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Soil Microbial Community Dynamics as Influenced by Composted Dairy Manure, Soil Properties, and Landscape Position

机译:堆肥奶牛粪,土壤性质和景观位置对土壤微生物群落动态的影响

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Manure applications can benefit crop productivity by adding required nutrients and organic matter to soil. There is a paucity of information on how soil microbial community dynamics will be altered by the application of manure to different landscape positions. Thus, an in situ field study was conducted during the summer and winter months to evaluate microbiological properties of three soil types that have evolved because of different landscape positions in an agricultural field. The three Coastal Plain soils investigated were Bama (sandy loam), Lynchburg (loam), and Goldsboro (loam) representing the landscape position of a summit, drainageway, and sideslope, respectively. Composted dairy manure was incorporated into in situ soil cores at a rate of 350 kg N ha(-1) and compared with unamended controls. Soil microbial biomass N and dehydrogenase enzyme activity were determined to evaluate changes in the microbial biomass size and activity, whereas phospholipid fatty acid analysis was used as an indicator of the microbial community structure. Addition of composted dairy manure increased microbial activity and N immobilization, representing a shift in microbial response resulting from changes in substrate availability. This was most evident during summer months, with the composted dairy manure increasing dehydrogenase enzyme activity 21% and microbial activity 20% compared with without manure, suggesting that seasonal timing of application will influence microbial activity. Microbial properties were also impacted by landscape position. The drainageway landscape position soil, a loam, had the highest microbial biomass and microbial activity. Changes in microbial community structure using phospholipid fatty acid profiles were evaluated with canonical discriminate analysis. This analysis indicated that a shift in microbial community structure occurred between season, manure application, and landscape position. Findings from this study suggest that changes in soil variability from landscape positions and season can impact the growth and dynamics of the microbial community when manure is applied to agricultural fields.
机译:通过向土壤中添加所需的养分和有机物质,施肥可以提高作物的生产力。缺乏关于如何将肥料施用于不同景观位置而改变土壤微生物群落动态的信息。因此,在夏季和冬季,进行了现场研究,以评估由于农田中不同的景观位置而演变的三种土壤类型的微生物学特性。研究的三种沿海平原土壤分别是巴马(桑迪壤土),林奇堡(壤土)和戈德斯伯勒(壤土),分别代表山顶,排水道和侧坡的景观位置。堆肥的奶牛粪便以350 kg N ha(-1)的比例掺入原位土壤核中,并与未改良的对照进行比较。测定土壤微生物生物量氮和脱氢酶的活性以评估微生物生物量的大小和活性的变化,而磷脂脂肪酸分析被用作微生物群落结构的指标。添加堆肥的奶牛粪便会增加微生物活性和固氮能力,这表示由于底物可利用性变化而导致的微生物反应发生了变化。这在夏季月份最为明显,与无粪肥相比,堆肥乳牛粪中脱氢酶活性增加了21%,微生物活性增加了20%,这表明季节性施用时间会影响微生物活性。微生物特性也受到景观位置的影响。排水道景观土壤是一块壤土,其微生物量和微生物活性最高。使用典型的区分分析评估使用磷脂脂肪酸谱的微生物群落结构的变化。该分析表明,微生物群落结构在季节,施肥和景观位置之间发生了变化。这项研究的发现表明,当将肥料施用到农田时,土壤景观因季节和季节的变化而变化会影响微生物群落的生长和动态。

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