Arid
DOI10.1890/04-1959
Evidence for micronutrient limitation of biological soil crusts: importance to arid-lands restoration
Bowker, MA; Belnap, J; Davidson, DW; Phillips, SL
通讯作者Bowker, MA
来源期刊ECOLOGICAL APPLICATIONS
ISSN1051-0761
出版年2005
卷号15期号:6页码:1941-1951
英文摘要

Desertification is a global problem, costly to national economies and human societies. Restoration of biological soil crusts (BSCs) may have an important role to play in the reversal of desertification due to their ability to decrease erosion and enhance soil fertility. To determine if there is evidence that lower fertility may hinder BSC recolonization, we investigated the hypothesis that BSC abundance is driven by soil nutrient concentrations. At a regional scale (north and central Colorado Plateau, USA), moss and lichen cover aid richness are correlated With a complex water-nutrient availability gradient and have approximately six-fold higher cover and approximately two-fold higher species richness on sandy soils than on shale-derived soils. At a microscale, mosses and. lichens are overrepresented in microhabitats under the north sides of shrub canopies, where water and nutrients are more available. At two spatial scales, and at the individual species and community levels, our data are consistent with the hypothesis that distributions of BSC organisms are determined largely by soil fertility. The micronutrients Mn and Zn figured prominently and consistently in the various analyses, strongly suggesting that these elements are previously unstudied limiting factors in BSC development. Structural-equation modeling of our data is most consistent with the hypothesis of causal relationships between the availability of micronutrients and the abundance of the two major nitrogen (N) fixers of BSCs. Specifically, higher Mn availability may determine greater Collema tenax abundance, and both Mn and Zn may limit Collema coccophorum; alternative causal hypotheses were less consistent with the data.. We propose experimental trials- of micronutrient addition to promote the restoration of BSC function on disturbed lands. Arid lands, where BSCs are most prevalent, cover similar to 40% of the terrestrial surface of the earth; thus the information gathered in this study is potentially useful in many places worldwide.


英文关键词Collema cryptobiotic soils desertification lichens manganese micronutrient limitation mosses restoration semi-arid desert soil crusts and arid-land restoration soil nutrients zinc
类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000233858900009
WOS关键词COLORADO PLATEAU ; NITROGEN-FIXATION ; DESERT ; AUSTRALIA ; LICHENS ; DEGRADATION ; VEGETATION ; ORGANISMS ; STEPPE
WOS类目Ecology ; Environmental Sciences
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/2XILL650/148837
作者单位(1)US Geol Survey, Moab, UT 84532 USA;(2)Univ Utah, Dept Biol, Salt Lake City, UT 84112 USA
推荐引用方式
GB/T 7714
Bowker, MA,Belnap, J,Davidson, DW,et al. Evidence for micronutrient limitation of biological soil crusts: importance to arid-lands restoration[J]. United States Geological Survey,2005,15(6):1941-1951.
APA Bowker, MA,Belnap, J,Davidson, DW,&Phillips, SL.(2005).Evidence for micronutrient limitation of biological soil crusts: importance to arid-lands restoration.ECOLOGICAL APPLICATIONS,15(6),1941-1951.
MLA Bowker, MA,et al."Evidence for micronutrient limitation of biological soil crusts: importance to arid-lands restoration".ECOLOGICAL APPLICATIONS 15.6(2005):1941-1951.
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