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Soil bacterial diversity is positively associated with air temperature in the maritime Antarctic

机译:南极海洋中土壤细菌的多样性与气温呈正相关

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Terrestrial ecosystems in the maritime Antarctic experienced rapid warming during the latter half of the 20th century. While warming ceased at the turn of the millennium, significant increases in air temperature are expected later this century, with predicted positive effects on soil fungal diversity, plant growth and ecosystem productivity. Here, by sequencing 16S ribosomal RNA genes in 40 soils sampled from along a 1,650?km climatic gradient through the maritime Antarctic, we determine whether rising air temperatures might similarly influence the diversity of soil bacteria. Of 22 environmental factors, mean annual surface air temperature was the strongest and most consistent predictor of soil bacterial diversity. Significant, but weaker, associations between bacterial diversity and soil moisture content, C:N ratio, and Ca, Mg, PO43? and dissolved organic C concentrations were also detected. These findings indicate that further rises in air temperature in the maritime Antarctic may enhance terrestrial ecosystem productivity through positive effects on soil bacterial diversity.
机译:在20世纪下半叶,海洋南极洲的陆地生态系统经历了快速变暖。到了千年之交,气候变暖已停止,但预计本世纪末气温将显着上升,并有望对土壤真菌多样性,植物生长和生态系统生产力产生积极影响。在这里,通过对在通过南极海上1,650?km气候梯度采样的40种土壤中的16S核糖体RNA基因进行测序,我们可以确定气温升高是否同样会影响土壤细菌的多样性。在22个环境因素中,年平均地表气温是土壤细菌多样性的最强和最一致的预测因子。细菌多样性与土壤水分含量,C:N比以及Ca,Mg,PO43之间的关联显着但较弱。并且还检测到了溶解的有机碳浓度。这些发现表明,海洋南极气温的进一步升高可能通过对土壤细菌多样性的积极影响而提高陆地生态系统的生产力。

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