Impact of warm spells during late fall and winter on frost hardiness of short-day treated Norway spruce seedlings
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[1] J. Luoranen,et al. Factors affecting winter damage and recovery of newly planted Norway spruce seedlings in boreal forests , 2022, Forest Ecology and Management.
[2] A. Jönsson,et al. Model analysis of temperature impact on the Norway spruce provenance specific bud burst and associated risk of frost damage , 2021 .
[3] I. Ensminger,et al. Champions of Winter Survival: Cold acclimation and Molecular Regulation of Cold Hardiness in Evergreen Conifers. , 2020, The New phytologist.
[4] J. Luoranen,et al. An Assessment of Storability of Norway Spruce Container Seedlings in Freezer Storage as Affected by Short-Day Treatment , 2020, Forests.
[5] H. Hänninen,et al. Endodormancy release in Norway spruce grafts representing trees of different ages. , 2020, Tree physiology.
[6] J. Räisänen,et al. Thermal seasons in northern Europe in projected future climate , 2020, International Journal of Climatology.
[7] B. Cook,et al. Rethinking false spring risk , 2019, Global change biology.
[8] J. Aalto,et al. Snow cover trends in Finland over 1961–2014 based on gridded snow depth observations , 2019, International Journal of Climatology.
[9] Heikki Hänninen,et al. Divergent trends in the risk of spring frost damage to trees in Europe with recent warming , 2018, Global change biology.
[10] J. Luoranen,et al. Seedling, planting site and weather factors affecting the success of autumn plantings in Norway spruce and Scots pine seedlings , 2018, Forest Ecology and Management.
[11] J. Luoranen,et al. Testing the differences of LT50, LD50, or ED50 , 2018, Canadian Journal of Forest Research.
[12] D. Jacobs,et al. Short-day photoperiods affect expression of genes related to dormancy and freezing tolerance in Norway spruce seedlings , 2017, Annals of Forest Science.
[13] S. Mansfield,et al. Elevated Temperature and CO2 Stimulate Late-Season Photosynthesis But Impair Cold Hardening in Pine[OPEN] , 2016, Plant Physiology.
[14] S. Colombo,et al. Effects of winter warming on cold hardiness and spring budbreak of four boreal conifers , 2016 .
[15] J. Olsen,et al. Effect of alternating day and night temperature on short day-induced bud set and subsequent bud burst in long days in Norway spruce , 2014, Front. Plant Sci..
[16] A. Lindström,et al. Storability measures of Norway spruce and Scots pine seedlings and assessment of post-storage vitality by measuring shoot electrolyte leakage , 2014 .
[17] Jacob E. Wulff,et al. Changes in metabolite profiles in Norway spruce shoot tips during short-day induced winter bud development and long-day induced bud flush , 2014, Metabolomics.
[18] Christian Körner,et al. Photoperiod sensitivity of bud burst in 14 temperate forest tree species , 2012 .
[19] H. Hänninen,et al. The minimum temperature for budburst in Betula depends on the state of dormancy. , 2012, Tree physiology.
[20] A. Granhus,et al. Bud break and spring frost hardiness in Picea abies seedlings in response to photoperiod and temperature treatments. , 2010 .
[21] J. Olsen. Light and temperature sensing and signaling in induction of bud dormancy in woody plants , 2010, Plant Molecular Biology.
[22] A. Granhus,et al. Effect of frost nights and day and night temperature during dormancy induction on frost hardiness, tolerance to cold storage and bud burst in seedlings of Norway spruce , 2009, Trees.
[23] K. Tanino,et al. Warm temperature accelerates short photoperiod-induced growth cessation and dormancy induction in hybrid poplar (Populus × spp.) , 2009, Trees.
[24] Ø. Johnsen,et al. Effects of early long-night treatment on diameter and height growth, second flush and frost tolerance in two-year-old Picea abies container seedlings , 2007 .
[25] Scott R. Kalberer,et al. Deacclimation and reacclimation of cold-hardy plants: Current understanding and emerging concepts , 2006 .
[26] E. T. Palva,et al. Molecular control of cold acclimation in trees , 2006 .
[27] T. Repo,et al. Effect of thawing time, cooling rate and boron nutrition on freezing point of the primordial shoot in norway spruce buds. , 2006, Annals of botany.
[28] J. Partanen. Dependence of photoperiodic response of growth cessation on the stage of development in Picea abies and Betula pendula seedlings , 2004 .
[29] S. Colombo,et al. Daylength, temperature and fertilization effects on desiccation resistance, cold hardiness and root growth potential of Picea mariana seedlings , 2003 .
[30] G. Green,et al. The impact of green spruce aphid, Elatobium abietinum (Walker), and root aphids on the growth of young Sitka spruce in Hafren Forest, Wales: effects on height, diameter and volume , 2000 .
[31] Heikki Hänninen,et al. Effects of photoperiod and temperature on the timing of bud burst in Norway spruce (Picea abies). , 1998, Tree physiology.
[32] S. Colombo,et al. Winter hardening in first-year black spruce (Picea mariana) seedlings , 1989 .
[33] Gregory A. Lang,et al. Endo-, Para-, and Ecodormancy: Physiological Terminology and Classification for Dormancy Research , 1987, HortScience.
[34] Risto Sarvas,et al. Investigations on the annual cycle of development of forest trees. II. Autumn dormancy and winter dormancy , 1974 .
[35] P. Wareing,et al. Photoperiodism in Woody Plants , 1956 .
[36] J. Luoranen,et al. Reduced height of short day induced bud scale complex may partly explain early bud burst in Norway spruce seedlings , 2017 .
[37] J. Luoranen,et al. Post-planting effects of early-season short-day treatment and summer planting on Norway spruce seedlings , 2015 .
[38] C. Augspurger,et al. Reconstructing patterns of temperature, phenology, and frost damage over 124 years: spring damage risk is increasing. , 2013, Ecology.
[39] H. Tuomenvirta,et al. Climate change and future overwintering conditions of horticultural woody-plants in Finland , 2012 .
[40] J. Luoranen,et al. Frost hardening and risk of a second flush in Norway spruce seedlings after an early-season short-day treatment. , 2009 .
[41] H. Rasmussen,et al. Frost hardening and dehardening in Abies procera and other conifers under differing temperature regimes and warm-spell treatments , 2009 .
[42] A. Lindström,et al. Influence of soil temperature on root freezing tolerance of Scots pine (Pinus sylvestris L.) seedlings , 2004, Plant and Soil.
[43] A. Ryyppö,et al. Cold acclimation and deacclimation of shoots and roots of conifer seedlings , 2001 .
[44] D. Simpson,et al. Frost-Related Problems in the Establishment of Coniferous Forests , 2001 .
[45] O. Junttila,et al. Environmental control of cold acclimation in Salix pentandra , 1990 .
[46] O. M. Heide. Growth and Dormancy in Norway Spruce Ecotypes (Picea abies) I. Interaction of Photoperiod and Temperature , 1974 .