Abstract
Applying beneficial microorganisms (BM) as bioinoculants presents a promising soil-amendment strategy while impacting the native microbiome, which jointly alters soil-plant performance. Leveraging the untapped potential of native microbiomes alongside bioinoculants may enable farmers to sustainably regulate soil-plant systems via natural bioresources. This review synthesizes literature on native microbiome responses to BMs and their interactive effects on soil and plant performance. We highlight that native microbiomes harbor both microbial “helpers” that can improve soil fertility and plant productivity, as well as “inhibitors” that hinder these benefits. To harness the full potential of resident microbiome, it is crucial to elucidate their intricate synergistic and antagonistic interplays with introduced BMs and clarify the conditions that facilitate durable BM-microbiome synergies. Hence, we indicate current challenges in predicting these complex microbial interactions and propose corresponding strategies for microbiome breeding via BM bioinoculant. Overall, fully realizing the potential of BMs requires clarifying their interactions with native soil microbiomes and judiciously engineering microbiome to harness helpful microbes already present within agroecosystems.
| Original language | English |
|---|---|
| Article number | 127776 |
| Journal | Microbiological Research |
| Volume | 285 |
| DOIs | |
| Publication status | Published - Aug 2024 |
Bibliographical note
Publisher Copyright:© 2024 The Authors
Funding
We acknowledge Prof. George A. Kowalchuk from Utrecht University for his suggestions and guidance on this work. This work was supported by Scientific Research Foundation of Zhejiang A & F University (Grant No. 2023LFR049) , Natural Science Foundation of Zhejiang Province (Grant No. LQ23C030005) , and Forestry Science and Technology Pro- motion Project from the National Forestry and Grassland Administration of China (Grant No. [2023] TG13) . We appreciate the two anonymous reviewers for their suggestions on improving this manuscript.
| Funders | Funder number |
|---|---|
| Scientific Research Foundation of Zhejiang A F University | 2023LFR049 |
| Natural Science Foundation of Zhejiang Province | LQ23C030005 |
| Forestry Science and Technology Pro- motion Project from the National Forestry and Grassland Administration of China | [2023] TG13 |
Keywords
- Beneficial microorganisms
- Biofertilizer
- Microbial breeding
- Native microbiome engineering
- Plant-soil-microbe interactions