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Short-term parasite-infection alters already the biomass activity and functional diversity of soil microbial communities

机译:短期寄生虫感染已经改变了土壤微生物群落的生物量活性和功能多样性

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摘要

Native parasitic plants may be used to infect and control invasive plants. We established microcosms with invasive Mikania micrantha and native Coix lacryma-jobi growing in mixture on native soils, with M. micrantha being infected by parasitic Cuscuta campestris at four intensity levels for seven weeks to estimate the top-down effects of plant parasitism on the biomass and functional diversity of soil microbial communities. Parasitism significantly decreased root biomass and altered soil microbial communities. Soil microbial biomass decreased, but soil respiration increased at the two higher infection levels, indicating a strong stimulation of soil microbial metabolic activity (+180%). Moreover, a Biolog assay showed that the infection resulted in a significant change in the functional diversity indices of soil microbial communities. Pearson correlation analysis indicated that microbial biomass declined significantly with decreasing root biomass, particularly of the invasive M. micrantha. Also, the functional diversity indices of soil microbial communities were positively correlated with soil microbial biomass. Therefore, the negative effects on the biomass, activity and functional diversity of soil microbial community by the seven week long plant parasitism was very likely caused by decreased root biomass and root exudation of the invasive M. micrantha.
机译:天然寄生植物可用于感染和控制入侵植物。我们建立了带有侵染性薇甘菊和天然Coix lacryma-jobi的混合物的微观世界,它们在天然土壤上混合生长,并在四个强度级别上将寄生的M. micrantha感染了Cuscuta campestris寄生了七个星期,以估计植物寄生对生物量的自上而下的影响和土壤微生物群落功能多样性。寄生会显着降低根系生物量并改变土壤微生物群落。在两个较高的感染水平下,土壤微生物量减少,但土壤呼吸增加,表明强烈刺激了土壤微生物代谢活性(+ 180%)。此外,Biolog分析表明,感染导致土壤微生物群落功能多样性指数发生显着变化。 Pearson相关分析表明,微生物生物量随根生物量的减少而显着下降,尤其是入侵性M. micrantha。此外,土壤微生物群落功能多样性指数与土壤微生物量呈正相关。因此,长达七周的植物寄生对土壤微生物群落的生物量,活性和功能多样性的负面影响很可能是由根际生物量的降低和侵袭性M. micrantha的根系分泌物引起的。

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