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首页> 外文期刊>Soil Science Society of America Journal >Microbial Response to Potential Soil-Stabilizing Polymer Amendments for Coastal Wetland Restoration
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Microbial Response to Potential Soil-Stabilizing Polymer Amendments for Coastal Wetland Restoration

机译:微生物对潜在的土壤稳定化聚合物修正案的沿海湿地恢复

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Microbes release extracellular polymeric substances during metabolism of organic matter, which accumulate to bind particles and increase soil aggregation. On a large scale, hydraulically dredged sediment can be amended with polymer and deposited on subsiding marshes, where the polymer stabilizes the sediment until marsh plants become established. However, adding a simple C source to the soil can potentially affect microbial activity. This study determined the effect of addition of two commercially available natural polymers (xanthan gum and guar gum) on microbial biomass and activity in three types of hydraulically dredged sediments (clay, silty clay, and sandy loam) saturated under a range of salinity regimes (1.49 and 7.46, 7.46 and 14.9, and 22.4 and 37.3 mS cm(-1), respectively) for four time periods (1, 8, 16, and 26 wk). The CO2 evolved in response to added polymer suggests that microbial communities rapidly degraded the polymers. Addition of polymers provided a readily available source of C that induced a priming effect on the microbial biomass leading to increased activity. Microbial activity accelerated to a much greater rate than background (control) respiration, resulting in up to an 8.7-fold increase in loss of native soil C beyond degradation of the added polymer C. Therefore, polymer additions to stabilized sediments led to a significant increase in native soil C loss with a concomitant decrease in soil quality.
机译:微生物在有机物的代谢过程中释放出细胞外聚合物质,这些物质积聚以结合颗粒并增加土壤聚集。大规模地,可以用聚合物对水力疏can的沉积物进行修正,并将其沉积在沉降的沼泽中,在该处聚合物稳定沉积物,直到建立沼泽植物。但是,向土壤添加简单的碳源可能会影响微生物活性。这项研究确定了添加两种市售天然聚合物(黄原胶和瓜尔豆胶)对三种盐分下饱和的水力疏regime沉积物(粘土,粉质粘土和沙壤土)中微生物生物量和活性的影响(四个时间段(1、8、16和26 wk)分别为1.49和7.46、7.46和14.9、22.4和37.3 mS cm(-1)。响应添加的聚合物而放出的二氧化碳表明微生物群落迅速降解了聚合物。聚合物的添加提供了容易获得的C来源,该来源诱导了对微生物生物量的引发作用,从而导致活性增加。微生物活性的加速比背景(对照)呼吸快得多,导致原生土壤C的损失增加了多达8.7倍,超过了添加的聚合物C的降解。因此,向稳定的沉积物中添加聚合物会导致显着增加天然土壤中的碳损失,土壤质量随之下降。

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