Soil Microbiome Engineering for Enhanced Agricultural Productivity

Authors

  • Laura Hansen Assistant Professor, Institute of Intelligent Systems, Mediterranean Institute of Technology, Rome, Italy. Author
  • Nina Garcia Assistant Professor, Department of Machine Learning, Swiss Institute of Machine Intelligence, Zurich, Switzerland. Author
  • Helena Moreau Postdoctoral Researcher, School of Data Science, Western Europe Data Science University, Madrid, Spain. Author

DOI:

https://doi.org/10.62649/

Keywords:

Soil microbiome; Bioinoculants; Microbiome engineering; 16S rRNA sequencing; Nitrogen use efficiency; Biochar; Synthetic community; Plant growth promotion; Sustainable agriculture; Mediterranean soils.

Abstract

Soil microbiome engineering--the deliberate manipulation of soil microbial community composition and function to augment plant productivity, nutrient cycling, and stress resilience--represents a frontier strategy for sustainable intensification of food production without proportional increases in synthetic agrochemical inputs. This study evaluates four soil microbiome engineering interventions--bioinoculant consortia (BIC), biochar-assisted microbial introduction (BAMI), synthetic community transplantation (SCT), and humic acid-stimulated indigenous microbiome activation (HASIMA)--across wheat, maize, and tomato cropping systems at five sites in Italy, Switzerland, and Spain over three growing seasons (2022-2024). Soil microbiome responses were characterised by 16S rRNA amplicon sequencing (V3-V4, Illumina MiSeq), quantitative PCR for functional genes (nifH, amoA, phoD), and enzymatic activity assays. BIC increased wheat yield by 18.4% and NUE by 22.7% relative to uninoculated control, while SCT produced the largest diversity increase (Shannon H' +1.42) but inconsistent yield responses. BAMI exhibited the most durable microbial community shifts, with inoculant strains detectable at 12 months in 78% of plots. These findings advance understanding of microbiome-yield linkages and inform rational design of microbial soil amendments for precision agriculture.

Downloads

Published

2025-12-30

How to Cite

Soil Microbiome Engineering for Enhanced Agricultural Productivity. (2025). Indo-American Journal of Agricultural and Veterinary Sciences, 13(4), 10-17. https://doi.org/10.62649/

Most read articles by the same author(s)

Similar Articles

1-10 of 53

You may also start an advanced similarity search for this article.