# Mycorrhizal Fungi and Plant Interactions

**Type:** Topics  
**Canonical URL:** https://scholariq.org/topics/mycorrhizal-fungi-and-plant-interactions/

## Facts

| Field | Value |
| --- | --- |
| Description | This cluster of papers explores the diverse interactions between mycorrhizal fungi and plants, including their role in nutrient cycling, soil biota, and ecosystem functioning. It delves into topics such as fungal diversity, DNA barcoding, and the impact of mycorrhizal symbiosis on plant health and growth. The research also investigates the ecological implications of these symbiotic relationships and their influence on global biodiversity. |
| Domain | Life Sciences |
| Field | Agricultural and Biological Sciences |
| OpenAlex ID | t10451 |
| Works | 65 |

## Topic papers all

Showing 15 of 65.

- [TRY plant trait database – enhanced coverage and open access](https://scholariq.org/papers/try-plant-trait-database-enhanced-coverage-and-open-access/)
- [Phosphate systemically inhibits development of arbuscular mycorrhiza in Petunia hybrida and represses genes involved in mycorrhizal functioning](https://scholariq.org/papers/phosphate-systemically-inhibits-development-of-arbuscular-mycorrhiza-in-petunia/)
- [A Versatile Monosaccharide Transporter That Operates in the Arbuscular Mycorrhizal Fungus <i>Glomus</i> sp Is Crucial for the Symbiotic Relationship with Plants](https://scholariq.org/papers/a-versatile-monosaccharide-transporter-that-operates-in-the-arbuscular/)
- [Mechanistic Insights into Arbuscular Mycorrhizal Fungi-Mediated Drought Stress Tolerance in Plants](https://scholariq.org/papers/mechanistic-insights-into-arbuscular-mycorrhizal-fungi-mediated-drought-stress/)
- [Non-biological synthetic spike-in controls and the AMPtk software pipeline improve mycobiome data](https://scholariq.org/papers/non-biological-synthetic-spike-in-controls-and-the-amptk-software-pipeline/)
- [Jasmonates in arbuscular mycorrhizal interactions](https://scholariq.org/papers/jasmonates-in-arbuscular-mycorrhizal-interactions/)
- [Exploring functional contexts of symbiotic sustain within lichen-associated bacteria by comparative omics](https://scholariq.org/papers/exploring-functional-contexts-of-symbiotic-sustain-within-lichen-associated/)
- [Metabolite profiling of mycorrhizal roots of Medicago truncatula](https://scholariq.org/papers/metabolite-profiling-of-mycorrhizal-roots-of-medicago-truncatula/)
- [Characterization of diversity in Colletotrichum acutatum sensu lato by sequence analysis of two gene introns, mtDNA and intron RFLPs, and mating compatibility.](https://scholariq.org/papers/characterization-of-diversity-in-colletotrichum-acutatum-sensu-lato-by-sequence/)
- [Historical Biogeography and Diversification of Truffles in the Tuberaceae and Their Newly Identified Southern Hemisphere Sister Lineage](https://scholariq.org/papers/historical-biogeography-and-diversification-of-truffles-in-the-tuberaceae-and/)
- [Induction of Jasmonate Biosynthesis in Arbuscular Mycorrhizal Barley Roots,](https://scholariq.org/papers/induction-of-jasmonate-biosynthesis-in-arbuscular-mycorrhizal-barley-roots/)
- [Characterization and antioxidant activities of polysaccharides from thirteen boletus mushrooms](https://scholariq.org/papers/characterization-and-antioxidant-activities-of-polysaccharides-from-thirteen/)
- [Microbial diversity and the abundance of keystone species drive the response of soil multifunctionality to organic substitution and biochar amendment in a tea plantation](https://scholariq.org/papers/microbial-diversity-and-the-abundance-of-keystone-species-drive-the-response-of/)
- [De novo Assembly of a 40 Mb Eukaryotic Genome from Short Sequence Reads: Sordaria macrospora, a Model Organism for Fungal Morphogenesis](https://scholariq.org/papers/de-novo-assembly-of-a-40-mb-eukaryotic-genome-from-short-sequence-reads-sordaria/)
- [Core phylotypes enhance the resistance of soil microbiome to environmental changes to maintain multifunctionality in agricultural ecosystems](https://scholariq.org/papers/core-phylotypes-enhance-the-resistance-of-soil-microbiome-to-environmental/)

## Topic primary papers

Showing 15 of 28.

- [Phosphate systemically inhibits development of arbuscular mycorrhiza in Petunia hybrida and represses genes involved in mycorrhizal functioning](https://scholariq.org/papers/phosphate-systemically-inhibits-development-of-arbuscular-mycorrhiza-in-petunia/)
- [A Versatile Monosaccharide Transporter That Operates in the Arbuscular Mycorrhizal Fungus <i>Glomus</i> sp Is Crucial for the Symbiotic Relationship with Plants](https://scholariq.org/papers/a-versatile-monosaccharide-transporter-that-operates-in-the-arbuscular/)
- [Mechanistic Insights into Arbuscular Mycorrhizal Fungi-Mediated Drought Stress Tolerance in Plants](https://scholariq.org/papers/mechanistic-insights-into-arbuscular-mycorrhizal-fungi-mediated-drought-stress/)
- [Non-biological synthetic spike-in controls and the AMPtk software pipeline improve mycobiome data](https://scholariq.org/papers/non-biological-synthetic-spike-in-controls-and-the-amptk-software-pipeline/)
- [Metabolite profiling of mycorrhizal roots of Medicago truncatula](https://scholariq.org/papers/metabolite-profiling-of-mycorrhizal-roots-of-medicago-truncatula/)
- [Historical Biogeography and Diversification of Truffles in the Tuberaceae and Their Newly Identified Southern Hemisphere Sister Lineage](https://scholariq.org/papers/historical-biogeography-and-diversification-of-truffles-in-the-tuberaceae-and/)
- [Arbuscular mycorrhiza induces gene expression of the apoplastic invertase LIN6 in tomato (Lycopersicon esculentum) roots](https://scholariq.org/papers/arbuscular-mycorrhiza-induces-gene-expression-of-the-apoplastic-invertase-lin6/)
- [Negative plant–soil feedbacks may limit persistence of an invasive tree due to rapid accumulation of soil pathogens](https://scholariq.org/papers/negative-plant-soil-feedbacks-may-limit-persistence-of-an-invasive-tree-due-to/)
- [Armillaria Root Rot: The Puzzle Is Being Solved](https://scholariq.org/papers/armillaria-root-rot-the-puzzle-is-being-solved/)
- [Effects of Arbuscular Mycorrhizal Fungi on Growth and Physiological Performance of Catalpa bungei C.A.Mey. under Drought Stress](https://scholariq.org/papers/effects-of-arbuscular-mycorrhizal-fungi-on-growth-and-physiological-performance/)
- [Germination and infectivity of ectomycorrhizal fungal spores in relation to their ecological traits during primary succession](https://scholariq.org/papers/germination-and-infectivity-of-ectomycorrhizal-fungal-spores-in-relation-to/)
- [Regulation of Arbuscular Mycorrhization by Carbon. The Symbiotic Interaction Cannot Be Improved by Increased Carbon Availability Accomplished by Root-Specifically Enhanced Invertase Activity](https://scholariq.org/papers/regulation-of-arbuscular-mycorrhization-by-carbon-the-symbiotic-interaction/)
- [Bacterial-fungal interactions under agricultural settings: from physical to chemical interactions](https://scholariq.org/papers/bacterial-fungal-interactions-under-agricultural-settings-from-physical-to/)
- [Regulation of Arbuscular Mycorrhization by Carbon. The Symbiotic Interaction Cannot Be Improved by Increased Carbon Availability Accomplished by Root-Specifically Enhanced Invertase Activity](https://scholariq.org/papers/regulation-of-arbuscular-mycorrhization-by-carbon-the-symbiotic-interaction-2/)
- [Phylogeny and diversity of Japanese truffles (<i>Tuber</i> spp.) inferred from sequences of four nuclear loci](https://scholariq.org/papers/phylogeny-and-diversity-of-japanese-truffles-i-tuber-i-spp-inferred-from/)

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Source: ScholarIQ — public research metadata, principally OpenAlex. See https://scholariq.org/sources/ for provenance and https://scholariq.org/methodology/ for what these figures mean.
