Archive/Site-Specific Efficacy of Microbial Inoculants on Sunflower Development and Soil Metabolic Activity in Open-Field Trials
Site-Specific Efficacy of Microbial Inoculants on Sunflower Development and Soil Metabolic Activity in Open-Field Trials
Andrea Tímea Tóth, Lívia László, Katalin Posta
20 de julio de 2026
en

Abstract

Modern agriculture faces critical challenges, including climate change, soil degradation, and reliance on synthetic inputs, necessitating sustainable alternatives. A promising approach is applying microbial solutions. This study investigated the effects of a commercially available powder-formulated seed coating product containing Rhizoglomus irregularis and Azospirillum spp. on high-linoleic sunflower (Helianthus annuus L.) under field conditions at three Hungarian sites with contrasting soil properties. Plant growth parameters, yield, and the rhizosphere’s microbial carbon-source utilisation potential were assessed to evaluate treatment effects. Seed-applied inoculation increased plant height, stem diameter, and biomass, although responses varied with site conditions and sampling time. The agronomic response was highly site-dependent: the strongest effect was observed at a low-pH, phosphorus-limited site, where seed inoculation achieved a significant yield increase of 18–21%, while effects at sites with higher pH and sufficient phosphorus resulted only in minor, statistically non-significant numerical trends. Distinct shifts in culture-dependent carbon-source utilisation potential were detected by Biolog EcoPlate™ analysis, showing temporal and site-specific variability. These results indicate that seed-applied formulations offer a logistically feasible, targeted delivery method for plant-beneficial microbes, with their agronomic efficacy fundamentally governed by site-specific soil chemical profiles and baseline nutrient availability. Overall, the agronomic benefits of inoculation appear to be context-dependent and more pronounced under nutrient-limited conditions, highlighting the critical importance of site-specific application strategies and the need for further long-term studies.

IPC Classification

C07A01

Keywords

site-specificefficacymicrobialinoculantssunflowerdevelopmentsoilmetabolicactivityopen-fieldtrialsagronomymodernagriculturefacescriticalchallengesincludingclimatechangedegradationreliancesyntheticinputs
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