Provenance causes variation on early growth and survival and sun protection on physiological responses of the vulnerable Nothofagus glauca (Phil.) Krasser in a common garden in Central Chile
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Alameda, 2009, Moderate soil compaction: implications on growth and architecture in seedlings of 17 woody plant species, Soil and Tillage Research, 103, 325, 10.1016/j.still.2008.10.029
Amigo, 2000, Estudio fitosociológico de los bosques de Nothofagus glauca (Phil.) Krasser del Centro-Sur de Chile, Phytocoenologia, 30, 193, 10.1127/phyto/30/2000/193
Ampoorter, 2011, Effects of soil compaction on growth and survival of tree saplings: a meta-analysis, Basic and Applied Ecology, 12, 394, 10.1016/j.baae.2011.06.003
Andrade, 2017, Soil compaction caused by harvest and logging operations in eucalyptus forests in coarse-textured soils from northeastern Brazil, Ciência e Agrotecnologia, 41, 191, 10.1590/1413-70542017412036216
Baldwin, 2018
Balocchi, 2020, The effect of the ‘Las Maquinas’ wildfire of 2017 on the hydrologic balance of a high conservation value Hualo (Nothofagus glauca (Phil.) Krasser) forest in central Chile, Forest Ecology and Management, 477, 10.1016/j.foreco.2020.118482
Barstow
Bécel, 2012, Soil penetration resistance, a suitable soil property to account for variations in root elongation and branching, Plant Soil, 353, 169, 10.1007/s11104-011-1020-7
Beckett, 2018, Evaluation of the dynamic cone penetrometer to detect compaction in ripped soils, Soil and Tillage Research, 175, 150, 10.1016/j.still.2017.09.009
Boari, 2015, Particle film technology: a supplemental tool to save water, Agricultural Water Management, 147, 154, 10.1016/j.agwat.2014.07.014
Broadhurst, 2008, Seed supply for broadscale restoration: maximizing evolutionary potential, Evolutionary Applications, 1, 587, 10.1111/j.1752-4571.2008.00045.x
Broadhurst, 2014, Seed provenance for restoration and management: conserving evolutionary potential and utility, 27
Cambi, 2015, The impact of heavy traffic on forest soils: a review, Forest Ecology and Management, 338, 124, 10.1016/j.foreco.2014.11.022
Cantore, 2009, Kaolin-based particle film technology affects tomato physiology, yield and quality, Environmental and Experimental Botany, 66, 279, 10.1016/j.envexpbot.2009.03.008
Callaham, 2013
Celma, 2019, Effect of soil preparation method on root development of P. sylvestris and P. abies saplings in commercial forest stands, New Forests, 50, 283, 10.1007/s11056-018-9654-4
Dinis, 2016, Kaolin-based foliar reflective film protects photosystem II structure and function in grapevine leaves exposed to heat and high solar radiation, Photosynthetica, 54, 47, 10.1007/s11099-015-0156-8
Dinis, 2018, Improvement of grapevine physiology and yield under summer stress by kaolin-foliar application: water relations, photosynthesis and oxidative damage, Photosynthetica, 56, 641, 10.1007/s11099-017-0714-3
Donoso, 1981
Echeverría, 2006, Rapid deforestation and fragmentation of Chilean temperate forests, Biological Conservation, 130, 481, 10.1016/j.biocon.2006.01.017
Fajardo, 2005, Effects of natural and human disturbances on the dynamics and spatial structure of Nothofagus glauca in south‐central Chile, Journal of Biogeography, 32, 1811, 10.1111/j.1365-2699.2005.01331.x
Garreaud, 2017, The 2010–2015 megadrought in central Chile: impacts on regional hydroclimate and vegetation, Hydrology and Earth System Sciences, 21, 6307, 10.5194/hess-21-6307-2017
Garreaud, 2020, The central Chile mega drought (2010–2018): a climate dynamics perspective, International Journal of Climatology, 40, 421, 10.1002/joc.6219
Glenn, 2001, Particle film application influences apple leaf physiology, fruit yield, and fruit quality, Journal of the American Society for Horticultural Science, 126, 175, 10.21273/JASHS.126.2.175
Glenn, 2003, Particle films affect carbon assimilation and yield in ‘Empire’ apple, Journal of the American Society for Horticultural Science, 128, 356, 10.21273/JASHS.128.3.0356
Greacen, 1980, Compaction of forest soils. A review, Australian Journal of Soil Research, 18, 163, 10.1071/SR9800163
Gutiérrez, 2021, Crecimiento y supervivencia de un ensayo de procedencias y progenies de Roble (Nothofagus obliqua (Mirb.) Oerst.) de 21 años de edad en Pumillahue, Región de los Ríos, Chile, Ciencia e Investigación Forestal, 27, 23, 10.52904/0718-4646.2021.547
Hamza, 2005, Soil compaction in cropping systems. A review of the nature, causes and possible solutions, Soil and Tillage Research, 82, 121, 10.1016/j.still.2004.08.009
Hatfeld, 2019, Water-use efficiency: advances and challenges in a changing climate, Frontiers in Plant Science, 10, 1
Ignazi, 2020, Stories from common gardens: water shortage differentially affects Nothofagus pumilio from contrasting precipitation regimes, Forest Ecology and Management, 458, 10.1016/j.foreco.2019.117796
Jifon, 2003, Kaolin particle film applications can increase photosynthesis and water use efficiency of ruby red' grapefruit leaves, Journal of the American Society for Horticultural Science, 128, 107, 10.21273/JASHS.128.1.0107
Laclau, 2003, Nutrient dynamics throughout the rotation of Eucalyptus clonal stands in Congo, Annals of Botany, 91, 879, 10.1093/aob/mcg093
Le-Quesne, 2001, Extensión del límite sur para Nothofagus glauca, Phil.) Krasser. Gayana Botánica, 58, 139
Le Grange, 2004, Effect of kaolin applications on apple fruit quality and gas exchange of apple leaves, Acta Horticulturae, 636, 545, 10.17660/ActaHortic.2004.636.69
Li, 2015, Effects of successive rotation regimes on carbon stocks in eucalyptus plantations in subtropical China measured over a full rotation, PLoS One, 10
McBeath, 2010, Effects of subsoil amendments on soil physical properties, crop response, and soil water quality in a dry year, Australian Journal of Soil Research, 48, 140, 10.1071/SR08254
Medrano, 2002, Regulation of photosynthesis of C3 Plant in response to progressive drought: stomatal conductance as a reference parameter, Annals of Botany, 89, 895, 10.1093/aob/mcf079
Melgarejo, 2004, Kaolin treatment to reduce pomegranate sunburn, Scientia Horticulturae, 100, 349, 10.1016/j.scienta.2003.09.006
Mendham, 2003, Residue management effects on soil carbon and nutrient contents and growth of second rotation eucalypts, Forest Ecology and Management, 181, 357, 10.1016/S0378-1127(03)00007-0
Olarieta, 2012, Soil gypsum and increased penetration resistance restrict early growth of Quercus ilex plantations, Arid Land Research and Management, 26, 250, 10.1080/15324982.2012.680654
Palfner, 2008, Post-fire seedlings of Nothofagus alpina in Southern Chile show strong dominance of a single ectomycorrhizal fungus and a vertical shift in root architecture, Plant and Soil, 313, 237, 10.1007/s11104-008-9697-y
Padilla, 2011, Does shelter enhance early seedling survival in dry environments?. A test with eight Mediterranean species, Applied Vegetation Science, 14, 31, 10.1111/j.1654-109X.2010.01094.x
Peña-Rojas, 2013
Premoli, 2007, Morphological and phenological differences in Nothofagus pumilio from contrasting elevations: evidence from a common garden, Austral Ecology, 32, 515, 10.1111/j.1442-9993.2007.01720.x
Quiroz, 2021, The use of shelters improves growth and survival of the endangered Nothofagus alessandrii after 5 years in a Mediterranean drought-prone site, Ecological Engineering, 164, 10.1016/j.ecoleng.2021.106220
Rosati, 2007, Physiological effects of kaolin particle film technology: a review, Functional Plant Science and Biotechnology, 1, 100
Rusch, 1993, Altitudinal variation in the phenology of Nothofagus pumilio in Argentina, Revista Chilena de Historia Natural, 66, 131
Santos, 2021, Effect of applying a calcined kaolin-based particle film on the photosynthetic capacity and growth of young eucalyptus plants, Journal of Forestry Research, 1
Sands, 1979, Compaction of sandy soils in radiata pine forests. I. A penetrometer study, Australian Journal of Soil Research, 17, 101, 10.1071/SR9790101
Saour, 2003, Effects of kaolin particle film on olive fruit yield, oil content and quality, Advances in Horticultural Science, 17, 204
Soliani, 2020, Evidence of genetic determination in the growth habit of Nothofagus pumilio (Poepp. & Endl.) Krasser at the extremes of an elevation gradient, Scandinavian Journal of Forest Research, 35, 211, 10.1080/02827581.2020.1789208
Thomson, 2009, Boreal forest provenance tests used to predict optimal growth and response to climate change: 2. Black spruce, Canadian Journal of Forest Research, 39, 143, 10.1139/X08-167
Torres-Ruiz, 2019, Genetic differentiation in functional traits among European sessile oak populations, Tree Physiology, 39, 1736, 10.1093/treephys/tpz090
Tullus, 2010, The impact of available water content in previous agricultural soils on tree growth and nutritional status in young hybrid aspen plantations in Estonia, Plant Soil, 333, 129, 10.1007/s11104-010-0330-5
van Gardingen, 1987
Valladares, 1997, Interaction between water stress, sun-shade acclimation, heat tolerance and photoinhibition in the sclerophyll Heteromeles arbutifolia, – Plant Cell and Environment, 20, 25, 10.1046/j.1365-3040.1997.d01-8.x
Varela, 2012, Physiological and morphological short-term responses to light and temperature in two Nothofagus species of Patagonia, South America, Photosynthetica, 50, 557, 10.1007/s11099-012-0064-0
Varela, 2016, Physiological status of conifer seedlings treated with radiation, drought and frost stress mitigation techniques: a laboratory assessment, New Forests, 47, 87, 10.1007/s11056-015-9485-5
Van der Mijnsbrugge, 2010, A question of origin: where and how to collect seed for ecological restoration, Basic and Applied Ecology, 11, 300, 10.1016/j.baae.2009.09.002
Vergara, 2014, Population genetic structure, genetic diversity, and natural history of the South American species of Nothofagus subgenus Lophozonia (Nothofagaceae) inferred from nuclear microsatellite data, Ecology and Evolution, 4, 2450, 10.1002/ece3.1108
Wand, 2006, Harvest and post-harvest apple fruit quality following applications of kaolin particle film in South African orchards, Scientia Horticulturae, 107, 271, 10.1016/j.scienta.2005.11.002
Whalley, 1995, Biological effects of soil compaction, Soil and Tillage Research, 35, 53, 10.1016/0167-1987(95)00473-6
Wilson, 2005, A vulnerability analysis of the temperate forests of south central Chile, Biological Conservation, 122, 9, 10.1016/j.biocon.2004.06.015
White, 2020, The effect of wildfire on the structure and water balance of a high conservation value Hualo (Nothofagus glauca (Phil.) Krasser.) forest in central Chile, Forest Ecology and Management, 472, 10.1016/j.foreco.2020.118219
Wünsche, 2004, ‘Surround’ particle film applications—effects on whole canopy physiology of apple, Acta Horticulturae, 636, 565, 10.17660/ActaHortic.2004.636.72