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Differential Gene Expression in Roots Colonized by an Ericoid Mycorrhizal Fungus and Increased Nitrogen Absorption and Plant Growth. | LitMetric

AI Article Synopsis

  • Ericoid mycorrhizal (ERM) fungi form specific symbiotic relationships with plants in the Ericaceae family, but their molecular establishment and nitrogen (N) uptake processes are not well understood.
  • The study created a system to establish this symbiosis between a specific plant and an ERM fungus, showing that colonization led to significant changes in gene expression, particularly in genes related to nitrogen metabolism and transport.
  • Results indicated that colonized seedlings showed a 36.6% increase in total nitrogen content and a 46.6% increase in dry weight compared to control seedlings, providing insights into how ERM fungi enhance plant growth and nutrient absorption.

Article Abstract

Ericoid mycorrhizal (ERM) fungi are specifically symbiotic with plants in the family Ericaceae. Little is known thus far about their symbiotic establishment and subsequent nitrogen (N) uptake at the molecular level. The present study devised a system for establishing a symbiotic relationship between Lindl. and an ERM fungus ( var. maius strain Om19), quantified seedling growth and N uptake, and compared transcriptome profiling between colonized and uncolonized roots using RNA-Seq. The Om19 colonization induced 16,892 genes that were differentially expressed in plant roots, of which 14,364 were upregulated and 2,528 were downregulated. These genes included those homologous to ATP-binding cassette transporters, calcium/calmodulin-dependent kinases, and symbiosis receptor-like kinases. N metabolism was particularly active in Om19-colonized roots, and 51 genes were upregulated, such as nitrate transporters, nitrate reductase, nitrite reductase, ammonium transporters, glutamine synthetase, and glutamate synthase. Transcriptome analysis also identified a series of genes involving endocytosis, Fc-gamma R-mediated phagocytosis, glycerophospholipid metabolism, and Gonadotropin-releasing hormone (GnRH) signal pathway that have not been reported previously. Their roles in the symbiosis require further investigation. The Om19 colonization significantly increased N uptake and seedling growth. Total N content and dry weight of colonized seedlings were 36.6 and 46.6% greater than control seedlings. This is the first transcriptome analysis of a species from the family Ericaceae colonized by an ERM fungus. The findings from this study will shed light on the mechanisms underlying symbiotic relationships of ericaceous species with ERM fungi and the symbiosis-resultant N uptake and plant growth.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5078686PMC
http://dx.doi.org/10.3389/fpls.2016.01594DOI Listing

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