Applying biostimulants boosts forage productivity without affecting soil biotic and abiotic parameters on a Central Coast California rangeland
Carey, C. J.; Strohm, H.; Smith, F.; Biaggi, M.
Show abstract
There is increasing interest in using biostimulant products, such as microbial inoculants and humic substances, to help manage rangelands regeneratively. Understanding how plant and soil communities on rangelands respond to these products is therefore important. In this study, we examined the combined effects of a commercial inoculant and humic product that are currently on the market, and asked whether they influenced rangeland forage productivity and quality, soil microbial biomass and community composition, and abiotic soil parameters in Central Coastal California. We found that forage productivity and some metrics of forage quality responded positively to the foliar application of a commercial microbial inoculant and humic product, but that these benefits were not mirrored by changes belowground in the microbial community or abiotic parameters. Depending on the goals of using the products, this could be seen as a winning scenario and suggests microbial inoculants and humic products could warrant attention as a potential tool for regenerative stewardship of rangelands. While our study derives from one ranch and therefore requires confirmation of its ubiquity prior to broadscale adoption, our results provide new insights into the usefulness of this approach for managing rangeland productivity in Californias Central Coast.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Pasture age impacts soil fungal composition while bacteria respond to soil chemistry 97%
- Tensions in tillage: Reduction in tillage intensity associates with lower wheat growth and nutritional grain quality despite enhanced soil biological indicators 96%
- Unveiling the dominant role of soil pH in shaping nitrogen cycling microbial gene abundances: Insights from 65-years of chemical fertilizer selection in acidic grassland meadow 96%
Similar papers in this journal
- Distinct microbial communities alter litter decomposition rates in a fertilized coastal plain wetland 98%
- Soil microbial communities are not altered by garlic mustard in recently invaded central Illinois forests 95%
- Microbial functional guilds and genes are key to explaining soil nutrient cycling alongside soil and plant variables 93%
Similar papers in this journal
- Sounds of the underground reflect soil biodiversity dynamics across a grassy woodland restoration chronosequence 95%
- Fit by design: Developing substrate-specific seed mixtures for functional dike grasslands 93%
- Impacts of agrochemical intensification on the assembly and reassembly of a mainland-island model metacommunity 93%
Similar papers in this journal
- Tillage homogenizes soil bacterial communities in microaggregate fractions by facilitating dispersal 96%
- Soil N2O emission potential falls along a denitrification phenotype gradient linked to differences in microbiome, rainfall and carbon availability 96%
- Microbial extracellular polysaccharide production and aggregate stability controlled by Switchgrass (Panicum virgatum) root biomass and soil water potential 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.