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Journal ArticleDOI

Nitrogen-fixing bacteria associated with leguminous and non-leguminous plants

TLDR
A wide diversity of nitrogen-fixing bacterial species belonging to most phyla of the Bacteria domain have the capacity to colonize the rhizosphere and to interact with plants.
Abstract
Nitrogen is generally considered one of the major limiting nutrients in plant growth. The biological process responsible for reduction of molecular nitrogen into ammonia is referred to as nitrogen fixation. A wide diversity of nitrogen-fixing bacterial species belonging to most phyla of the Bacteria domain have the capacity to colonize the rhizosphere and to interact with plants. Leguminous and actinorhizal plants can obtain their nitrogen by association with rhizobia or Frankia via differentiation on their respective host plants of a specialized organ, the root nodule. Other symbiotic associations involve heterocystous cyanobacteria, while increasing numbers of nitrogen-fixing species have been identified as colonizing the root surface and, in some cases, the root interior of a variety of cereal crops and pasture grasses. Basic and advanced aspects of these associations are covered in this review.

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Citations
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Changes in soil physicochemical properties and soil bacterial community in mulberry (Morus alba L.)/alfalfa (Medicago sativa L.) intercropping system.

TL;DR: Overall, mulberry/alfalfa intercropping changed soil bacterial community, which was related to changes in soil total carbon, available phosphate, and available potassium, which indicated that the soil environmental factors were more important than the planting pattern in shaping the bacterial community in the field soil.
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Infection of Helicoverpa armigera by endophytic Beauveria bassiana colonizing tomato plants

TL;DR: It is suggested that endophytic colonization of B. bassiana has potential as an effective strategy to control H. armigera in tomatoes.
Journal ArticleDOI

Biofertilizers and Biocontrol Agents for Agriculture: How to Identify and Develop New Potent Microbial Strains and Traits.

TL;DR: A review of the available tools and approaches that can produce information on new beneficial traits in bio-fertilizer and biocontrol strains is presented in this article, where the authors also discuss innovative ideas on how and where to identify efficient new members for the bio-product family.
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Impact of metagenomic DNA extraction procedures on the identifiable endophytic bacterial diversity in Sorghum bicolor (L. Moench).

TL;DR: Using the broad-spectrum SDS-based DNA extraction protocol allows the recovery of the most diverse endophytic communities associated with sorghum tissues and, as such, establishes a reliable basis for future study of endophytics communities.
Journal ArticleDOI

Purple non-sulphur bacteria and plant production: benefits for fertilization, stress resistance and the environment.

TL;DR: PNSB have the potential to enhance plant growth performance, increase the yield and quality of edible plant biomass, boost the resistance to environmental stresses, bioremediate heavy metals and mitigate greenhouse gas emissions.
References
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Journal ArticleDOI

Generic assignments, strain histories, and properties of pure cultures of cyanobacteria

TL;DR: Revisions are designed to permit the generic identification of cultures, often difficult through use of the field-based system of phycological classification, and are both constant and readily determinable in cultured material.
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Biological Nitrogen Fixation

TL;DR: Highlights in biological nitrogen fixation during the last fifty years are highlighted.
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Applications of the acetylene-ethylene assay for measurement of nitrogen fixation

TL;DR: The biochemical basis of the assay is described along with relevant characteristics including Km, C2H2/N2 conversion factor, and specific N2[C2H 2]-fixing activities obtained with various systems, and methods of measurement of N2 fixation are compared.
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Coordinating nodule morphogenesis with rhizobial infection in legumes.

TL;DR: This review focuses on the tissue-specific nature of the developmental processes associated with nodulation and the mechanisms by which these processes are coordinated during the formation of a nodule.
Journal ArticleDOI

Genetic regulation of biological nitrogen fixation

TL;DR: The ability of microorganisms to use nitrogen gas as the sole nitrogen source and engage in symbioses with host plants confers many ecological advantages, but also incurs physiological penalties because the process is oxygen sensitive and energy dependent.