Research group Polar Ecology, Limnology and Geomorphology, Department of Biology, University of Antwerp, Universiteitsplein 1, B-2610 Antwerp (Wilrijk), Belgium.
Protist. 2012 May;163(3):400-14. doi: 10.1016/j.protis.2011.07.005. Epub 2011 Aug 11.
Sphagnum-dwelling testate amoebae are widely used in paleoclimate reconstructions as a proxy for climate-induced changes in bogs. However, the sensitivity of proxies to seasonal climate components is an important issue when interpreting proxy records. Here, we studied the effects of summer warming, winter snow addition solely and winter snow addition together with spring warming on testate amoeba assemblages after eight years of experimental field climate manipulations. All manipulations were accomplished using open top chambers in a dry blanket bog located in the sub-Arctic (Abisko, Sweden). We estimated sensitivity of abundance, diversity and assemblage structure of living and empty shell assemblages of testate amoebae in the living and decaying layers of Sphagnum. Our results show that, in a sub-arctic climate, testate amoebae are more sensitive to climate changes in the growing season than in winter. Summer warming reduced species richness and shifted assemblage composition towards predominance of xerophilous species for the living and empty shell assemblages in both layers. The higher soil temperatures during the growing season also decreased abundance of empty shells in both layers hinting at a possible increase in their decomposition rates. Thus, although possible effects of climate changes on preservation of empty shells should always be taken into account, species diversity and structure of testate amoeba assemblages in dry subarctic bogs are sensitive proxies for climatic changes during the growing season.
藓居有壳变形虫广泛应用于古气候重建,作为沼泽气候诱导变化的替代指标。然而,在解释代理记录时,代理对季节性气候成分的敏感性是一个重要问题。在这里,我们研究了夏季变暖、冬季仅增加积雪和冬季增加积雪与春季变暖对经过八年野外气候处理后的有壳变形虫组合的影响。所有的处理都是在位于亚北极地区(瑞典阿比斯库)的干燥毯状沼泽中的开顶式气室中完成的。我们估计了活的和空壳的有壳变形虫在活层和分解层中丰度、多样性和组合结构对生活和空壳组合的敏感性。我们的结果表明,在亚北极气候条件下,有壳变形虫对生长季节的气候变化比冬季更敏感。夏季变暖降低了物种丰富度,并使活的和空壳组合的组合组成向耐旱物种倾斜。生长季节土壤温度升高也降低了两层中空壳的丰度,暗示它们的分解速度可能加快。因此,尽管气候变化对空壳保存的可能影响应始终考虑在内,但在干燥的亚北极沼泽中,有壳变形虫组合的物种多样性和结构是对生长季节气候变化的敏感替代指标。