Microbial inoculants are increasingly used in conservation agriculture to enhance soil biological functioning and crop performance, yet their field effectiveness remains variable. This study evaluated how soil resource status, extracellular enzyme activities, and plant traits were associated with maize grain weight per plant under no-tillage straw mulching. A two-year field microplot experiment was conducted in an irrigated semi-arid maize system in northeastern China, comparing four microbial inoculants (M44, CF, SF, and YM) with an uninoculated control (CK). Maize growth and reproductive traits, soil physicochemical properties, and extracellular enzyme activities were measured, with soil variables assessed at depths of 0–10 and 10–20 cm. Microbial inoculation significantly affected aboveground biomass (p = 0.013), hundred-grain weight (p = 0.003), and grain weight per plant (p < 0.001), but not ear weight (p = 0.083). CF and M44 produced the strongest plant-level responses: their two-year mean aboveground biomass exceeded CK by 13.24% and 10.25%, respectively, while grain weight per plant increased by 10.78% and 10.66%. SF showed a weaker grain-weight response but increased β-glucosidase activity by 35.3% relative to CK in 2024, whereas YM increased available phosphorus by 70.8% in 2025 without a comparable grain-weight response. Soil treatment responses varied between years, with significant effects on soil organic carbon and available phosphorus in 2024 and on available phosphorus and soil water content in 2025. Treatment effects on β-glucosidase and cellobiohydrolase were detected only in 2024, while phosphatase was unaffected in either year. The random forest model explained 63.6% of the out-of-bag variation in grain weight per plant (p ≤ 0.001), with plant growth and reproductive traits showing the greatest predictive importance; soil organic carbon, soil water content, and cellobiohydrolase provided additional predictive information. Overall, inoculant responses were product-specific, and variation in grain weight per plant was jointly associated with plant development, soil resource status, and microbial functioning.
Introduction The increasing need for food, which results from fast population growth, requires agricultural methods that can produce more crops while protecting soil health. Biochar has become an effective soil enhancer that boosts soil fertility and nutrient retention while increasing crop productivity. Methods The st...
H. P. Mbelle, Shilpa Manhas, A. Meya et al.· Frontiers in Plant Science· 0 citations
Soil degradation caused by intensive agricultural management has become a major constraint on sustainable crop production, highlighting the need for multifunctional soil amendments capable of simultaneously improving soil structural quality and crop performance. In this greenhouse pot experiment, the effects of Trichod...
Xiao-Wei Wei, Yu-Qi Pan, Ming-Yue Sun et al.· Journal of Fungi· 0 citations
Biochar is widely used to improve soil quality and crop productivity; however, the relationships among biochar addition, soil multifunctionality (SMF), microbial communities, and crop yield remain unclear. A field experiment was conducted from May to September 2025 in a continuous eggplant (Solanum melongena L.) croppi...
Fang-Tian Liu, Qi-Jin Kang, Chun-Xiang Song et al.· Microorganisms· 0 citations
Plant-growth-promoting bacteria (PGPB) may complement mineral fertilization and contribute to sustainable maize production, although their effects depend on nutrient availability and bacterial strain. The effects of Peribacillus sp. B5 (A; GenBank OP861655), Sporosarcina sp. NSM3 (B; OP861656), and their co-inoculation...
W. F. Ríos-Ruíz, J. Rojas-García, A. N. Sandoval-Vergara et al.· Revista Facultad Nacional de...· 0 citations
Background. Biochar is widely promoted as a soil amendment that can improve fertility, retain nutrients, and enhance crop performance, yet its effects vary strongly with soil type, application rate, and time since application. Evidence for perennial fruit crops grown on fertile soils without mineral fertilizer remains...
S. Tehlivets, Y. Zaritska, A. Banach et al.· Studia Biologica· 0 citations
The increasing cost and environmental impacts of inorganic fertilizers necessitate sustainable alternatives for improving wheat productivity. This study evaluated the effects of nutrient recovered from yellow water (NRYW) on soil properties, growth, yield, and grain quality of four Triticum aestivum accessions under co...
E. A. Komolafe, Ajayi Ayorinde, Sadiq Ola Obabire· Journal of Environmental and...· 0 citations
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