Arid
DOI10.7717/peerj.2365
Agricultural land-use change in a Mexican oligotrophic desert depletes ecosystem stability
Hernandez-Becerra, Natali1; Tapia-Torres, Yunuen2; Beltran-Paz, Ofelia1; Blaz, Jazmin1,3; Souza, Valeria3; Garcia-Oliva, Felipe1
通讯作者Garcia-Oliva, Felipe
来源期刊PEERJ
ISSN2167-8359
出版年2016
卷号4
英文摘要

Background. Global demand for food has led to increased land-use change, particularly in dry land ecosystems, which has caused several environmental problems due to the soil degradation. In the Cuatro Cienegas Basin (CCB), alfalfa production irrigated by flooding impacts strongly on the soil.


Methods. In order to analyze the effect of such agricultural land-use change on soil nutrient dynamics and soil bacterial community composition, this work examined an agricultural gradient within the CCB which was comprised of a native desert grassland, a plot currently cultivated with alfalfa and a former agricultural field that had been abandoned for over 30 years. For each site, we analyzed c, N and P dynamic fractions, the activity of the enzyme phosphatase and the bacterial composition obtained using 16S rRNA clone libraries.


Results. The results showed that the cultivated site presented a greater availability of water and dissolved organic carbon, these conditions promoted mineralization processes mediated by heterotrophic microorganisms, while the abandoned land was limited by water and dissolved organic nitrogen, The low amount of dissolved organic matter promoted nitrification, which is mediated by autotrophic microorganisms. The microbial N immobilization process and specific phosphatase activity were both favored in the native grassland. As expected, differences in bacterial taxonomical composition were observed among sites. The abandoned site exhibited similar compositions than native grassland, while the cultivated site differed.


Discussion. The results suggest that the transformation of native grassland into agricultural land induces drastic changes in soil nutrient dynamics as well as in the bacterial community. However, with the absence of agricultural practices, some of the soil characteristics analyzed slowly recovers their natural state.


英文关键词Alfalfa Resilience Bacteria community Soil nutrients Microbial activity Medicago sativa L.
类型Article
语种英语
国家Mexico
收录类别SCI-E
WOS记录号WOS:000383203100009
WOS关键词MICROBIAL BIOMASS CALIBRATION ; FUMIGATION-EXTRACTION METHOD ; COMMUNITY STRUCTURE ; SOIL PROPERTIES ; ECOENZYMATIC STOICHIOMETRY ; NITROGEN TRANSFORMATIONS ; CARBON ; DYNAMICS ; MANAGEMENT ; DIVERSITY
WOS类目Multidisciplinary Sciences
WOS研究方向Science & Technology - Other Topics
来源机构Universidad Nacional Autónoma de México
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/195391
作者单位1.UNAM, Inst Invest Ecosistemas & Sustentabilidad, Lab Biogeoquim Suelos, Morelia, Michoacan, Mexico;
2.Univ Nacl Autonoma Mexico, ENES Unidad Morelia, Morelia, Michoacan, Mexico;
3.Univ Nacl Autonoma Mexico, Inst Ecol, Mexico City 04510, DF, Mexico
推荐引用方式
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Hernandez-Becerra, Natali,Tapia-Torres, Yunuen,Beltran-Paz, Ofelia,et al. Agricultural land-use change in a Mexican oligotrophic desert depletes ecosystem stability[J]. Universidad Nacional Autónoma de México,2016,4.
APA Hernandez-Becerra, Natali,Tapia-Torres, Yunuen,Beltran-Paz, Ofelia,Blaz, Jazmin,Souza, Valeria,&Garcia-Oliva, Felipe.(2016).Agricultural land-use change in a Mexican oligotrophic desert depletes ecosystem stability.PEERJ,4.
MLA Hernandez-Becerra, Natali,et al."Agricultural land-use change in a Mexican oligotrophic desert depletes ecosystem stability".PEERJ 4(2016).
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