Guyonnet Julien P, Vautrin Florian, Meiffren Guillaume, Labois Clément, Cantarel Amélie A M, Michalet Serge, Comte Gilles, Haichar Feth El Zahar
FEMS Microbiol Ecol. 2017 Apr 1;93(4). doi: 10.1093/femsec/fix022.
The aim of this study was to determine (i) whether plant nutritional strategy affects the composition of primary metabolites exuded into the rhizosphere and (ii) the impact of exuded metabolites on denitrification activity in soil. We answered this question by analysing primary metabolite content extracted from the root-adhering soil (RAS) and the roots of three grasses representing different nutrient management strategies: conservative (Festuca paniculata), intermediate (Bromus erectus) and exploitative (Dactylis glomerata). We also investigated the impact of primary metabolites on soil microbial denitrification enzyme activity without carbon addition, comparing for each plant RAS and bulk soils. Our data show that plant nutritional strategy impacts on primary metabolite composition of root extracts or RAS. Further we show, for the first time, that RAS-extracted primary metabolites are probably better indicators to explain plant nutrient strategy than root-extracted ones. In addition, our results show that some primary metabolites present in the RAS were well correlated with soil microbial denitrification activity with positive relationships found between denitrification and the presence of some organic acids and negative ones with the presence of xylose. We demonstrated that the analysis of primary metabolites extracted from the RAS is probably more pertinent to evaluate the impact of plant on soil microbial community functioning.
(i)植物营养策略是否会影响根系分泌物中渗出到根际的主要代谢物的组成,以及(ii)渗出的代谢物对土壤中反硝化活性的影响。我们通过分析从三种代表不同养分管理策略的禾本科植物的根际土壤(RAS)和根系中提取的主要代谢物含量来回答这个问题,这三种禾本科植物分别是保守型(圆锥羊茅)、中间型(直立雀麦)和掠夺型(鸭茅)。我们还研究了在不添加碳源的情况下主要代谢物对土壤微生物反硝化酶活性的影响,比较了每种植物的RAS和大块土壤。我们的数据表明,植物营养策略会影响根系提取物或RAS的主要代谢物组成。此外,我们首次表明,从RAS中提取的主要代谢物可能比从根系中提取的更能解释植物的养分策略。此外,我们的结果表明,RAS中存在的一些主要代谢物与土壤微生物反硝化活性密切相关,反硝化与某些有机酸的存在呈正相关,与木糖的存在呈负相关。我们证明,分析从RAS中提取的主要代谢物可能更有助于评估植物对土壤微生物群落功能的影响。