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Clipping and irrigation enhance grass biomass and nutrients: Implications for rangeland management
Affiliation:1. Yabello Pastoral and Dryland Agriculture Research Centre, P. O. Box 85, Yabello, Ethiopia;2. Department of Agroecology in the Tropics and Subtropics, University of Hohenheim, Garbenstr. 13, University of Hohenheim, 70599 Stuttgart, Germany;3. Department of Agricultural and Resource Economics in the College of Agricultural Sciences, Colorado State University, USA;4. Nelson Mandela African Institution of Science and Technology, Arusha, Tanzania;1. Institute for Peat and Mire Research, Northeast Normal University, State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Renmin 5268, Changchun 130024, PR China;2. Institute of Grassland Sciences, Northeast Normal University, Key Laboratory for Vegetation Ecology, Ministry of Education, Changchun, PR China;3. Swedish Species Information Centre, Swedish University of Agricultural Sciences, PO Box 7007, SE-750 07, Uppsala, Sweden;1. Department of Life Sciences, University of Alcala, 28871 Alcala de Henares, Madrid, Spain;2. Colegio de Postgraduados, Campus San Luis Potosí, 78600 Iturbide No. 73, Centro Salinas, San Luis Potosí, Mexico;3. School of Environmental Studies, University of Victoria, 3800 Finnerty Rd., Victoria, BC, V8W 2Y2, Canada;4. Ecosystem Management Unit, Alberta Innovates-Technology Futures, 3-4476 Markham St., Victoria, BC, V8Z 7X8, Canada;5. Biodiversity and Conservation Unit, Department of Biology and Geology, Rey Juan Carlos University, Móstoles, 28933, Madrid, Spain;1. Department of Biogeography and Global Change (BGC-MNCN-CSIC), National Museum of Natural Sciences, CSIC, C/Serrano 155bis, E-28006 Madrid, Spain;2. Laboratorio Ecotono, INIBIOMA-CONICET, Universidad Nacional del Comahue, Black River, Argentina;3. Museu de Ciències Naturals de Granollers (MCNG), E-08402 Granollers, Barcelona, Spain;4. Department of Biology, Unit of Zoology, Faculty of Sciences, Universidad Autónoma de Madrid, C/Darwin 2, Campus Universitario de Cantoblanco, 28049 Madrid, Spain
Abstract:Increasing frequency of drought and high herbivore pressure significantly affect individual grass functions in semiarid regions. Reseeding of degraded rangelands by native grass species has been recommended as a tool for restoration semiarid rangelands. However, how grass species used for reseeding respond to stressors has not been fully explored. We examined biomass allocation and nutrient contents of Cenchrus ciliaris and Chloris gayana in the semiarid Borana rangelands, Ethiopia. We tested clipped mature tufts of the same species for biomass allocation and nutritive values. Further, shifts in rainfall and herbivory were simulated by three irrigation and four clipping treatments, respectively, for newly established grasses in pot and field plot experiments. Aboveground biomass (AGB) significantly declined by up to 75% under increased clipping in mature tufts. In contrast, clipping significantly stimulated up to 152% higher AGB of newly established grasses. Lower irrigation reduced the AGB by 24 and 42% in C. ciliaris and in C. gayana, respectively. Clipping, further, significantly enhanced grass nutrients in grass tufts by up to 82 and 105% in C. ciliaris and C. gayana, respectively. Hence, management should focus on balancing this trade-off in mature grasses for nutritious rangeland production by clipping and storing for later supplemental feeding when grass nutrients drop. Further, young pastures should be moderately clipped/grazed for better establishment and biomass allocation. Additionally, our experiments established the first interactive effect of clipping and irrigation frequencies on the biomass allocation of native grasses in the semiarid Borana rangelands, Ethiopia. Knowledge of these interacting factors is deemed essential for policy makers to enhance productivity of degraded rangelands such as the Borana rangelands.
Keywords:Borana rangelands  Crude protein  Ethiopia  Herbivory  Semiarid
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