Arid
DOI10.1111/rec.12311
Production of greenhouse-grown biocrust mosses and associated cyanobacteria to rehabilitate dryland soil function
Antoninka, Anita1; Bowker, Matthew A.1,2; Reed, Sasha C.3; Doherty, Kyle2
通讯作者Antoninka, Anita
来源期刊RESTORATION ECOLOGY
ISSN1061-2971
EISSN1526-100X
出版年2016
卷号24期号:3页码:324-335
英文摘要

Mosses are an often-overlooked component of dryland ecosystems, yet they are common members of biological soil crust communities (biocrusts) and provide key ecosystem services, including soil stabilization, water retention, carbon fixation, and housing of N-2 fixing cyanobacteria. Mosses are able to survive long dry periods, respond rapidly to precipitation, and reproduce vegetatively. With these qualities, drylandmosses have the potential to be an excellent dryland restoration material. Unfortunately, dryland mosses are often slow growing in nature, and ex situ cultivation methods are needed to enhance their utility. Our goal was to determine how to rapidly produce, vegetatively, Syntrichia caninervis and S. ruralis, common and abundant moss species in drylands of North America and elsewhere, in a greenhouse. We manipulated the length of hydration on a weekly schedule (5, 4, 3, or 2 days continuous hydration per week), crossed with fertilization (once at the beginning, monthly, biweekly, or not at all). Moss biomass increased sixfold for both species in 4 months, an increase that would require years under dryland field conditions. Both moss species preferred short hydration and monthly fertilizer. Remarkably, we also unintentionally cultured a variety of other important biocrust organisms, including cyanobacteria and lichens. In only 6 months, we produced functionally mature biocrusts, as evidenced by high productivity and ecosystem-relevant levels of N-2 fixation. Our results suggest that biocrust mossesmight be the ideal candidate for biocrust cultivation for restoration purposes. With optimization, these methods are the first step in developing a moss-based biocrust rehabilitation technology.


英文关键词biocrust cultivation biological soil crust C and nitrogen fixation dryland rehabilitation technology dryland restoration material Syntrichia spp.
类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000383716800006
WOS关键词DESICCATION-TOLERANCE ; NITROGEN-FIXATION ; ARTIFICIAL CULTURE ; CRUSTS ; BRYOPHYTES ; RECOVERY ; DESERT ; INFILTRATION ; FERTILIZATION ; REGENERATION
WOS类目Ecology
WOS研究方向Environmental Sciences & Ecology
来源机构United States Geological Survey
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/196043
作者单位1.No Arizona Univ, Sch Forestry, 200 East Pine Knoll Dr, Flagstaff, AZ 86011 USA;
2.US Geol Survey, Southwest Biol Sci Ctr, 2255 North Gemini Dr, Flagstaff, AZ 86001 USA;
3.US Geol Survey, Southwest Biol Sci Ctr, 2290 Southwest Resource Blvd, Moab, UT 84532 USA
推荐引用方式
GB/T 7714
Antoninka, Anita,Bowker, Matthew A.,Reed, Sasha C.,et al. Production of greenhouse-grown biocrust mosses and associated cyanobacteria to rehabilitate dryland soil function[J]. United States Geological Survey,2016,24(3):324-335.
APA Antoninka, Anita,Bowker, Matthew A.,Reed, Sasha C.,&Doherty, Kyle.(2016).Production of greenhouse-grown biocrust mosses and associated cyanobacteria to rehabilitate dryland soil function.RESTORATION ECOLOGY,24(3),324-335.
MLA Antoninka, Anita,et al."Production of greenhouse-grown biocrust mosses and associated cyanobacteria to rehabilitate dryland soil function".RESTORATION ECOLOGY 24.3(2016):324-335.
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