Stand dynamics and natural regeneration in silver fir (Abies alba Mill.) plantations after traditional rotation age
In the Apennine mountains most pure silver fir stands originated from planting and were managed according to the traditional model, with clear cutting and a 100 year rotation. In the last decades in most of these stands there has been a change towards nature conservation and active management has st...
| Published in: | iForest - Biogeosciences and Forestry |
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| Main Authors: | , , , , |
| Format: | Article |
| Language: | English |
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Italian Society of Silviculture and Forest Ecology (SISEF)
2014-10-01
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| Online Access: | https://iforest.sisef.org/contents/?id=ifor0985-007 |
| _version_ | 1857097375245402112 |
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| author | Bottalico F Travaglini D Fiorentini S Lisa C Nocentini S |
| author_facet | Bottalico F Travaglini D Fiorentini S Lisa C Nocentini S |
| author_sort | Bottalico F |
| collection | DOAJ |
| container_title | iForest - Biogeosciences and Forestry |
| description | In the Apennine mountains most pure silver fir stands originated from planting and were managed according to the traditional model, with clear cutting and a 100 year rotation. In the last decades in most of these stands there has been a change towards nature conservation and active management has stopped. The aim of this work was (1) to analyse stand dynamics and spontaneous regeneration processes that are taking place with increasing age in even aged fir plantations, and (2) to discuss if these processes can be useful for defining management approaches answering biodiversity conservation aims. The study was carried out in the Vallombrosa Forest (Central Italy). The relationship between fir stand age and structural parameters was analyzed using inventory data. Gap dynamics were monitored between 1983 and 2007 on the basis of remote sensing data. Based on a field survey of a sample of gaps, species composition and density of seedlings and saplings were analysed in relation to gap size and within-gap position. From 1983 to 2007 the number of gaps and their total area increased, following increasing stand age. Significant relationships (p < 0.01) were found between fir stand age and number of trees per hectare (r = -0.30), quadratic mean diameter (r = 0.65) and volume per hectare (r = 0.50). In the fir stands with lower stand density, a layer of trees with DBH < 15 cm had filled in the structure: fifteen different broadleaf species were recorded in this layer, usually mixed with fir. Gap size had an influence on presence of young firs (seedlings and fir < 0.5 m), which were significantly more numerous in gaps < 200 m2, but it had relatively limited influence on species diversity. Within-gap position did not influence regeneration density. Results indicate that a possible management option for gradually transforming even aged fir plantations in the Apennines into mixed, naturally regenerating systems, could be based on the creation of small gaps (< 200 m2) in the canopy cover, simulating the natural dynamics that are taking place in ageing fir plantations. |
| format | Article |
| id | doaj-art-70ce2e8f969f4eb5a02bd8a5c49fcf35 |
| institution | Directory of Open Access Journals |
| issn | 1971-7458 1971-7458 |
| language | English |
| publishDate | 2014-10-01 |
| publisher | Italian Society of Silviculture and Forest Ecology (SISEF) |
| record_format | Article |
| spelling | doaj-art-70ce2e8f969f4eb5a02bd8a5c49fcf352025-08-19T19:16:52ZengItalian Society of Silviculture and Forest Ecology (SISEF)iForest - Biogeosciences and Forestry1971-74581971-74582014-10-017131332310.3832/ifor0985-007985Stand dynamics and natural regeneration in silver fir (Abies alba Mill.) plantations after traditional rotation ageBottalico F0Travaglini D1Fiorentini S2Lisa C3Nocentini S4Department of Agriculture, Food and Forestry Systems, University of Florence, v. S. Bonaventura 13, I-50145, Florence (Italy)Department of Agriculture, Food and Forestry Systems, University of Florence, v. S. Bonaventura 13, I-50145, Florence (Italy)Department of Agriculture, Food and Forestry Systems, University of Florence, v. S. Bonaventura 13, I-50145, Florence (Italy)Department of Agriculture, Food and Forestry Systems, University of Florence, v. S. Bonaventura 13, I-50145, Florence (Italy)Department of Agriculture, Food and Forestry Systems, University of Florence, v. S. Bonaventura 13, I-50145, Florence (Italy)In the Apennine mountains most pure silver fir stands originated from planting and were managed according to the traditional model, with clear cutting and a 100 year rotation. In the last decades in most of these stands there has been a change towards nature conservation and active management has stopped. The aim of this work was (1) to analyse stand dynamics and spontaneous regeneration processes that are taking place with increasing age in even aged fir plantations, and (2) to discuss if these processes can be useful for defining management approaches answering biodiversity conservation aims. The study was carried out in the Vallombrosa Forest (Central Italy). The relationship between fir stand age and structural parameters was analyzed using inventory data. Gap dynamics were monitored between 1983 and 2007 on the basis of remote sensing data. Based on a field survey of a sample of gaps, species composition and density of seedlings and saplings were analysed in relation to gap size and within-gap position. From 1983 to 2007 the number of gaps and their total area increased, following increasing stand age. Significant relationships (p < 0.01) were found between fir stand age and number of trees per hectare (r = -0.30), quadratic mean diameter (r = 0.65) and volume per hectare (r = 0.50). In the fir stands with lower stand density, a layer of trees with DBH < 15 cm had filled in the structure: fifteen different broadleaf species were recorded in this layer, usually mixed with fir. Gap size had an influence on presence of young firs (seedlings and fir < 0.5 m), which were significantly more numerous in gaps < 200 m2, but it had relatively limited influence on species diversity. Within-gap position did not influence regeneration density. Results indicate that a possible management option for gradually transforming even aged fir plantations in the Apennines into mixed, naturally regenerating systems, could be based on the creation of small gaps (< 200 m2) in the canopy cover, simulating the natural dynamics that are taking place in ageing fir plantations.https://iforest.sisef.org/contents/?id=ifor0985-007Abies alba Mill.PlantationsGap DynamicsNatural RegenerationForest Biodiversity |
| spellingShingle | Bottalico F Travaglini D Fiorentini S Lisa C Nocentini S Stand dynamics and natural regeneration in silver fir (Abies alba Mill.) plantations after traditional rotation age Abies alba Mill. Plantations Gap Dynamics Natural Regeneration Forest Biodiversity |
| title | Stand dynamics and natural regeneration in silver fir (Abies alba Mill.) plantations after traditional rotation age |
| title_full | Stand dynamics and natural regeneration in silver fir (Abies alba Mill.) plantations after traditional rotation age |
| title_fullStr | Stand dynamics and natural regeneration in silver fir (Abies alba Mill.) plantations after traditional rotation age |
| title_full_unstemmed | Stand dynamics and natural regeneration in silver fir (Abies alba Mill.) plantations after traditional rotation age |
| title_short | Stand dynamics and natural regeneration in silver fir (Abies alba Mill.) plantations after traditional rotation age |
| title_sort | stand dynamics and natural regeneration in silver fir abies alba mill plantations after traditional rotation age |
| topic | Abies alba Mill. Plantations Gap Dynamics Natural Regeneration Forest Biodiversity |
| url | https://iforest.sisef.org/contents/?id=ifor0985-007 |
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