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首页> 外文期刊>Plant and Soil >Changes in Soil Microbial Community Associated with Invasion of the Exotic Weed, Mikania micrantha H.B.K
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Changes in Soil Microbial Community Associated with Invasion of the Exotic Weed, Mikania micrantha H.B.K

机译:与外来杂草入侵的薇甘菊(Mikania micrantha H.B.K)相关的土壤微生物群落变化

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摘要

Invasions of exotic plant species are among the most pervasive and important threats to natural ecosystems. However, the effects of plant invasions on soil processes and soil biota have not been adequately investigated. Changes were studied in soil microbial communities where Mikania micrantha was invading a native forest community in Neilingding Island, Shenzhen, China. The soil microbial community structure (assessed by phospholipid fatty acid [PLFA] profiles) and function (assessed by enzyme activities), as well as soil chemical properties were measured. The results showed that the invasion of M. micrantha into the evergreen broadleaved forests in South China changed most of the characteristics in studied soils. Microbial community structure and function differed significantly among the native, two ecotones, and exotic-derived soils. For PLFA profiles, we observed a significant increase in aerobic bacteria but a decrease in anaerobic bacteria in the M. micrantha monoculture as compared to the native and ecotones. The ratio of cy19:0 to18:1ω7 gradually declined but mono/sat PLFAs increased as M. micrantha became more dominant. Both ratios were significantly related to pH according to regression analysis, therefore, pH was a sensitive indicator reflecting the invaded soil subsystem succession. The microbial community composition clearly separated the native soil from the invaded soils by principal component analysis (PCA) and discriminant analysis (DA). For enzyme activities, 7 of 9 enzymes (β-glucosidase, invertase, protease, urease, acid phosphatase, alkaline phosphatase, and phenol oxidase) showed the similar trend that the activities were highest in the exotic, intermediate in the two ecotones, and lowest in the native community. In most cases, enzyme activities were influenced by soil chemical properties, especially by pH value and soil organic matter. Differences in the structural variables were well correlated to differences in the functional variables as demonstrated by canonical correlation analysis (CCA). It was concluded that M. micrantha invasion had profound effects on the soil subsystem, which must be taken into account when we try to control its invasions.
机译:外来植物物种的入侵是对自然生态系统最普遍和最重要的威胁之一。然而,尚未充分研究植物入侵对土壤过程和土壤生物群的影响。研究了Mikania micrantha入侵中国深圳内凌丁岛的原生森林群落的土壤微生物群落的变化。测量了土壤微生物群落结构(通过磷脂脂肪酸[PLFA]评估)和功能(通过酶活性评估)以及土壤化学性质。结果表明,华南地区常绿阔叶林中的M. micrantha入侵改变了所研究土壤的大部分特征。微生物群落的结构和功能在原生土壤,两个过渡带和外来土壤之间存在显着差异。对于PLFA谱,我们观察到与原始和生态交错带相比,米氏梭菌单培养中需氧细菌显着增加,但厌氧细菌减少。 cy19:0至18:1ω7的比例逐渐降低,但随着单链念珠菌变得更占优势,单/饱和PLFA有所增加。根据回归分析,这两个比率均与pH显着相关,因此,pH是反映入侵的土壤子系统演替的敏感指标。微生物群落组成通过主成分分析(PCA)和判别分析(DA)清楚地将原生土壤与入侵土壤分开。就酶的活性而言,9种酶中的7种(β-葡萄糖苷酶,转化酶,蛋白酶,脲酶,酸性磷酸酶,碱性磷酸酶和酚氧化酶)显示出相似的趋势:活性在外源,两个过渡带中间居中,最低在本地社区中。在大多数情况下,酶活性受土壤化学性质的影响,特别是受pH值和土壤有机质的影响。规范相关分析(CCA)证明,结构变量的差异与功能变量的差异具有很好的相关性。得出的结论是,M。micrantha入侵对土壤子系统具有深远的影响,在我们试图控制其入侵时必须考虑到这一点。

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