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Journal ArticleDOI

The unseen rhizosphere root-soil-microbe interactions for crop production.

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TLDR
A holistic view of the root-soil-rhizomicrobiome interactions achieved through the advances of omics and bioinformatics technologies, and the potential strategies to manage the complex rhizosphere interactions for enhancing crop production are discussed.
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This article is published in Current Opinion in Microbiology.The article was published on 2017-06-01. It has received 191 citations till now. The article focuses on the topics: Rhizosphere.

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Plant Growth-Promoting Rhizobacteria: Context, Mechanisms of Action, and Roadmap to Commercialization of Biostimulants for Sustainable Agriculture.

TL;DR: The concept and role of the phytomicrobiome and the agricultural context underlying food security in the 21st century are introduced and mechanisms of plant growth promotion by PGPR are discussed, including signal exchange between plant roots and PGPR and how these relationships modulate plant abiotic stress responses via induced systemic resistance.
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Opportunities and challenges for nanotechnology in the agri-tech revolution.

TL;DR: The most promising new opportunities and approaches for the application of nanotechnology to improve the use efficiency of necessary inputs for crop agriculture, and for better managing biotic and abiotic stress are presented.
Journal ArticleDOI

Alleviation of salinity stress in plants by endophytic plant-fungal symbiosis: Current knowledge, perspectives and future directions

TL;DR: The performance of endophytic fungi applied to crops as a supplement to plant genetics or soil management to alleviate salt stress in crops is described via inducing systemic resistance, increasing the levels of beneficial metabolites, activating antioxidant systems to scavenge ROS, and modulating plant growth phytohormones.
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Insights into the Interactions among Roots, Rhizosphere, and Rhizobacteria for Improving Plant Growth and Tolerance to Abiotic Stresses: A Review.

TL;DR: In this article, the root-rhizosphere and rhizobacterial interactions under stresses, how roots respond to these interactions, and the role of rhizophacteria under these stresses.
References
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Journal ArticleDOI

QUORUM SENSING: Cell-to-Cell Communication in Bacteria

TL;DR: This review focuses on the architectures of bacterial chemical communication networks; how chemical information is integrated, processed, and transduced to control gene expression; how intra- and interspecies cell-cell communication is accomplished; and the intriguing possibility of prokaryote-eukaryote cross-communication.
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The rhizosphere microbiome and plant health

TL;DR: In this article, the authors discuss evidence that upon pathogen or insect attack, plants are able to recruit protective microorganisms, and enhance microbial activity to suppress pathogens in the rhizosphere.
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Going back to the roots: the microbial ecology of the rhizosphere.

TL;DR: Recent developments in rhizosphere research are discussed in relation to assessing the contribution of the micro- and macroflora to sustainable agriculture, nature conservation, the development of bio-energy crops and the mitigation of climate change.
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Structure and functions of the bacterial microbiota of plants

TL;DR: The plant microbiota emerges as a fundamental trait that includes mutualism enabled through diverse biochemical mechanisms, as revealed by studies on plant growth- Promoting and plant health-promoting bacteria.
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Defining the core Arabidopsis thaliana root microbiome

TL;DR: The pyrosequencing of the bacterial 16S ribosomal RNA gene of more than 600 Arabidopsis thaliana plants is reported to test the hypotheses that the root rhizosphere and endophytic compartment microbiota of plants grown under controlled conditions in natural soils are sufficiently dependent on the host to remain consistent across different soil types and developmental stages.
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