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Plant-Growth-Promoting Rhizobacteria
Annual Review of Microbiology, 2009Several microbes promote plant growth, and many microbial products that stimulate plant growth have been marketed. In this review we restrict ourselves to bacteria that are derived from and exert this effect on the root. Such bacteria are generally designated as PGPR (plant-growth-promoting rhizobacteria).
Ben, Lugtenberg, Faina, Kamilova
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New advances in plant growth-promoting rhizobacteria for bioremediation [PDF]
Plant growth-promoting rhizobacteria (PGPR) are bacteria capable of promoting plant growth by colonizing the plant root. For a long period PGPR were mainly used for assisting plants to uptake nutrients from the environment or preventing plant diseases. Phytoremediation is a new and promising approach to remove contaminants in the environment. But using
Zhihui Bai, Hojae Shim
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Root Colonization by Inoculated Plant Growth-Promoting Rhizobacteria
Biocontrol Science and Technology, 2001Certain rhizobacteria referred to as 'plant growth-promoting rhizobacteria' (PGPR) can contribute to the biological control of plant pathogens and improve plant growth. They enhance root development either directly by producing phytohormones, or indirectly by inhibiting pathogens through the synthesis of different compounds.
Emile Benizri, A Guckert
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‘A plant’s major strength in rhizosphere’: the plant growth promoting rhizobacteria
Archives of Microbiology, 2023Human activities, industrialization and civilization have deteriorated the environment which eventually has led to alarming effects on plants and animals by heightened amounts of chemical pollutants and heavy metals in the environment, which create abiotic stress.
Pooja Bhadrecha +2 more
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Plant Growth-Promoting Rhizobacteria (PGPR)
2021With a substantial decline in the use of synthetic chemicals, the growing demand for agricultural production is a critical concern in today's world. The use of plant growth-promoting rhizobacteria (PGPR) has been found to be an environmentally sound way of increasing agricultural productivity by promoting plant growth either through a direct or ...
Podduturi Vanamala +3 more
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PLANT GROWTH-PROMOTING RHIZOBACTERIA IN BEAN PRODUCTION
Acta Horticulturae, 2012Attempts to produce food of plant origin without the use of fertilizers and pesticides are progressively becoming more numerous. It was also found that microorganisms have the ability to provide plants with necessary nutrients. Biofertilizers are expected to take an important place in agricultural production in the years to come.
Jarak, Mirjana +6 more
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Plant Growth Promoting Rhizobacteria
Journal of Plant Nutrition, 2014Plant growth promoting rhizobacteria (PGPR) are soil bacteria with some beneficial effects on soil properties, plant growth and the environment. In this article, some of the most important advancements in the field of PGPR and their related properties are presented.
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Methods for the Characterization of Plant-Growth Promoting Rhizobacteria
2017A detailed description of methods most frequently used for the identification and characterization of beneficial microbial strains is presented in this chapter. The methods include microbiological, biochemical, and molecular approaches. Microbiological and biochemical methods comprise a broad range of techniques that are based on the analysis of ...
Md Motaher, Hossain, Farjana, Sultana
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Plant Growth-Promoting Rhizobacteria for Plant Immunity
2013Plants are equipped with active defense mechanisms, and in order to survive with diverse pathogen attack and unfavorable conditions, plants activate appropriate defense responses. However, defense response entails a great cost in the overall health of plants.
Marilyn Sumayo, Sa-Youl Ghim
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Current Microbiology, 2023
Cadmium (Cd) is a heavy metal of considerable toxicity with destructive impacts on plants, microbes and environments. Its toxicity is due to mishandling and manual hazards in plants and is primarily observed within the soil to cause decline of plants and microbial activity inside the rhizosphere.
Ashok, Kumar +6 more
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Cadmium (Cd) is a heavy metal of considerable toxicity with destructive impacts on plants, microbes and environments. Its toxicity is due to mishandling and manual hazards in plants and is primarily observed within the soil to cause decline of plants and microbial activity inside the rhizosphere.
Ashok, Kumar +6 more
openaire +2 more sources

