Arid
DOI10.1016/j.scitotenv.2016.10.162
Invasion of the Brazilian campo rupestre by the exotic grass Melinis minutiflora is driven by the high soil N availability and changes in the N cycle
Ribeiro, Pamella C. D.1; Menendez, Esther4; da Silva, Danielle L.1,2; Bonieck, Douglas2; Helena Ramirez-Bahena, Martha3; Resende-Stoianoff, Maria Aparecida2; Peix, Alvaro3; Velazquez, Encarna4; Mateos, Pedro F.4; Scotti, Maria Rita1
通讯作者Scotti, Maria Rita
来源期刊SCIENCE OF THE TOTAL ENVIRONMENT
ISSN0048-9697
EISSN1879-1026
出版年2017
卷号577页码:202-211
英文摘要

The Serra do Rola Maga State Park (PESRM) in Minas Gerais State, Brazil is a preserved site representative of the campo rupestre biome over an ironstone outcrop that has a high level of plant diversity. Almost 60% of this grassy field has been invaded by the exotic molasses grass (Melinis minutiflora), which constitutes a severe threat to the biodiversity and survival of this biome, particularly due to the impacts of annual fires and inappropriate restoration interventions. Many invasive species exhibit a high demand for nitrogen (N). Hence, this work aimed to study the N cycle alterations promoted by M. minutiflora in a site of the campo rupestre, where the leguminous species Mimosa pogocephala was prevalent. The biome’s soils exhibited a high natural N fertility and low C:N ratio. The main N source in this biome resulted from the biological N fixation performed by M. pogocephala associated with Burkholderia nodosa, as evidenced by the total leaf N content, leaf delta N-15 signature, nodule occupation and bacterial molecular idebtification analyses. The displacement of native species by molasses grass was associated with changes in the soil N forms, namely the nitrate increased as the ammonium decreased. The latter was the dominant N form in the native species plots, as observed in the soil analysis,of total N, ammonium and nitrate contents. The dominant ammonium form was changed to the nitric form by the stimulation of ammonia-oxidising bacteria populations due to the invasive species. Therefore, the key mechanism behind the invasiveness of the exotic grass and the concomitant displacement of the native species may be associated with changes in the soil N chemical species. Based on this finding and on the high N-based soil fertility found in the campo rupestre N fertilisation procedures for restoration of invaded areas should be strictly avoided in this biome. (C) 2016 Elsevier B.V. All rights reserved.


英文关键词Ammonium Ammonia monooxygenase (amoA) Biological nitrogen fixation Burkholderia nodosa Mimosa pogocephala Nitrate
类型Article
语种英语
国家Brazil ; Spain
收录类别SCI-E
WOS记录号WOS:000390737400020
WOS关键词ALTERS NITROGEN DYNAMICS ; BROMUS-TECTORUM INVASION ; PLANT INVASIONS ; ARID GRASSLAND ; AFRICAN GRASS ; CARBON ; DIVERSITY ; ECOSYSTEM ; SAVANNA ; IMPACTS
WOS类目Environmental Sciences
WOS研究方向Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/202192
作者单位1.Univ Fed Minas Gerais, Dept Bot, Ave Antonio Carlos 6627, BR-31270901 Belo Horizonte, MG, Brazil;
2.Univ Fed Minas Gerais, Dept Microbiol, Ave Antonio Carlos 6627, BR-31270901 Belo Horizonte, MG, Brazil;
3.CSIC, Inst Recursos Nat & Agrobiol IRNASA, Cordel Merinas 40-52, Salamanca 37008, Spain;
4.Univ Salamanca, Dept Microbiol & Genet, Salamanca, Spain
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GB/T 7714
Ribeiro, Pamella C. D.,Menendez, Esther,da Silva, Danielle L.,et al. Invasion of the Brazilian campo rupestre by the exotic grass Melinis minutiflora is driven by the high soil N availability and changes in the N cycle[J],2017,577:202-211.
APA Ribeiro, Pamella C. D..,Menendez, Esther.,da Silva, Danielle L..,Bonieck, Douglas.,Helena Ramirez-Bahena, Martha.,...&Scotti, Maria Rita.(2017).Invasion of the Brazilian campo rupestre by the exotic grass Melinis minutiflora is driven by the high soil N availability and changes in the N cycle.SCIENCE OF THE TOTAL ENVIRONMENT,577,202-211.
MLA Ribeiro, Pamella C. D.,et al."Invasion of the Brazilian campo rupestre by the exotic grass Melinis minutiflora is driven by the high soil N availability and changes in the N cycle".SCIENCE OF THE TOTAL ENVIRONMENT 577(2017):202-211.
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