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Bacterial rhizoplane colonization patterns of Buchloe dactyloides growing in metalliferous mine tailings reflect plant status and biogeochemical conditions

机译:在含金属矿山尾矿中生长的Buchloe dactyloides的细菌根际平面定殖模式反映了植物状况和生物地球化学条件

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摘要

Plant establishment during phytostabilization of legacy mine tailings in semiarid regions is challenging due to low pH, low organic carbon, low nutrients, and high toxic metal(loid) concentrations. Plant-associated bacterial communities are particularly important under these harsh conditions because of their beneficial services to plants. We hypothesize that bacterial colonization profiles on rhizoplane surfaces reflect deterministic processes that are governed by plant health and the root environment. The aim of this study was to identify associations between bacterial colonization patterns on buffalo grass (Buchloe dactyloides) rhizoplanes and both plant status (leaf chlorophyll and plant cover) and substrate biogeochemistry (pH, electrical conductivity, total organic carbon, total nitrogen, and rhizosphere microbial community). Buffalo grass plants from mesocosm- and field-scale phytostabilization trials conducted with tailings from the Iron King Mine and Humboldt Smelter Superfund Site in Dewey-Humboldt, Arizona were analyzed. These tailings are extremely acidic and have arsenic and lead concentrations of 2 4 g kg−1 substrate. Bacterial communities on rhizoplanes and in rhizosphere-associated substrate were characterized using fluorescence in situ hybridization and 16S rRNA gene amplicon sequencing, respectively. The results indicated that the metabolic status of rhizoplane bacterial colonizers is significantly related to plant health. Principal component analysis revealed that root-surface Alphaproteobacteria relative abundance was associated most strongly with substrate pH and Gammaproteobacteria relative abundance associated strongly with substrate pH and plant cover. These factors also affected the phylogenetic profiles of the associated rhizosphere communities. In summary, rhizoplane bacterial colonization patterns are plant specific and influenced by plant status and rhizosphere biogeochemical conditions.
机译:由于低pH值,低有机碳,低养分和高毒性金属(胶体)浓度,半干旱地区传统矿山尾矿在植物稳定过程中的植物建立具有挑战性。在这些恶劣条件下,与植物相关的细菌群落特别重要,因为它们对植物有益。我们假设,根际平面表面上的细菌定殖概况反映了受植物健康和根系环境支配的确定性过程。这项研究的目的是确定水牛草(Buchloe dactyloides)根际平面上的细菌定植模式与植物状态(叶绿素和植物覆盖)和基质生物地球化学(pH,电导率,总有机碳,总氮和根际)之间的关联微生物群落)。分析了在亚利桑那州杜威-洪堡的Iron King矿和Humboldt冶炼厂超级基金站点的尾矿进行的中观和大规模植物稳定性试验中的水牛草植物。这些尾矿具有极强的酸性,砷和铅的浓度为2 4 g kg -1 底物。分别使用荧光原位杂交和16S rRNA基因扩增子测序来表征根际平面上和根际相关基质上的细菌群落。结果表明,根际细菌定殖器的代谢状态与植物健康显着相关。主成分分析表明,根表面丙酸杆菌的相对丰度与底物pH密切相关,而丙酸杆菌的相对丰度与底物pH和植物覆盖率密切相关。这些因素也影响了相关根际群落的系统发育概况。总之,根际平面细菌定植模式是植物特有的,并受植物状态和根际生物地球化学条件的影响。

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