Regeneration dynamics of planted seedling-origin aspen (Populus tremuloides Michx.)
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Alberta Agriculture and Forestry (2016) Current and historical Alberta weather station data viewer. Agriculture and Forestry, Gov Alta, Canada. www.agriculture.alberta.ca/acis/alberta-weather-data-viewer.jsp . Accessed 30 Sep 2015
Bartos DL, Meuggler WF (1981) Early succession in aspen communities following fire in Western Wyoming. J Range Manag 34:315–318
Bartos DL, Mueggler WF, Campbell RB Jr (1991) Regeneration of aspen by suckering on burned sites in western Wyoming. US Department of Agriculture, Forest Service, Intermountain Research Station, Ogden, p 14
Bates PC, Blinn CR, Alm AA (1993) Harvesting impacts on quaking aspen regeneration in Northern Minnesota. Can J For Res 23:2403–2412
Bell WF, Pitt DG, Morneault AE, Pickering SM (1999) Response of immature trembling aspen to season and height of cut. North J Appl For 16:108–114
Bockstette SW, Pinno BD, Dyck MF, Landhäusser SM (2017) Root competition, not soil compaction, restricts access to soil resources for aspen on a reclaimed mine soil. J Bot 95:685–695
Bowser WE, Kjearsgaard AA, Peters TW, Wells RE (1962) Soil survey of Edmonton sheet (83-H). Canada Department of Agriculture, Department of Extension, University of Alberta, Edmonton, p 82
DeByle NV (1963) Detection of functional intraclonal aspen root connections. For Sci 10:386–396
DeByle NV, Winokur RP (1985) Aspen: ecology and management in the Western United States. US Department of Agriculture, Forest Service, Fort Collins, p 283
Desrochers A, Lieffers VJ (2001a) The coarse-root system of mature Populus tremuloides in declining stands in Alberta, Canada. J Veg Sci 12:355–360
DesRochers A, Lieffers VJ (2001b) Root biomass of regenerating aspen (Populus tremuloides) stands of different densities in Alberta. Can J For Res 31:1012–1018
Eliasson L (1971) Growth regulators in Populus tremula IV. Apical dominance and suckering in young plants. Physiol Plant 25:263–267
Fairweather ML, Rokala EA, Mock KE (2014) Aspen seedling establishment and growth after wildfire in Central Arizona: an instructive case history. For Sci 60:703–712
Farmer RE (1962) Aspen root sucker formation and apical dominance. For Sci 8:403–410
Fraser EC, Lieffers VJ, Landhäusser SM (2004) Wounding of aspen roots promotes suckering. Can J Bot 82:310–315
Fraser EC, Lieffers VJ, Landhäusser SM (2005) Age, stand density and tree size as factors in root and basal grafting of Lodgepole Pine. Can J Bot 988:983–988
Fraser EC, Lieffers VJ, Landhäusser SM (2006) Carbohydrate transfer through root grafts to support shaded trees. Tree Physiol 26:1019–1023
Frey BR, Lieffers VJ, Landhäusser SM, Comeau PG, Greenway KJ (2003) An analysis of sucker regeneration of trembling aspen. Can J For Res 33:1169–1179
Frey BR, Lieffers VJ, Hogg T, Landhäusser SM (2004) Predicting landscape patterns of aspen dieback: mechanisms and knowledge gaps. Can J For Res 34:1379–1390
Government of Alberta (2013) Alberta regeneration standards for the mineable oil sands. Environment and Sustainable Resource Development, Gov Alta, Edmonton, p 71
Greifenhagen S, Pitt DG, Wester MC, Bell FW (2005) Juvenile response to conifer release alternatives on aspen-white spruce boreal mixedwood sites. Part II: quality of aspen regeneration. For Chron 81:548–558
Grewal H (1995) Parent stand age and harvesting treatment effects on juvenile aspen biomass productivity. For Chron 71:299–303
Harrington JT, Mexal JG, Fisher JT (1994) Volume displacement provides a quick and accurate way to quantify new root production. Tree Plant Note 45:121–124
Heeney CJ, Kemperman JA, Brown G (1980) A silvicultural guide to the aspen working group in Ontario. Ontario Ministry of Natural Resources, Forest Research Branch, Toronto, p 47
Hothorn T, Bretz F, Westfall P (2008) Simultaneous inferences in general parametric models. Biom J 50:346–363
Huffman RD, Fajvan MA, Wood PB (1999) Effects of residual overstory on aspen development in Minnesota. Can J For Res 29:284–289
Jelínková H, Tremblay F, DesRochers A (2009) Molecular and dendrochronological analysis of natural root grafting in Populus tremuloides (Salicaceae). Am J Bot 96:1500–1505
Kabzems R, Haeussler S (2005) Soil properties, aspen, and white spruce responses 5 years after organic matter removal and compaction treatments. Can J For Res 35:2045–2055
Kemperman JA (1977) Aspen clones: development, variability and identification. Ontario Ministry of Natural Resources, Forest Research Branch, Northern Forestry Research Branch, Thunder Bay, p 11
King JS, Pregitzer KS, Zak DR (1999) Clonal variation in above- and below-ground growth responses of Populus tremuloides Michaux: influence of soil warming and nutrient availability. Plant Soil 217:119–130
Landhäusser SM, Lieffers VJ (1998) Growth of Populus tremuloides in association with Calamagrostis canadensis. Can J For Res 28:396–401
Landhäusser SM, Lieffers VJ (2002) Leaf area renewal, root retention and carbohydrate reserves in a clonal tree species following above-ground disturbance. J Ecol 90:658–665
Landhäusser SM, Lieffers VJ, Mulak T (2006) Effects of soil temperature and time of decapitation on sucker initiation of intact Populus tremuloides root systems. Scand J For Res 21:299–305
Lindroth RL, Osier TL, Barnhill HRH, Wood SA (2002) Effects of genotype and nutrient availability on phytochemistry of trembling aspen (Populus tremuloides Michx.) during leaf senescence. Biochem Syst Ecol 30:297–307
Macdonald SE, Quideau SA, Landhäusser SM (2012) Rebuilding boreal forest ecosystems after industrial disturbance. In: Vitt D, Bhatti J (eds) Restoration and reclamation of boreal ecosystems, attaining sustainable development. Cambridge University Press, Cambridge, pp 123–161
Miller B (1996) Aspen management: a literature review. Ontario Ministry of Natural Resources, Northeast Science & Technology, Prepared by Smith, Miller and Associated Ltd., NEST Technical Report TR-028, p 88
Mulak T, Landhäusser SM, Lieffers VJ (2006) Effects of timing of cleaning and residual density on regeneration of juvenile aspen stands. For Ecol Manag 232:198–204
Mundell TL, Landhäusser SM, Lieffers VJ (2008) Root carbohydrates and aspen regeneration in relation to season of harvest and machine traffic. For Ecol Manag 255:68–74
Natural Regions Committee (2006) Natural regions and subregions of Alberta. In: Downing DJ, Pettapiece WW (eds) Government of Alberta, p 254
Osier TODL, Lindroth RL (2001) Effects of genotype, nutrient availibility, and defoloation on aspen phytochemisty and insect performance. J Chem Ecol 27:1289–1313
Perala DA (1978) Aspen sucker production and growth from outplanted root cuttings. US Department of Agriculture, Forest Service, St. Paul MN. Research Note NC-241, p 4
Peterson EB, Peterson NM (1992) Ecology, management, and use of aspen and balsam poplar in the Prairie Provinces, Canada. Forestry Canada, Northern Forestry Centre, Edmonton, p 252
Pinno BD, Lieffers VJ, Stadt KJ (2001) Measuring and modelling the crown and light trnasmission characteristics of juvenile. Can J For Res 31:1930–1939
Pitt DG, Bell FW (2005) Juvenile response to conifer release alternatives on aspen-white spruce boreal mixedwood sites. Part I: stand structure and composition. For Chron 81:538–547
Pitt DG, Comeau PG, Mihajlovich M, Macisaac D, Mcpherson S (2003) Effects of herbaceous vegetation control and aspen stem density on boreal mixedwood stand development. Partner’s Report, p 39
Pollard DFW (1970) Leaf area development on different shoot types in a young aspen stand and its effect upon production. Can J Bot 48:1801–1804
Pollard DFW (1971) Mortality and annual changes in distribution of above-ground biomass in an aspen sucker stand. Can J For Res 1:262–266
R Core Team (2016) R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. https://www.R-project.org/
Renkema KN, Landhäusser SM, Lieffers VJ (2009) Suckering response of aspen to traffic-induced-root wounding and the barrier-effect of log storage. For Ecol Manag 258:2083–2089
Schier GA (1972) Apical dominance in multishoot cultures from aspen roots. For Sci 18:147–149
Schier GA (1975) Promotion of sucker development on Populus tremuloides root cuttings by antiauxin. Can J For Res 5:338–340
Schier GA (1978) Vegetative propagation of Rocky Mountain aspen. US Department of Agriculture, Forest Service, Intermountain Forest and Range Experiment Station, Ogden, p 13
Schier GA, Campbell RB (1980) Variation among healthy and deteriorating aspen clones. US Department of Agriculture, Forest Service, Intermountain Forest and Range Experiment Station, Ogden, p 12
Schier GA, Smith AD (1979) Sucker regeneration in a Utah aspen clone after clearcutting, partial cutting, scarification and girdling. US Department of Agriculture, Forest Service, Intermountain Forest and Range Experiment Station, Ogden, p 6
Schier GA, Zasada JC (1973) Role of carbohydrate reserves in the development of root suckers in Populus tremuloides. Can J For Res 3:243–250
Shepperd WD (1996) Response of aspen root suckers to regeneration methods and post-harvest protection. Aspen Bibliogr, Paper 1655, p 8
Snedden J (2013) The Root distribution, architecture, transpiration and root sapflow dynamics of mature trembling aspen (Populus tremuloides) growing along a hillslope. Thesis, University of Alberta, p 103
St Clair SB, Mock KE, Lamalfa EM, Campbell RB, Ryel RJ (2010) Genetic contributions to phenotypic variation in physiology, growth, and vigor of western aspen (Populus tremuloides) clones. For Sci 56:222–230
Steneker GA (1976) Guide to the silvicultural management of trembling aspen in the Prairie Provinces. Canadian Forest Service Northern Forestry Center, Edmonton, p 6
Strong WL, La Roi GH (1983a) Root-system morphology of common boreal forest trees in Alberta, Canada. Can J For Res 13:1164–1173
Strong WL, La Roi GH (1983b) Rooting depths and successional development of selected boreal forest communities. Can J For Res 13:577–588
Wachowski J (2012) Transfer of live aspen roots as a reclamation technique—effects of soil depth, root diameter and fine root growth on root suckering ability. Thesis, University of Alberta, p 105
Wachowski J, Landhäusser SM, Lieffers VJ (2014) Depth of root placement, root size and carbon reserves determine reproduction success of aspen root fragments. For Ecol Manag 313:83–90
Wan X, Landhäusser SM, Lieffers VJ, Zwiazek JJ (2006) Signals controlling root suckering and adventitious shoot formation in aspen (Populus tremuloides). Tree Physiol 26:681–687