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Biology subjects

Seto, T.

Publications and source records attributed to Seto, T..

2 recordsLinked to original sources

Distributional shifts change the biodiversity-ecosystem stability relationship under climate change

Distributional shifts under climate change are increasingly recognized as a biotic change worldwide. However, the effects of distributional shifts on ecosystem variability through changes in biodiversity remain to be clari[fi]ed. In this study, to elucidate the impact of population-level distributional shifts under climate change on community structure and ecosystem function through ecological hierarchy, we investigated the temporal changes in alpha and beta diversity, the contribution of individual species to the observed changes in biodiversity, and the changes in the relationship between biodiversity and ecosystem variability, using over 25 years of data on about 700 species. We found that ecosystem variability was largely stabilized by beta diversity, especially in the present period (2012 to 2021), because beta diversity increased due to the invasion of species that were distributed mainly in tropic and subtropic areas. Despite the effect of beta diversity, ecosystem variability increased in the present period. This increase in ecosystem variability was caused by the spatially synchronized temporal variation in sea-bottom temperature, which resulted in synchronized temporal variation in species abundance among local communities, as well as the increased impact of alpha variability on ecosystem variability. These results indicate that the impact of alpha diversity on ecosystem variability is more changeable than the impact of beta diversity on ecosystem variability under climate change, suggesting the importance of focusing on changes in alpha diversity resulting from local colonization from other habitats and local extinction in existing habitats.

ecology↗

Studies for searching factors relating rumination time around the heat season in Holstein milking cows

To identify factors affecting rumination time (RT), factorial analyses in a dairy farm were performed. In univariate analyses, differences in distribution were observed between low (< 45 kg/d) and high ([&ge;] 45 kg/d) milk yield (MY) before the heat season, early and peak lactation periods and mid and late at the start of the heat season, and 1-2 and [&ge;] 3 parity at the start of the heat season. Multiple regression analysis confirmed that RT was affected by low MY, early to peak and 1-2 parity cows, low MY, mid to late and 1-2 parity cows, and low MY, early to peak and [&ge;] 3 parity cows (coefficients = -37.039, -25.353, -44.805 respectively, P < 0.05). When the cows were classified by MY before the heat season, the RT and MY of the high-MY group remained higher than the low-MY group until before the severe heat (THI [&ge;] 84 continued). However, when cows were classified by RT before the heat season, there was no difference in MY between the low-RT (< 485 min/d) and the high-RT group (> 485 min/d). In conclusions, MY is a factor affecting RT up to moderate heat but RT is not a sufficient condition affecting MY.

zoology↗