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Novel Root Fungal Consortium Associated with a Dominant Desert Grassâ–ż
- Publication Year :
- 2008
- Publisher :
- American Society for Microbiology (ASM), 2008.
-
Abstract
- The broad distribution and high colonization rates of plant roots by a variety of endophytic fungi suggest that these symbionts have an important role in the function of ecosystems. Semiarid and arid lands cover more than one-third of the terrestrial ecosystems on Earth. However, a limited number of studies have been conducted to characterize root-associated fungal communities in semiarid grasslands. We conducted a study of the fungal community associated with the roots of a dominant grass, Bouteloua gracilis , at the Sevilleta National Wildlife Refuge in New Mexico. Internal transcribed spacer ribosomal DNA sequences from roots collected in May 2005, October 2005, and January 2006 were amplified using fungal-specific primers, and a total of 630 sequences were obtained, 69% of which were novel (less than 97% similarity with respect to sequences in the NCBI database). B. gracilis roots were colonized by at least 10 different orders, including endophytic, coprophilous, mycorrhizal, saprophytic, and plant pathogenic fungi. A total of 51 operational taxonomic units (OTUs) were found, and diversity estimators did not show saturation. Despite the high diversity found within B. gracilis roots, the root-associated fungal community is dominated by a novel group of dark septate fungi (DSF) within the order Pleosporales. Microscopic analysis confirmed that B. gracilis roots are highly colonized by DSF. Other common orders colonizing the roots included Sordariales, Xylariales, and Agaricales. By contributing to drought tolerance and nutrient acquisition, DSF may be integral to the function of arid ecosystems.
- Subjects :
- New Mexico
Drought tolerance
Molecular Sequence Data
Biodiversity
Poaceae
Applied Microbiology and Biotechnology
Plant Roots
Plant use of endophytic fungi in defense
Microbial Ecology
Sordariales
Botany
DNA, Ribosomal Spacer
Colonization
Internal transcribed spacer
Xylariales
DNA, Fungal
Phylogeny
Ecology
biology
Fungi
Sequence Analysis, DNA
biology.organism_classification
Bouteloua gracilis
Food Science
Biotechnology
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....3a60f27d25995af392644d9e095bab19