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  2. Agricultural microbiology - Wikipedia

    en.wikipedia.org/wiki/Agricultural_microbiology

    Nitrogen is an essential element needed for the creation of biomass and is usually seen as a limiting nutrient in agricultural systems. Though abundant in the atmosphere, the atmospheric form of nitrogen cannot be utilized by plants and must be transformed into a form that can be taken up directly by the plants; this problem is solved by biological nitrogen fixers.

  3. Plant microbiome - Wikipedia

    en.wikipedia.org/wiki/Plant_microbiome

    g) Bacteria and bacterial filaments. h, i) Different bacterial individuals showing great varieties of shapes and morphological features. [33] Mycorrhizal fungi are abundant members of the rhizosphere community, and have been found in over 200,000 plant species, and are estimated to associate with over 80% of all plants. [34]

  4. Azospirillum brasilense - Wikipedia

    en.wikipedia.org/wiki/Azospirillum_brasilense

    A. brasilense promoting the growth of Setaria viridis, a model plant for Zea mays (corn).. Azospirillum brasilense is a very well studied, nitrogen-fixing (), genetically tractable, Gram-negative, alpha-proteobacterium bacterium, first described in Brazil (in a publication in 1978) by the group of Johanna Döbereiner and then receiving the name "brasilense". [1]

  5. Phytoplasma - Wikipedia

    en.wikipedia.org/wiki/Phytoplasma

    Many phytoplasma-infected plants develop a bushy or "witches' broom" appearance due to changes in their normal growth patterns. Most plants exhibit apical dominance, but infection can trigger the proliferation of axillary (side) shoots and a reduction in internode size. [8] Such symptoms are actually useful in the commercial production of ...

  6. Phytolith - Wikipedia

    en.wikipedia.org/wiki/Phytolith

    This is because the virus constricts overall plant growth and therefore phytolith growth as well. Contrastingly, plants affected with bacterial wilt disease resulted in much larger phytoliths but they were abnormally shaped. This could be due to the bacteria causing constriction of the hypodermal cells, causing an influx of silica deposits. [8]

  7. Germplasm - Wikipedia

    en.wikipedia.org/wiki/Germplasm

    Germplasm resources are a way to conserve the pre-existing biological diversity and to possibly regenerate habitats. By storing this genetic information there is data about what species are present including plants, animals, bacteria, and fungi and what a complete ecosystem in specific areas look like.

  8. Epiphytic bacteria - Wikipedia

    en.wikipedia.org/wiki/Epiphytic_bacteria

    They adhere to the plant surface forms as 1-cluster 2- individual bacterial cell 3- biofilm . [1] The age of the organ also affects the epiphytic bacteria population and characteristics and has a role in the inhibition of phytopathogen on plant. Epiphytic bacteria found in the marine environment have a role in the nitrogen cycle.

  9. Antagonism (phytopathology) - Wikipedia

    en.wikipedia.org/wiki/Antagonism_(phytopathology)

    Numerous microbial antagonists, including yeasts and bacteria, are isolated from diverse environments such as soil, plants, compost, and oceans for their potential to control plant diseases. For example, endophyte microorganisms found inside guarana seeds and rhizospheric soil have shown their ability to fight harmful pathogens, making them ...