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首页> 外文期刊>Applied Soil Ecology >Shifts in soil bacterial communities associated with the potato rhizosphere in response to aromatic sulfonate amendments.
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Shifts in soil bacterial communities associated with the potato rhizosphere in response to aromatic sulfonate amendments.

机译:响应于芳香族磺酸盐的改良,与马铃薯根际相关的土壤细菌群落的变化。

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Desulfonation is an important process in the sulfur cycle, through which organic sulfur compounds are mineralized, releasing S. Desulfonating bacteria are known to respond to inorganic S soil amendments. However, the extent to which these communities shift as a response to the addition of organic sulfur in the soil remains elusive. Here, we investigated how amendments of soil with inorganic or organic sulfur compounds influence the bacterial communities associated with potato, in a microcosm experiment. The soil was amended with two doses of linear alkylbenzene sulfonate (LAS), here used as a model aromatic sulfonate compound, or with sulfate. Degradation of LAS was observed already at the young plant stage, as in all treatments 10- to 50-fold reductions of the initial (background) LAS concentrations were noted. Quantitative PCR analyses showed no significant effects of treatment on the bacterial abundances, which tended to increase from the young plant to the flowering stages of plant development. The bacterial community structures, determined via PCR-DGGE, were strongly affected by the presence of plants. This rhizosphere effect became more apparent at the flowering stages. Both the bacterial and beta -proteobacterial community structures were affected by the presence of LAS, but dose-related effects were not observed. LAS also caused significant changes in the community structures, as compared to those in inorganic sulfate amended soil. Sulfate did not influence the bacterial community structures and only affected the beta -proteobacterial ones at the flowering stage. Surprisingly, the presence of LAS did not exert any significant effect on the abundance of the Variovorax asfA gene, although clone libraries revealed a dominance of Variovorax types in the rhizosphere, especially in the high-level LAS treatment. Our results suggest that rhizosphere communities are key players in LAS degradation in soils, and that desulfonator Variovorax spp. plays a minor role in the mineralization of aromatic sulfonates in soil cropped with potato.
机译:脱硫是硫循环中的一个重要过程,通过该过程矿化有机硫化合物,释放出S。已知脱硫细菌对无机S土壤改良剂有反应。但是,这些群落作为对土壤中有机硫添加的响应而变化的程度仍然难以捉摸。在这里,我们通过微观实验研究了无机或有机硫化合物对土壤的改良如何影响与马铃薯相关的细菌群落。用两剂直链烷基苯磺酸盐(LAS)(此处用作模型芳族磺酸盐化合物)或硫酸盐对土壤进行改良。在幼苗期已经观察到LAS的降解,因为在所有处理中,初始(本底)LAS浓度都降低了10到50倍。定量PCR分析显示,处理对细菌丰度没有显着影响,细菌丰度从年轻植物到植物发育的开花阶段往往会增加。通过PCR-DGGE确定的细菌群落结构受植物的存在强烈影响。在开花期,这种根际效应变得更加明显。 LAS的存在会影响细菌和β-细菌群落结构,但未观察到剂量相关的作用。与无机硫酸盐改良土壤相比,LAS还引起了群落结构的重大变化。硫酸盐不影响细菌群落结构,而仅在开花期影响β-变形细菌。出人意料的是,尽管克隆文库揭示了根际中Variovorax类型的优势,特别是在高级LAS处理中,但是LAS的存在对Variovorax asfA基因的丰度没有任何显着影响。我们的结果表明,根际群落是土壤中LAS降解的关键因素,而脱硫剂Variovorax spp。在马铃薯种植的土壤中,芳族磺酸盐的矿化作用较小。

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