary.wiley.com