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Titlebook: Microbial Probiotics for Agricultural Systems; Advances in Agronomi Doris Zúñiga-Dávila,Fernando González-Andrés,Ernes Book 2019 Springer N

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The Potential of Nitrogen-Fixing Bacteria in the Sustainability of Agro-Forestry Ecosystemsnodule bacteria can play in the sustainability and recovery of these ecosystems by promoting biological nitrogen fixation, especially in low fertility soils, through the establishment of pastures with legumes using pre-selected and characterized rhizobia as biofertilizers. The . antagonistic activit
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Endophytic Bacteria from , L. Leaves with Genetic Potential for Flavonoid Biosynthesise strains used in this work. Phylogenetic analyses suggests that horizontal gene transfer (HGT) events occurred among various strains. This work may contribute to further research efforts aiming at the production of flavonoids by endophytic bacteria, based on the ability of these microorganisms to a
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Isolation and Characterization of Antifungal Secondary Metabolites Produced by Rhizobacteria from Cotheir polarity and by thin layer chromatography (TLC) analysis. Lipophilic compounds were extracted using a chloroform:methanol (2:1, v/v) system. In addition, polar antifungal compounds were presented in butanol, acetone and methanol crude extracts. The extracts inhibited the mycelial growth of ..
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Rhizobia Promote Rice (, L.) Growth: First Evidence in CubaRpr2 solubilized tricalcium phosphate. Isolates Rf7, Rpr1, Rpr2 and Rpr11 increased significantly the shoot plant growth at 50 days after inoculation. The results obtained provide the first evidence on the plant-growth promotion effect of rhizobia on rice in Cuba.
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Early Effects of Land Use Intensity on Arbuscular Mycorrhizal Fungi in Rice-Soybean Rotationsntent and AMF diversity were determined using T-RFLP. AMF diversity and colonization in soybean roots with rice as previous crop were lower than plants sown after soybean crop (RS.P). In this initial stage of the long-term experiment, soil use intensity did not affect AMF colonization and diversity
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Evaluation of Bioproducts and Mycorrhizal Inoculation in Asian Soybean Rust Control, Nutrient Leaf C Sphere Max., against ASR, causing ultrastructural changes in . hyphae and spores. Mycorrhizal colonization, plant growth and height increased in plants treated with F4A10 + Sphere Max. Plants treated with F4A1 compound produced 4.64 ton ha., followed by F4A1 + Sphere (4.51 ton ha.), F4A10 + Sphere
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