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Plant-mediated effects of elevated ultraviolet-B radiation on peat microbial communities of a subarctic mire

机译:植物介导的紫外线-B辐射升高对弧形泥潭泥炭微生物群落的影响

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Elevated ultraviolet-B (UVB) radiation has been reported to have few effects on plants but to alter the soil microbial community composition. However, the effects on soil microorganisms have to be mediated via plants, because direct radiation effects are only plausible on the uppermost millimeters of soil. Here, we assessed secondary effects of UVB on soil microbes. The responses in the dominant plant Eriophorum russeolum, peat pore water and microbial communities in the peat were recorded at a subarctic mire in the middle of the third growing season under field exposure simulating 20% depletion in the ozone layer. The UVB treatment significantly reduced the sucrose and the total soluble sugar (sucrose+glucose+fructose) concentration of the plant leaves while increasing the sucrose concentration in the belowground storage organ rhizome. The starch concentration of the leaves was also slightly reduced by elevated UVB. In the plant roots, carbohydrate concentrations remained unaffected but the total phenolics concentration increased under elevated UVB. We suggest that the simultaneously observed decrease in bacterial growth rate and the altered bacterial community composition are due to UVB-induced changes in the plant photosynthate allocation and potential changes in root exudation. There were no effects of elevated UVB on microbial biomass, peat pore water or nutrient concentrations in the peat. The observed responses are in line with the previously reported lower ecosystem dark respiration under elevated UVB, and they signify that the changed plant tissue quality and lower bacterial activity are likely to reduce decomposition.
机译:据报道,紫外线-B(UVB)辐射升高对植物几乎没有影响,但会改变土壤微生物群落组成。但是,对土壤微生物的影响必须通过植物来介导,因为直接辐射作用仅在最上层毫米的土壤上才有意义。在这里,我们评估了UVB对土壤微生物的次级影响。在第三个生长季节中期,在田间暴露下,模拟了臭氧层中20%的消耗,记录了主要植物Eriophorum russeolum,泥炭孔隙水和泥炭中微生物群落的响应。 UVB处理显着降低了植物叶片中的蔗糖和总可溶性糖(蔗糖+葡萄糖+果糖)浓度,同时增加了地下贮藏器官根茎中的蔗糖浓度。 UVB升高也使叶片的淀粉浓度略有降低。在植物根部,碳水化合物的浓度保持不变,但总酚浓度在UVB升高时增加。我们建议,同时观察到的细菌生长速率下降和细菌群落组成改变是由于UVB诱导的植物光合产物分配变化和根系分泌物的潜在变化。 UVB升高对微生物生物量,泥炭孔隙水或泥炭中养分浓度没有影响。观察到的响应与先前报道的在UVB升高下较低的生态系统暗呼吸相一致,并且它们表明改变的植物组织质量和较低的细菌活性可能减少分解。

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