Bastida F, Selevsek N, Torres I F, Hernández T, García C
Department of Soil and Water Conservation, Centro de Edafología y Biología Aplicada del Segura, CEBAS-CSIC, Campus Universitario de Espinardo, Aptdo. de Correos 164, Espinardo 30100 Murcia, Spain.
Department of Agroforestry Technology and Science and Genetics, School of Advanced Agricultural Engineering, Castilla La Mancha University, Campus Universitario s/n, 02071 Albacete, Spain.
Sci Rep. 2015 Oct 27;5:15550. doi: 10.1038/srep15550.
A hot topic in recent decades, the application of organic amendments to arid-degraded soils has been shown to benefit microbially-mediated processes. However, despite the importance of soils for global sustainability, a gap has not been addressed yet in soil science: is there any connection between ecosystem-community processes, cellular functionality, and microbial lifestyles (i.e. oligotrophy-copiotrophy) in restored soils? Together with classical ecosystem indicators (fatty-acids, extracellular-enzyme activities, basal respiration), state-of-the-art metaproteomics was applied to fill this gap in a model-restoration experiment initiated 10-years ago by the addition of sewage-sludge and compost. Organic amendment strongly impacted ecosystem processes. Furthermore, the type of material used induced differences in the cellular functionalities through variations in the percentages of proteins involved in translation, transcription, energy production and C-fixation. We conclude that the long-term impact of organic restoration goes beyond ecosystem processes and affects cellular functionalities and phyla-lifestyles coupled with differences in microbial-community structures.
近几十年来,向干旱退化土壤施用有机改良剂一直是一个热门话题,研究表明这有利于微生物介导的过程。然而,尽管土壤对全球可持续发展至关重要,但土壤科学中仍有一个问题尚未得到解决:在恢复的土壤中,生态系统群落过程、细胞功能和微生物生活方式(即贫营养-富营养)之间是否存在任何联系?结合经典的生态系统指标(脂肪酸、细胞外酶活性、基础呼吸),应用最先进的元蛋白质组学方法,在10年前通过添加污水污泥和堆肥启动的模型恢复实验中填补这一空白。有机改良剂对生态系统过程有强烈影响。此外,所用材料的类型通过参与翻译、转录、能量产生和碳固定的蛋白质百分比的变化,导致细胞功能产生差异。我们得出结论,有机恢复的长期影响不仅限于生态系统过程,还会影响细胞功能和门类生活方式,以及微生物群落结构的差异。