Plant and native microorganisms amplify the positive effects of microbial inoculant

作者
Chong Li,Zhaohui Jia,Shilin Ma,Christoph Müller,Xin Liu,Jinchi Zhang
出处
期刊:Research Square 被引量:2
标识
DOI:10.21203/rs.3.rs-2040716/v1
摘要

Abstract Aims: Microbial inoculants can be used to restore abandoned mines because of their positive effects on plant growth and soil nutrients. Currently, soils in greenhouse pot studies are routinely sterilized to eradicate microorganisms, allowing for better inoculant colonization. Large-scale field sterilization of abandoned mining site soils for restoration is difficult, though. In addition, microbial inoculants have an impact on plants. Plants also have an impact on local microbes. The interactions between microbial inoculants, native microorganisms, and plants, however, have not been studied. Methods: We created a pot experiment utilizing the soil and microbial inoculant from a previous experiment because it promoted plant growth in that experiment. To evaluate the effects of the plant, native microorganisms, and microbial inoculants, we assessed several indicators related to soil elemental cycling and integrated them into the soil multifunctionality index. Results: The addition of microbial inoculant and sterilizing treatment had a significant impact on alfalfa's growth. When exposed to microbial inoculant treatments, the plant and sterilization treatments displayed radically different functional characteristics, where most of the unsterilized plant treatment indices were higher than those of the others. The addition of microbial inoculant significantly increased soil multifunctionality in plant treatments, particularly in the unsterilization-plant treatment, where the increase in soil multifunctionality was 260%. The effect size result showed that the positive effect of microbial inoculant on soil multifunctionality and unsterilization-plant treatment had the most significant promotion effect. Conclusion: Plant and native microorganisms amplify the positive effects of microbial inoculant.

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