Article ID Journal Published Year Pages File Type
4382509 Applied Soil Ecology 2012 6 Pages PDF
Abstract

Natural abundance of radiocarbon (14C) has been applied to estimate the turnover time of soil carbon (C) across different climate regions. However, despite the important functional role played by soil animals in decomposition processes, little is known about variation in their 14C concentrations across different climate regions. In this study, we measured 14C concentrations of earthworms collected in three forests in Japan. In addition, we also reviewed 14C data on earthworms that were previously reported. We used these data to test whether the diet ages (defined as time elapsed since C in the diet of earthworms was fixed from atmospheric CO2 by photosynthesis) differed according to feeding habits and across study sites in various climate regions ranging from cool temperate forest to tropical savanna. Multiple regression analysis showed that the diet ages of earthworms were significantly affected by both feeding habits and study sites. The diet ages of endogeic (soil-feeding) earthworms (8.3 ± 0.4 years, mean ± SE) were significantly older than those of epigeic (litter-feeding) earthworms (2.6 ± 0.5 years), with anecic (litter-/soil-feeding) earthworms (5.7 ± 0.9 years) having intermediate diet ages. When mean diet age was compared for each feeding habit, only that of endogeic earthworms differed significantly across the sites. However, it did not necessarily become younger in warmer climate regions. These results either suggest that the degree of decomposition of soil organic matter used by earthworms differs among the study sites, or that the difference in the turnover time of soil organic C used by earthworms across the sites is relatively small and variable due to factors other than temperature, such as soil texture and vegetation.

► We compared the diet ages of earthworms across different climates ranging from cool temperate forest to tropical savanna. ► The diet ages were estimated based on radiocarbon data from the present and previous studies. ► Mean diet ages of epigeic, anecic and endogeic earthworms were about 3, 6, and 8 years, respectively. ► The diet ages of earthworms did not necessarily become younger in warmer climates. ► Climate may not be a primary factor determining the turnover time of soil organic carbon used by earthworms.

Related Topics
Life Sciences Agricultural and Biological Sciences Ecology, Evolution, Behavior and Systematics
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