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Following legume establishment, microbial and chemical associations facilitate improved productivity in degraded grasslands

机译:豆类建立后,微生物和化学协会有助于提高退化草原的生产率

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Backgrounds and aims Mowing and P-fertilization enhance legume seedling establishment, assisting in successful restoration of degraded grasslands. Legume establishment may influence soil chemical compounds and soil microbial assemblage to facilitate legume productivity. We aim to better understand these complex plant-soil-microbial interactions to improve grassland productivity following overgrazing. Methods We conducted a 3-years Medicago falcata reseeding experiment was in semi-arid meadows, assessing responses of aboveground plant biomass, soil chemical compounds, and soil microbial community composition. Reseeded plots were mowed and/or P-fertilized. Results Application of both management practices increased grassland biomass compared with all other combinations. Soil chemical diversity predicted fungal alpha diversity, and fungal alpha diversity positively correlated with aboveground biomass. Our results indicate reseeded alfalfa directly altered bulk soil chemical compounds with subsequent alterations in grassland microbial communities. Soils contained chemical compounds with antifungal properties that indirectly improved grassland productivity via antagonism to pathogenic fungi. Furthermore, we found three specific compounds (5-methyltridecane, pentatriacontane, and N-tridecane) reduced microbial diversity. Conclusions Here we demonstrate soil chemical compounds play an important role in shaping beneficial microbial communities to improve grassland biomass. These results may help direct beneficial soil microbial community composition through improved grassland management practices.
机译:背景和目标割草和P施肥增强了豆科苗的建立,协助成功恢复退化草原。豆科植物建立可能影响土壤化学化合物和土壤微生物组合,以促进豆科生产率。我们的目标是更好地了解这些复杂的植物 - 土壤微生物相互作用,以提高过度造影后的草地生产力。方法采用3年来的Medicaco Falcata重组实验是半干旱草甸,评估地上植物生物质,土壤化学化合物和土壤微生物群落组成的反应。被重新造成的地块被修剪和/或施肥。结果对两种管理层的应用增加了草地生物量与所有其他组合相比。土壤化学多样性预测真菌α多样性,真菌α多样性与地上生物质呈正相关。我们的结果表明,随后在草地微生物群落中随后改变散装土壤化学化合物,预计苜蓿直接改变了苜蓿。土壤含有化学化合物,其抗真菌性能通过对致病性真菌间接提高草地生产率。此外,我们发现三种特异性化合物(5-甲基三烷,五乙烷和正赤烷)降低了微生物多样性。结论在这里,我们展示了土壤化学化合物在塑造有益微生物群落中发挥着重要作用,以改善草原生物量。这些结果通过改善草地管理实践可以有助于直接有益的土壤微生物群落组成。

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