Environmental drivers for riparian restoration success and ecosystem services supply in Mediterranean agricultural landscapes

被引:12
作者
Castellano, Clara [1 ,2 ]
Bruno, Daniel [1 ,2 ]
Comin, Francisco A. [1 ,2 ]
Masip, Adria [5 ]
Benayas, Jose M. Rey [3 ,4 ]
Jimenez, Juan J. [1 ,2 ]
机构
[1] CSIC, IPE, Avda Montanana 1005, Zaragoza 50059, Spain
[2] Avda Ntra Sra Victoria 16, Jaca 22700, Spain
[3] Alcala Univ, Life Sci Dept, E-28805 Alcala De Henares, Spain
[4] Fdn Int Restaurac Ecosistemas, Princesa 3 dpdo, Apto 703, E-28008 Madrid, Spain
[5] Burgeon Environm Solut, C Major 30, El Vilosell 25457, Spain
关键词
Carbon storage; Habitat provision; Revegetation; Riparian forest; Microclimate regulation; Water purification; CATION-EXCHANGE CAPACITY; WATER REPELLENCY; SOIL PROPERTIES; SALT TOLERANCE; VEGETATION; RIVER; GROWTH; BIODIVERSITY; COMMUNITIES; DIVERSITY;
D O I
10.1016/j.agee.2022.108048
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Riparian forests nestled in agricultural landscapes represent a small proportion in crop-intensive areas, while contributing remarkably to their biodiversity. This biodiversity supports several ecological processes crucially involved in the supply of ecosystem services (ES) complementary to that provided by agricultural lands and also relevant for designing biodiverse and multifunctional landscapes. Riparian forest is one of the most threatened ecosystems due to land-use intensification and associated water extraction, especially in Mediterranean semi-arid areas, and proper evaluation of the success of riparian restoration projects is usually lacking. Furthermore, there is little empirical evidence of the effects of riparian restoration on ES supply. In this study, we first investigated the effect of hydrological and soil features on survival and growth of saplings planted in degraded riparian areas in two Mediterranean watersheds. Then, we evaluated how riparian restoration affected the supply of ES, comparing nine regulating and supporting ES on these restored areas with other riparian areas spanning a gradient of conservation status, and with other natural and agricultural land-uses in the same watershed. We found that restoration success mainly depended on water table depth, soil salinity and soil nutrients (namely Mg+2 and Olsen P). Moreover, we detected an antagonistic interaction between the latter two, and a synergetic interaction between water table depth and soil salinity. Forest patches provided meaningful regulating and supporting ES in agricultural landscapes. In particular, riparian restoration zones increased the supply of regulating and supporting ES (water purification, habitat provision, microclimate regulation and soil C storage) in comparison with degraded natural land-uses and crops. Nevertheless, they were still far from the magnitude and range of ES provided by mature riparian forests. These results highlight the importance of focusing management practices on conserving riparian forest patches and restoring the degraded ones to reconcile agricultural production with the maintenance or enhancement of ES in agricultural Mediterranean landscapes.
引用
收藏
页数:12
相关论文
共 111 条
[71]   Effects of grass clearing and soil tilling on establishment of planted tree seedlings in tropical riparian pastures [J].
Meli, Paula ;
Rey Benayas, Jose Maria ;
Martinez Ramos, Miguel ;
Carabias, Julia .
NEW FORESTS, 2015, 46 (04) :507-525
[72]  
Moore RD, 2005, J AM WATER RESOUR AS, V41, P813, DOI 10.1111/j.1752-1688.2005.tb04465.x
[73]   A general and simple method for obtaining R2 from generalized linear mixed-effects models [J].
Nakagawa, Shinichi ;
Schielzeth, Holger .
METHODS IN ECOLOGY AND EVOLUTION, 2013, 4 (02) :133-142
[74]  
Navas A, 1998, Boletn Sociedad Entomolgica Aragonesa, P73
[75]  
Oksanen Jari, 2022, CRAN
[76]   MONITORING AND MODELING WATER-VEGETATION INTERACTIONS IN GROUNDWATER-DEPENDENT ECOSYSTEMS [J].
Orellana, Felipe ;
Verma, Parikshit ;
Loheide, Steven P., II ;
Daly, Edoardo .
REVIEWS OF GEOPHYSICS, 2012, 50
[77]   Spatial Variability of Soil Organic Matter and Cation Exchange Capacity in an Oxisol under Different Land Uses [J].
Paz Ferreiro, Jorge ;
De Almeida, Vicente Pereira ;
Alves, Marlene Cristina ;
De Abreu, Cleide Aparecida ;
Vieira, Sidney R. ;
Vidal Vazquez, Eva .
COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 2016, 47 :75-89
[78]  
Pedrocchi C, 1998, ECOLOGIA MONEGROS PA, P189
[79]  
Pinheiro J, 2006, MIXED EFFECTS MODELS
[80]   Deforestation causes different subregional effects on the Amazon bioclimatic equilibrium [J].
Pires, Gabrielle Ferreira ;
Costa, Marcos Heil .
GEOPHYSICAL RESEARCH LETTERS, 2013, 40 (14) :3618-3623