82
areas under management, where the N. obliqua and, mainly, N. alpina regeneration
processes are affected, regeneration management of N. dombeyi saplings (thinning)
should be implemented to promote the release and establishment of N. obliqua and
N. alpina individuals; (iv) in sites with low sapling density, topsoil removal and/or
planting of the most affected species could be implemented.
References
Alberto F, Bouffier L, Louvet JM, Lamy JB, Delzon S, Kremer A (2011) Adaptive responses for
seed and leaf phenology in natural populations of sessile oak along an altitudinal gradient. J
Evol Biol 24:1442–1454
Arana MV, Gonzalez-Polo M, Martinez-Meier A, Gallo LA, Benech-Arnold RL, Sánchez RA,
Batlla D (2016) Seed dormancy responses to temperature relate to Nothofagus species distribution and determine temporal patterns of germination across altitudes in Patagonia. New Phytol
209:507–520
Azpilicueta MM, Caron H, Bodenes C, Gallo L (2004) SSR markers for analysing South American
Nothofagus species. Silivae Genet 53:240–243
Azpilicueta MM, Marchelli P, Gallo LA (2009) The effects of Quaternary glaciations in Patagonia
as evidenced by chloroplast DNA phylogeography of southern beech Nothofagus obliqua. Tree
Genet Genomes 5:561–571
Azpilicueta MM, Gallo LA, van Zonneveld M, Thomas E, Moreno C, Marchelli P (2013)
Management of Nothofagus genetic resources: definition of genetic zones based on a combination of nuclear and chloroplast marker data. For Ecol Manag 302:414–424
Azpilicueta MM, Marchelli P, Gallo LA, Umaña F, Thomas E, van Zonneveld M et al (2016) Zonas
genéticas de raulí y roble pellín en Argentina: herramientas para la conservación y el manejo de
la diversidad genética. Ediciones INTA
Barbero F (2014) Variación genética de poblaciones naturales argentinas de Nothofagus obliqua
(“Roble Pellín”) en caracteres adaptativos tempranos relevantes para domesticación. Tesis
Doctoral-Facultad de Agronomía – Universidad de Buenos Aires
Barroetaveña C, Salomón MES, Bassani V (2019) Rescuing the ectomycorrhizal biodiversity
associated with South American Nothofagaceae forest, from the 19th century naturalists up to
molecular biogeography. For Int J For Res 92:500–511
Batlla D, Benech-Arnold RL (2003) A quantitative analysis of dormancy loss dynamics in
Polygonum aviculare L. seeds: development of a thermal time model based on changes in seed
population thermal parameters. Seed Sci Res 13:55–68
Batlla D, Benech-Arnold RL (2015) A framework for the interpretation of temperature effects on
dormancy and germination in seed populations showing dormancy. Seed Sci Res 25:147–158
Bekessy SA, Allnutt TR, Premoli AC, Lara A, Ennos RA, Burgman MA et al (2002) Genetic variation in the monkey puzzle tree (Araucaria araucana (Molina) K.Koch), detected using RAPDs.
Heredity 88:243–249
Bertin RI (2008) Plant phenology and distribution in relation to recent climate change. J Torrey
Bot Soc 135:126–146
Bewley JD, Bradford KJ, Hilhorst HWM, Nonogaki H (2013) Dormancy and the control of germination. In: Seeds. Springer, New York, pp 247–297
Brewer CA (1992) Responses by stomata on leaves to microenvironmental conditions. In: Glase
JC (ed) Tested studies for laboratory teaching. Proceedings of the 13th workshop/conference
of the Association for Biology Laboratory Education (ABLE), pp 67–77
Bucci G, González-Martínez SC, Le Provost G, Plomion C, Ribeiro MM, Sebastiani F et al (2007)
Range-wide phylogeography and gene zones in Pinus pinaster Ait. revealed by chloroplast
microsatellite markers. Mol Ecol 16:2137–2153
P. Marchelli et al.
areas under management, where the N. obliqua and, mainly, N. alpina regeneration
processes are affected, regeneration management of N. dombeyi saplings (thinning)
should be implemented to promote the release and establishment of N. obliqua and
N. alpina individuals; (iv) in sites with low sapling density, topsoil removal and/or
planting of the most affected species could be implemented.
References
Alberto F, Bouffier L, Louvet JM, Lamy JB, Delzon S, Kremer A (2011) Adaptive responses for
seed and leaf phenology in natural populations of sessile oak along an altitudinal gradient. J
Evol Biol 24:1442–1454
Arana MV, Gonzalez-Polo M, Martinez-Meier A, Gallo LA, Benech-Arnold RL, Sánchez RA,
Batlla D (2016) Seed dormancy responses to temperature relate to Nothofagus species distribution and determine temporal patterns of germination across altitudes in Patagonia. New Phytol
209:507–520
Azpilicueta MM, Caron H, Bodenes C, Gallo L (2004) SSR markers for analysing South American
Nothofagus species. Silivae Genet 53:240–243
Azpilicueta MM, Marchelli P, Gallo LA (2009) The effects of Quaternary glaciations in Patagonia
as evidenced by chloroplast DNA phylogeography of southern beech Nothofagus obliqua. Tree
Genet Genomes 5:561–571
Azpilicueta MM, Gallo LA, van Zonneveld M, Thomas E, Moreno C, Marchelli P (2013)
Management of Nothofagus genetic resources: definition of genetic zones based on a combination of nuclear and chloroplast marker data. For Ecol Manag 302:414–424
Azpilicueta MM, Marchelli P, Gallo LA, Umaña F, Thomas E, van Zonneveld M et al (2016) Zonas
genéticas de raulí y roble pellín en Argentina: herramientas para la conservación y el manejo de
la diversidad genética. Ediciones INTA
Barbero F (2014) Variación genética de poblaciones naturales argentinas de Nothofagus obliqua
(“Roble Pellín”) en caracteres adaptativos tempranos relevantes para domesticación. Tesis
Doctoral-Facultad de Agronomía – Universidad de Buenos Aires
Barroetaveña C, Salomón MES, Bassani V (2019) Rescuing the ectomycorrhizal biodiversity
associated with South American Nothofagaceae forest, from the 19th century naturalists up to
molecular biogeography. For Int J For Res 92:500–511
Batlla D, Benech-Arnold RL (2003) A quantitative analysis of dormancy loss dynamics in
Polygonum aviculare L. seeds: development of a thermal time model based on changes in seed
population thermal parameters. Seed Sci Res 13:55–68
Batlla D, Benech-Arnold RL (2015) A framework for the interpretation of temperature effects on
dormancy and germination in seed populations showing dormancy. Seed Sci Res 25:147–158
Bekessy SA, Allnutt TR, Premoli AC, Lara A, Ennos RA, Burgman MA et al (2002) Genetic variation in the monkey puzzle tree (Araucaria araucana (Molina) K.Koch), detected using RAPDs.
Heredity 88:243–249
Bertin RI (2008) Plant phenology and distribution in relation to recent climate change. J Torrey
Bot Soc 135:126–146
Bewley JD, Bradford KJ, Hilhorst HWM, Nonogaki H (2013) Dormancy and the control of germination. In: Seeds. Springer, New York, pp 247–297
Brewer CA (1992) Responses by stomata on leaves to microenvironmental conditions. In: Glase
JC (ed) Tested studies for laboratory teaching. Proceedings of the 13th workshop/conference
of the Association for Biology Laboratory Education (ABLE), pp 67–77
Bucci G, González-Martínez SC, Le Provost G, Plomion C, Ribeiro MM, Sebastiani F et al (2007)
Range-wide phylogeography and gene zones in Pinus pinaster Ait. revealed by chloroplast
microsatellite markers. Mol Ecol 16:2137–2153
P. Marchelli et al.
