Microbes: Applications and Effects

The effects of herbicides on soil life - Part 1: Microbial biomass and respiration
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Facilitation of phosphorus uptake in maize plants by mycorrhizosphere bacteria. Beauregard, M. Long-term phosphorus fertilization impacts soil fungal and bacterial diversity but not AM fungal community in alfalfa. Behera, B. Phosphate solubilization and acid phosphatase activity of Serratia sp. Bei, Q. Heterotrophic and phototrophic 15N2 fixation and distribution of fixed 15N in a flooded rice-soil system.

Bekheta, M. Physiological response of Vicia faba to prohexadione-calcium under saline conditions. Planta Daninha 27, — Berruti, A. Berthrong, S.

Environmental Benefits

Nitrogen fertilization has a stronger effect on soil nitrogen-fixing bacterial communities than elevated atmospheric CO 2. Betencourt, E. Intercropping promotes the ability of durum wheat and chickpea to increase rhizosphere phosphorus availability in a low P soil. Bhat, N. Soil biological activity contributing to phosphorus availability in vertisols under long-term organic and conventional agricultural management.

Plant Sci. Bhattacharjee, R. Use of nitrogen-fixing bacteria as biofertiliser for non-legumes: prospects and challenges. Interrelations between Azospirillum and Rhizobium nitrogen-fixers and arbuscular mycorrhizal fungi in the rhizosphere of alfalfa in sterile, AMF-free or normal soil conditions.

Biswas, S. Effect of bioinoculants and organic manure phosphocompost on growth, yield and nutrient uptake of Trigonella foenum-graecum L. Boisvert, K. Bouwman, L. Exploring global changes in nitrogen and phosphorus cycles in agriculture induced by livestock production over the period. Brown, M. Seed and root bacterization. Carlsson, G. Nitrogen fixation in perennial forage legumes in the field. Carroll, B. Nitrate inhibition of nodulation and nitrogen fixation in white clover.

Cely, M. Inoculant of arbuscular mycorrhizal fungi Rhizophagus clarus increase yield of soybean and cotton under field conditions. Chen, W. Organic acid secretion and phosphate solubilizing efficiency of Pseudomonas sp. PSB effects of phosphorus forms and carbon sources.

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Chennappa, G. PGP potential, abiotic stress tolerance and antifungal activity of Azotobacter strains isolated from paddy soils. PubMed Abstract Google Scholar. Choudhury, A. Prospects and potentials for systems of biological nitrogen fixation in sustainable rice production. Soils 39, — Phosphorus and humic acid application alleviate salinity stress of pepper seedling. Cocking, E. Emerich and H.

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To put the mixture of these two kinds is the best way. Bacteria are the first line of defense the human body has against infection. Raised bed. Viruses have the potential to act as the future of nanotechnology, and bacteria are currently being tested as the core component of self-repairing concrete that could revolutionize infrastructure and the way we build buildings. All rights reserved. Currently, most knowledge is gathered on model legumes, such as Medicago truncatula , but the information about soybeans is limited. Regular spraying.

Coelho, M. Molecular detection and quantification of nifH gene sequences in the rhizosphere of sorghum Sorghum bicolor sown with two levels of nitrogen fertilizer. Crespo, J. Mineral phosphate solubilization activity of gluconocetobacter diazotrophicus under P-limitation and plant root environment. Cruz, A. Arbuscular mycorrhizal fungal spores host bacteria that affect nutrient biodynamics and biocontrol of soil borne plant pathogens.

Open 1, 52— Dawwam, G. Beneficial effect of plant growth promoting bacteria isolated from the roots of potato plant. Dekhane, S.

Antibiotics

Effect of biofertilizer and fertility levels on yield, protein content and nutrient uptake of cowpea Vigna unguiculata L. Legume Res. Delaporte-Quintana, P. Contribution of Gluconacetobacter diazotrophicus to phosphorus nutrition in strawberry plants. Deng, X. Water saving approaches for improving wheat production. Downey, J. Dual inoculation of Pisum sativum with Rhizobium leguminosarum and Penicillium bilaji.

Soils 3, — Drevon, J. Phosphorus deficiency increases the argoninduced decline in nodule nitrogenase activity in soybean and alfafa. Planta , — Du Jardin, P. Plant biostimulants: definition, concept, main categories and regulation.

Microorganisms in Food

Duarah, I. Phosphate solubilizers enhance NPK fertilizer use efficiency in rice and legume cultivation. Biotechnology 1, — Eckhard, G. Role of arbuscular mycorrhizal fungi in uptake of phosphorus and nitrogen. Biotechnology 15, 3—4. Ekardt, F. Schnug and L. De Kok Dordrecht: Springer , — Elias, F. Effects of phosphate solubilizing fungi on growth and yield of haricot bean Phaseolus vulgaris L. Evans, H. Postgate Boston, MA: Springer.

Microbes in the Ocean

Fageria, N. Lime and phosphorus interactions on growth and nutrient uptake by upland rice, wheat, common bean and corn in an oxisol. Plant Nutr. Farzaneh, M. The effects of arbuscular mycorrhiza and nitrogen nutrition on growth of chickpea and barley. Pflanzenbauwissenschaften 13, 15— Galal, Y. Non-isotopic method for the quantification of biological nitrogen fixation and wheat production under field conditions. Soils 32, 47— Gates, C.

Occurrence and Role in the Ocean

Industrial Applications of Microbes High Impact List of Articles PPts Journals. Microorganisms have uses and benefits across all aspects of human life. From the bacteria that help humans digest food to the viruses that help plants resist.

The interaction of nitrogen and phosphorus on the growth, nutrient status and nodulation of Stylosanthes humilis HBK Townsville Stylo. Plant Soil 41, — Gerretsen, F. The influence of microorganisms on the phosphate intake by the plant. Plant Soil 1, 51— Ghignone, S. The genome of the obligate endobacterium of an AM fungus reveals an interphylum network of nutritional interactions. ISME J. Glick, B. Plant growth-promoting bacteria: mechanisms and applications. Scientifica Gordon, A.

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Stress-induced decline in nitrogen fixation are related to sucrose synthase activity. Gruhn, P. Gupta, C. Plant growth enhancement and suppression of Macrophomina phaseolina causing charcoal rot of peanut by fluorescent Pseudomonas.