Santana M M, Gonzalez J M
Instituto de Ciências Agrárias e Ambientais Mediterrânicas (ICAAM), Universidade de Évora, Núcleo da Mitra, Ap. 94, 7006-554, Évora, Portugal
Instituto de Recursos Naturales y Agrobiología, IRNAS-CSIC, Av. Reina Mercedes, 10, E-41012, Sevilla, Spain.
FEMS Microbiol Lett. 2015 Nov;362(22). doi: 10.1093/femsle/fnv182. Epub 2015 Sep 30.
Biomineralization at high temperatures in upper soil layers has been largely ignored, although desertification and global warming have led to increasing areas of soils exposed to high temperatures. Recent publications evidenced thermophilic bacteria ubiquity in soils as viable cells, and their role in nutrient cycling and seedling development. High temperature events, frequently observed at medium and low latitudes, locate temporal niches for thermophiles to grow in soils. There, at temperatures inhibitory for common mesophiles, thermophilic bacteria could perform biogeochemical reactions important to the soil food web. Nutrient cycling analyses in soils at medium and low latitudes would benefit from considering the potential role of thermophiles.
尽管沙漠化和全球变暖导致暴露于高温的土壤面积不断增加,但上层土壤层在高温下的生物矿化作用在很大程度上被忽视了。最近的出版物证明嗜热细菌在土壤中作为活细胞普遍存在,以及它们在养分循环和幼苗发育中的作用。在中低纬度地区经常观察到的高温事件,为嗜热菌在土壤中生长提供了暂时的生态位。在那里,在对常见中温菌具有抑制作用的温度下,嗜热细菌可以进行对土壤食物网很重要的生物地球化学反应。考虑嗜热菌的潜在作用将有助于对中低纬度地区土壤中的养分循环进行分析。