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首页> 外文期刊>The Science of the Total Environment >Response of fungal communities in different soils to biochar and chemical fertilizers under simulated rainfall conditions
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Response of fungal communities in different soils to biochar and chemical fertilizers under simulated rainfall conditions

机译:模拟降雨条件下不同土壤真菌群落对生物炭和化肥的响应

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摘要

Biochar is a good soil additive, which cannot only effectively store carbon, but also improve soil fertility and crop yield. However, the specific response of fungal communities to biochar and chemical fertilizers are still relatively lacking. In addition, most studies do not take into account rainfall factors when conducting culture experiments. In the case of simulated rainfall, we investigated the response of fungal communities in different soils to biochar and fertilizers in China and analyzed the correlation between chemical properties and different fungal species. The tested soils were yellow-brown soil, fluvo-aquic soil, lou soil and black soil, and the simulated daily rainfall was 25 mm. The results indicated that the application of biochar and chemical fertilizers had a greater impact on the alpha diversity of acidic soils (yellow-brown soil, fluvo-aquic soil), but less on alkaline soils (lou soil, black soil). The relative abundance of Ascomycetes was most affected by biochar and fertilizer in any soil. From the point of view of the fungal community, yellow-brown soilwas more suitable for single application of biochar, because it not only improved the ability of the soil to degrade persistent organic matter but also inhibited the spread of soil pathogens. In black soil, the relative abundance of Fusarium was significantly reduced by the combined application of biochar and chemical fertilizers (FC), and the decline was much higher than several other bacteria. However, FC caused the greatest changes in the structure of all soil fungal communities. Moreover, therewas a significant correlation between the content of available nutrients and composition of fungal community in fluvo-aquic soil. In summary, it can be explained that the effects of biochar and chemical fertilizers on soil fungi may vary depending on the soil type, so it is very urgent to conduct long-term research on different typical soils. (c) 2019 Elsevier B.V. All rights reserved.
机译:生物炭是一种很好的土壤添加剂,不仅可以有效地存储碳,还可以提高土壤肥力和农作物产量。但是,真菌群落对生物炭和化肥的具体反应仍然相对缺乏。此外,大多数研究在进行培养实验时都没有考虑降雨因素。在模拟降雨的情况下,我们调查了中国不同土壤中真菌群落对生物炭和化肥的响应,并分析了化学性质与不同真菌物种之间的相关性。被测土壤为黄棕色土壤,潮土,楼土和黑土,模拟日降水量为25 mm。结果表明,生物炭和化肥的施用对酸性土壤(黄棕壤,潮土)的α多样性影响较大,而对碱性土壤(娄土,黑色土壤)的α多样性影响较小。在任何土壤中,生物炭和肥料对子囊菌的相对丰度影响最大。从真菌群落的角度来看,黄棕色土壤更适合单次施用生物炭,因为它不仅提高了土壤降解持久性有机物的能力,而且抑制了土壤病原体的传播。在黑土中,生物炭和化肥(FC)的组合施用显着降低了镰刀菌的相对丰度,且下降幅度远高于其他几种细菌。但是,FC引起了所有土壤真菌群落结构的最大变化。此外,潮潮土壤中有效养分的含量与真菌群落组成之间存在显着的相关性。综上所述,生物炭和化肥对土壤真菌的影响可能会因土壤类型而异,因此对不同典型土壤进行长期研究非常迫切。 (c)2019 Elsevier B.V.保留所有权利。

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