Production of greenhouse-grown biocrust mosses and associated cyanobacteria to rehabilitate dryland soil function

Author:

Antoninka Anita1,Bowker Matthew A.12,Reed Sasha C.3,Doherty Kyle2

Affiliation:

1. School of Forestry; Northern Arizona University; 200 East Pine Knoll Drive Flagstaff AZ 86011 U.S.A.

2. Southwest Biological Science Center; US Geological Survey; 2255 North Gemini Drive Flagstaff AZ 86001 U.S.A.

3. Southwest Biological Science Center; US Geological Survey; 2290 Southwest Resource Boulevard Moab UT 84532 U.S.A.

Funder

Strategic Environmental Research and Development Program

Northern Arizona University

Publisher

Wiley

Subject

Nature and Landscape Conservation,Ecology,Ecology, Evolution, Behavior and Systematics

Reference56 articles.

1. Recovery rates of cryptobiotic crusts: inoculant use and assessment methods;Belnap;Great Basin Naturalist,1993

2. Soil surface disturbances in cold deserts: effects on nitrogenase activity in cyanobacterial-lichen soil crusts;Belnap;Biology and Fertility of Soils,1996

3. Nitrogen fixation in biological soil crusts from southeast Utah, U.S.A;Belnap;Biology and Fertility of Soils,2002

4. Using biocrusts as a restoration material to combat dryland degradation has great potential;Belnap;Journal of Arid Environments,1998

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