Difference between revisions of "Pinus echinata"

From Coastal Plain Plants Wiki
Jump to: navigation, search
(Fire ecology)
 
(10 intermediate revisions by 3 users not shown)
Line 1: Line 1:
 
{{italic title}}
 
{{italic title}}
Common names: Shortleaf pine <ref name= "USDA"> [https://plants.usda.gov/core/profile?symbol=CEAM USDA Plant Database]</ref>
+
Common names: shortleaf pine,<ref name= "USDA"> [https://plants.usda.gov/core/profile?symbol=CEAM USDA Plant Database]</ref> rosemary pine, yellow pine<ref name=weakley>Weakley, A.S. 2020. Flora of the Southeastern United States. Edition of 20 October 2020. University of North Carolina at Chapel Hill, Chapel Hill, North Carolina.</ref>  
<!-- Get the taxonomy information from the NRCS Plants database -->
+
<!-- Get the taxonomy information from the NRCS Plants database -->  
 
{{taxobox
 
{{taxobox
 
| name = Pinus echinata
 
| name = Pinus echinata
Line 19: Line 19:
 
}}
 
}}
 
==Taxonomic Notes==
 
==Taxonomic Notes==
Synonym: ''P. mitis'' (michaux)
+
Synonym: ''Pinus mitis'' Michaux<ref name=weakley/>
  
Variety: none
+
Varieties: none<ref name=weakley/>
  
 
==Description==  
 
==Description==  
Line 31: Line 31:
  
 
==Ecology==
 
==Ecology==
===Habitat===  
+
===Habitat=== <!--Natural communities, human disturbed habitats, topography, hydrology, soils, light, fire regime requirements for removal of competition, etc.-->
 
''P. echinata'' has adapted to coarse, fina and medium textured soils. It has a medium drought tolerance. It has a high intolerance to shade.<ref name= "USDA"> [https://plants.usda.gov/core/profile?symbol=CEAM USDA Plant Database]</ref>
 
''P. echinata'' has adapted to coarse, fina and medium textured soils. It has a medium drought tolerance. It has a high intolerance to shade.<ref name= "USDA"> [https://plants.usda.gov/core/profile?symbol=CEAM USDA Plant Database]</ref>
  
Ideal habitats include dry rocky ridges, slopes, sandhills, old fields, forests, and generally xeric sites but can occur in mesic to wet sites.<ref name= "Weakley"> Weakley, A. S. (2015). Flora of the Southern and Mid-Atlantic States. Chapel Hill, NC, University of North Carolina Herbarium.</ref>
+
Ideal habitats include dry rocky ridges, slopes, sandhills, old fields, forests, and generally xeric sites but can occur in mesic to wet sites.<ref name=weakley/>  
  
 
Longleaf pine regions are ideal environments for the ''P. echinata'' of shortleaf pine, where they share a dominance over the area.<ref name= "cipollini''>Cipollini, M. L., et al. (2012). "Herbaceous plants and grasses in a mountain longleaf pine forest  undergoing restoration: a survey and comparative study." Southeastern Naturalist 11: 637-668.</ref> Much of these ecosystems thrive with winter burns, particularly in old-fields.<ref name= "clewell" >Clewell, A. F. (2014). "Forest development 44 years after fire exclusion in formerly annually burned oldfield pine woodland, Florida." Castanea 79: 147-167.</ref>
 
Longleaf pine regions are ideal environments for the ''P. echinata'' of shortleaf pine, where they share a dominance over the area.<ref name= "cipollini''>Cipollini, M. L., et al. (2012). "Herbaceous plants and grasses in a mountain longleaf pine forest  undergoing restoration: a survey and comparative study." Southeastern Naturalist 11: 637-668.</ref> Much of these ecosystems thrive with winter burns, particularly in old-fields.<ref name= "clewell" >Clewell, A. F. (2014). "Forest development 44 years after fire exclusion in formerly annually burned oldfield pine woodland, Florida." Castanea 79: 147-167.</ref>
  
 
Specimens of the shortleaf pine have been collected from mixed woodland, open pine-oak second growth woods, upland mixed woods along rivers, long-leaf pine restoration sites, and deciduous woods <ref name = "FSU herbarium"> URL: http://herbarium.bio.fsu.edu. Last accessed: June 2018. Collectors: R.K. Godfrey, Richard S. Mitchell,Patricia Elliot, D. B. Ward, Loran C. Anderson, R. F. Doren, R. Komarek, William Platt. States and counties: Florida (Jackson, Okaloosa, Liberty, Leon, Jackson, Escambia, Gadsden, Santa Rosa, Madison, Wakulla, Grady), Georgia (Thomas)</ref>
 
Specimens of the shortleaf pine have been collected from mixed woodland, open pine-oak second growth woods, upland mixed woods along rivers, long-leaf pine restoration sites, and deciduous woods <ref name = "FSU herbarium"> URL: http://herbarium.bio.fsu.edu. Last accessed: June 2018. Collectors: R.K. Godfrey, Richard S. Mitchell,Patricia Elliot, D. B. Ward, Loran C. Anderson, R. F. Doren, R. Komarek, William Platt. States and counties: Florida (Jackson, Okaloosa, Liberty, Leon, Jackson, Escambia, Gadsden, Santa Rosa, Madison, Wakulla, Grady), Georgia (Thomas)</ref>
<!--Natural communities, human disturbed habitats, topography, hydrology, soils, light, fire regime requirements for removal of competition, etc.-->
 
  
 
''Pinus echinata'' is frequent and abundant in the Clayhill Longleaf Woodlands community type as described in Carr et al. (2010).<ref>Carr, S.C., K.M. Robertson, and R.K. Peet. 2010. A vegetation classification of fire-dependent pinelands of Florida. Castanea 75:153-189.</ref>
 
''Pinus echinata'' is frequent and abundant in the Clayhill Longleaf Woodlands community type as described in Carr et al. (2010).<ref>Carr, S.C., K.M. Robertson, and R.K. Peet. 2010. A vegetation classification of fire-dependent pinelands of Florida. Castanea 75:153-189.</ref>
  
===Phenology===  
+
===Phenology=== <!--Timing off flowering, fruiting, seed dispersal, and environmental triggers.  Cite PanFlora website if appropriate: http://www.gilnelson.com/PanFlora/ -->
 
''P. echinata'' has been observed flowering in March.<ref name= "Pan Flora"> Nelson, G. PanFlora: Plant data for the eastern United States with emphasis on the Southeastern Coastal Plains, Florida, and the Florida Panhandle. www.gilnelson.com/PanFlora/ Accessed: 24 MAY 2018</ref>
 
''P. echinata'' has been observed flowering in March.<ref name= "Pan Flora"> Nelson, G. PanFlora: Plant data for the eastern United States with emphasis on the Southeastern Coastal Plains, Florida, and the Florida Panhandle. www.gilnelson.com/PanFlora/ Accessed: 24 MAY 2018</ref>
  
Seedig begins in summer and will last through fall.<ref name= "USDA"> [https://plants.usda.gov/core/profile?symbol=CEAM USDA Plant Database]</ref>
+
Seeding begins in summer and will last through fall.<ref name= "USDA"> [https://plants.usda.gov/core/profile?symbol=CEAM USDA Plant Database]</ref>
<!--Timing off flowering, fruiting, seed dispersal, and environmental triggers.  Cite PanFlora website if appropriate: http://www.gilnelson.com/PanFlora/ -->
 
 
<!--===Seed dispersal===-->
 
<!--===Seed dispersal===-->
 
<!--===Seed bank and germination===-->
 
<!--===Seed bank and germination===-->
  
===Fire ecology===
+
===Fire ecology===<!--Fire tolerance, fire dependence, adaptive fire responses-->
''P. echinata'' has an extremely high tolerance for fire.<ref name= "USDA"> [https://plants.usda.gov/core/profile?symbol=CEAM USDA Plant Database]</ref> Instances of fire or prescribed burning will promote regeneration of the shortleaf pine.<ref name= "Elliot">Elliott, K. J. and J. M. Vose (2005). "Effects of understory prescribed burning on shortleaf pine (Pinus echinata Mill.)/mixed-hardwood forests." Journal of the Torrey Botanical Society 132: 236-251.</ref>. COntinued prescribed burning in a region can make for ideal habitats for shortleaf pine forests instead of hardwoods being predominate in the region.<ref name= "garren">Garren, K. H. (1943). "Effects of fire on vegetation of the southeastern United States." Botanical Review 9(9): 617-654.</ref>
+
''P. echinata'' has an extremely high tolerance for fire<ref name= "USDA"> [https://plants.usda.gov/core/profile?symbol=CEAM USDA Plant Database]</ref> as evidenced by populations known to persist through repeated annual burns.<ref>Robertson, K.M. Unpublished data collected from Pebble Hill Fire Plots, Pebble Hill Plantation, Thomasville, Georgia.</ref><ref>Glitzenstein, J. S., D. R. Streng, R. E. Masters, K. M. Robertson and S. M. Hermann 2012. Fire-frequency effects on vegetation in north Florida pinelands: Another look at the long-term Stoddard Fire Research Plots at Tall Timbers Research Station. Forest Ecology and Management 264: 197-209.</ref><ref>Platt, W.J., R. Carter, G. Nelson, W. Baker, S. Hermann, J. Kane, L. Anderson, M. Smith, K. Robertson. 2021. Unpublished species list of Wade Tract old-growth longleaf pine savanna, Thomasville, Georgia.</ref> Instances of fire or prescribed burning will promote regeneration of the shortleaf pine.<ref name= "Elliot">Elliott, K. J. and J. M. Vose (2005). "Effects of understory prescribed burning on shortleaf pine (Pinus echinata Mill.)/mixed-hardwood forests." Journal of the Torrey Botanical Society 132: 236-251.</ref>. Continued prescribed burning in a region can make for ideal habitats for shortleaf pine forests instead of hardwoods being predominate in the region.<ref name= "garren">Garren, K. H. (1943). "Effects of fire on vegetation of the southeastern United States." Botanical Review 9(9): 617-654.</ref>
<!--Fire tolerance, fire dependence, adaptive fire responses-->
 
  
===Pollination and use by animals===  
+
<!--===Pollination===-->
 +
===Herbivory and toxicology===<!--Common herbivores, granivory, insect hosting, poisonous chemicals, allelopathy, etc-->
 
''Pinus echinata'' has been observed to host plant bugs from the Miridae family such as ''Phoenicocoris rostratus'', ''P. heidemanni'', ''P. laetus'', and ''P. tibialis''.<ref>Discoverlife.org [https://www.discoverlife.org/20/q?search=Bidens+albaDiscoverlife.org|Discoverlife.org]</ref> Shortleaf pines can provide habitats for the red-cockaded woodpecker; efforts at restoring the woodpeckers population in these environments include reintroduction of fire and constructing stands for the birds nesting. These prescribed burned shortleaf pine woods also provide a greater increase in small mammals in the region.<ref name= "USDA workshop" > The Role of Fire in Nongame Wildlife Management and Community Restoration: Traditional Uses and New Directions, Proceedings of a Special Workshop, 2000 </ref>
 
''Pinus echinata'' has been observed to host plant bugs from the Miridae family such as ''Phoenicocoris rostratus'', ''P. heidemanni'', ''P. laetus'', and ''P. tibialis''.<ref>Discoverlife.org [https://www.discoverlife.org/20/q?search=Bidens+albaDiscoverlife.org|Discoverlife.org]</ref> Shortleaf pines can provide habitats for the red-cockaded woodpecker; efforts at restoring the woodpeckers population in these environments include reintroduction of fire and constructing stands for the birds nesting. These prescribed burned shortleaf pine woods also provide a greater increase in small mammals in the region.<ref name= "USDA workshop" > The Role of Fire in Nongame Wildlife Management and Community Restoration: Traditional Uses and New Directions, Proceedings of a Special Workshop, 2000 </ref>
<!--Herbivory, granivory, insect hosting, etc.-->
 
 
<!--==Diseases and parasites==-->
 
<!--==Diseases and parasites==-->
  

Latest revision as of 09:51, 20 June 2023

Common names: shortleaf pine,[1] rosemary pine, yellow pine[2]

Pinus echinata
Pinus echinata SEF.jpg
Photo by John Gwaltney hosted at Southeastern Flora.com
Scientific classification
Kingdom: Plantae
Division: Magnoliophyta - Flowering plants
Class: Magnoliopsida - Dicots
Order: Pinales
Family: Pinaceae
Genus: Pinus
Species: P. echinata
Binomial name
Pinus echinata
Mill.
PINU ECHI DIST.JPG
Natural range of Pinus echinata from USDA NRCS Plants Database.

Taxonomic Notes

Synonym: Pinus mitis Michaux[2]

Varieties: none[2]

Description

P. echinata is a perennial tree of the Pinaceae family that is native to North America.[1]

Distribution

Native to the southeastern Unites States, p. echinata is found as far north as New York and as far west as Texas and Oklahoma.[1]

Ecology

Habitat

P. echinata has adapted to coarse, fina and medium textured soils. It has a medium drought tolerance. It has a high intolerance to shade.[1]

Ideal habitats include dry rocky ridges, slopes, sandhills, old fields, forests, and generally xeric sites but can occur in mesic to wet sites.[2]

Longleaf pine regions are ideal environments for the P. echinata of shortleaf pine, where they share a dominance over the area.[3] Much of these ecosystems thrive with winter burns, particularly in old-fields.[4]

Specimens of the shortleaf pine have been collected from mixed woodland, open pine-oak second growth woods, upland mixed woods along rivers, long-leaf pine restoration sites, and deciduous woods [5]

Pinus echinata is frequent and abundant in the Clayhill Longleaf Woodlands community type as described in Carr et al. (2010).[6]

Phenology

P. echinata has been observed flowering in March.[7]

Seeding begins in summer and will last through fall.[1]

Fire ecology

P. echinata has an extremely high tolerance for fire[1] as evidenced by populations known to persist through repeated annual burns.[8][9][10] Instances of fire or prescribed burning will promote regeneration of the shortleaf pine.[11]. Continued prescribed burning in a region can make for ideal habitats for shortleaf pine forests instead of hardwoods being predominate in the region.[12]

Herbivory and toxicology

Pinus echinata has been observed to host plant bugs from the Miridae family such as Phoenicocoris rostratus, P. heidemanni, P. laetus, and P. tibialis.[13] Shortleaf pines can provide habitats for the red-cockaded woodpecker; efforts at restoring the woodpeckers population in these environments include reintroduction of fire and constructing stands for the birds nesting. These prescribed burned shortleaf pine woods also provide a greater increase in small mammals in the region.[14]

Conservation, cultivation, and restoration

Pinus echinata is considered endangered in Illinois[1]

Cultural use

Photo Gallery

References and notes

  1. 1.0 1.1 1.2 1.3 1.4 1.5 1.6 USDA Plant Database
  2. 2.0 2.1 2.2 2.3 Weakley, A.S. 2020. Flora of the Southeastern United States. Edition of 20 October 2020. University of North Carolina at Chapel Hill, Chapel Hill, North Carolina.
  3. Cipollini, M. L., et al. (2012). "Herbaceous plants and grasses in a mountain longleaf pine forest undergoing restoration: a survey and comparative study." Southeastern Naturalist 11: 637-668.
  4. Clewell, A. F. (2014). "Forest development 44 years after fire exclusion in formerly annually burned oldfield pine woodland, Florida." Castanea 79: 147-167.
  5. URL: http://herbarium.bio.fsu.edu. Last accessed: June 2018. Collectors: R.K. Godfrey, Richard S. Mitchell,Patricia Elliot, D. B. Ward, Loran C. Anderson, R. F. Doren, R. Komarek, William Platt. States and counties: Florida (Jackson, Okaloosa, Liberty, Leon, Jackson, Escambia, Gadsden, Santa Rosa, Madison, Wakulla, Grady), Georgia (Thomas)
  6. Carr, S.C., K.M. Robertson, and R.K. Peet. 2010. A vegetation classification of fire-dependent pinelands of Florida. Castanea 75:153-189.
  7. Nelson, G. PanFlora: Plant data for the eastern United States with emphasis on the Southeastern Coastal Plains, Florida, and the Florida Panhandle. www.gilnelson.com/PanFlora/ Accessed: 24 MAY 2018
  8. Robertson, K.M. Unpublished data collected from Pebble Hill Fire Plots, Pebble Hill Plantation, Thomasville, Georgia.
  9. Glitzenstein, J. S., D. R. Streng, R. E. Masters, K. M. Robertson and S. M. Hermann 2012. Fire-frequency effects on vegetation in north Florida pinelands: Another look at the long-term Stoddard Fire Research Plots at Tall Timbers Research Station. Forest Ecology and Management 264: 197-209.
  10. Platt, W.J., R. Carter, G. Nelson, W. Baker, S. Hermann, J. Kane, L. Anderson, M. Smith, K. Robertson. 2021. Unpublished species list of Wade Tract old-growth longleaf pine savanna, Thomasville, Georgia.
  11. Elliott, K. J. and J. M. Vose (2005). "Effects of understory prescribed burning on shortleaf pine (Pinus echinata Mill.)/mixed-hardwood forests." Journal of the Torrey Botanical Society 132: 236-251.
  12. Garren, K. H. (1943). "Effects of fire on vegetation of the southeastern United States." Botanical Review 9(9): 617-654.
  13. Discoverlife.org [1]
  14. The Role of Fire in Nongame Wildlife Management and Community Restoration: Traditional Uses and New Directions, Proceedings of a Special Workshop, 2000