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Temperate deciduous forest

Temperate deciduous or temperate broad-leaf forests are a variety of temperate forest 'dominated' by deciduous trees that lose their leaves each winter.[1] They represent one of Earth's major biomes, making up 9.69% of global land area.[2] These forests are found in areas with distinct seasonal variation that cycle through warm, moist summers, cold winters, and moderate fall and spring seasons.[3] They are most commonly found in the Northern Hemisphere, with particularly large regions in eastern North America, East Asia, and a large portion of Europe, though smaller regions of temperate deciduous forests are also located in South America. Examples of trees typically growing in the Northern Hemisphere's deciduous forests include oak, maple, basswood, beech and elm, while in the Southern Hemisphere, trees of the genus Nothofagus dominate this type of forest.[1] Temperate deciduous forests provide several unique ecosystem services,[4] including habitats for diverse wildlife, and they face a set of natural and human-induced disturbances that regularly alter their structure.[5]

Old growth beech forest in Slovakia

Geography edit

 
Global distribution of the temperate deciduous forest biome

Located below the northern boreal forests,[6] temperate deciduous forests make up a significant portion of the land between the Tropic of Cancer (23 °N) and latitudes of 50° North, in addition to areas south of the Tropic of Capricorn (23 °S).[7] Canada, the United States, China, and several European countries have the largest land area covered by temperate deciduous forests,[7] with smaller portions present throughout South America, specifically Chile and Argentina.[1]

Climate edit

Temperate conditions refer to the cycle through four distinct seasons that occurs in areas between the polar regions and tropics. In these regions where temperate deciduous forest are found, warm and cold air circulation accounts for the biome's characteristic seasonal variation.[8]

Temperature edit

Temperate deciduous forests experience seasonal temperature fluctuation, with temperatures ranging from -30 °Celsius on the coldest winter days, to 30 °Celsius on the hottest summer days.[3] The average annual temperature tends to be around 10 °Celsius, though this is dependent on the region.[8] Due to shading from the canopy, the microclimate of temperate deciduous forests tends to be about 2.1 °Celsius cooler than the surroundings, whereas winter temperatures are from 0.4 to 0.9 °Celsius warmer within forests as a result of insulation from vegetation strata.[9]

 
Snow-covered, leafless deciduous trees in the winter

Precipitation edit

Annually, temperate deciduous forests experience approximately 750 to 1,500 millimeters of precipitation.[8] As there is no distinct rainy season, precipitation is spread relatively evenly throughout the year.[1] Snow makes up a portion of the precipitation present in temperate deciduous forests in the winter. Tree branches can intercept up to 80% of snowfall, affecting the amount of snow that ultimately reaches and melts on the forest floor.[10]

 
Changes in leaf color of deciduous trees in the fall

Seasonal variation edit

A defining factor of temperate deciduous forests is their leaf loss during the transition from fall to winter, an adaptation that arose as a solution for the low sunlight conditions and bitter cold temperatures.[1] In these forests, winter is a time of dormancy for plants,[8] when broadleaf deciduous trees conserve energy and prevent water loss, and many animal species hibernate or migrate.[1] Preceding winter is fruit-bearing autumn, a time when leaves change color to various shades of red, yellow, and orange as chlorophyll breakdown gives rise to anthocyanin, carotene, and xanthophyl pigments.[1]

Besides the characteristic colorful autumns and leafless winters, temperate deciduous forests have a lengthy growing season during the spring and summer months that tends to last anywhere from 120 to 250 days.[6] Spring in temperate deciduous forests is a period of ground vegetation and seasonal herb growth, a process that starts early in the season before trees have regrown their leaves and when ample sunlight is available. Once a suitable temperature is reached in mid- to late spring, budding and flowering of tall deciduous trees also begins. In the summer, when fully-developed leaves occupy all trees, a moderately-dense canopy creates shade, increasing the humidity of forested areas.[1]

Characteristics edit

Soil edit

Though there is latitudinal variation in soil quality of temperate deciduous forests, with those at central latitudes having a higher soil productivity than those more north or south,[6] soil in this biome is overall highly fertile.[1] The fallen leaves from deciduous trees introduce detritus to the forest floor, increasing levels of nutrients and organic matter in the soil.[1] The high soil productivity of temperate deciduous forests puts them at a high risk of conversion to agricultural land for human use.[7]

Flora edit

 
Temperate deciduous forest canopy gaps and vegetation strata

Temperate deciduous forests are characterized by a variety of temperate deciduous tree species that vary based on region.[6] Most tree species present in temperate deciduous forests are broadleaf trees that lose their leaves in the fall,[8] though some coniferous trees such as pines (Pinus) are present in northern temperate deciduous forests.[6] Europe's temperate deciduous forests are rich with oaks of the genus Quercus, European beech trees (Fagus sylvatica), and hornbeams (Fagus grandifolia), while those in Asia tend to have maples of the genus Acer, a variety of ash trees (Fraxinus), and basswoods (Tilia). Similarly to Asia, North American forests have maples, especially Acer saccharum, and basswoods, in addition to hickories (Carya) and American chestnuts (Castanea dentata).[6] Southern beech (Nothofagus) trees are prevalent in the temperate deciduous forests of South America. Elm trees (Ulmus) and willows (Salix) can also be found dispersed throughout the temperate deciduous forests of the world.[1] While a wide variety of tree species can be found throughout the temperate deciduous forest biome, tree species richness is typically moderate in each individual ecosystem, with only 3 to 4 tree species per square kilometer.[3]

Besides the old-growth trees that, with their domed tree crowns, form a canopy that lets little light filter through, a sub-canopy of shrubs[6] such as mountain laurel and azaleas is present.[8] These other plant species found in the canopy layers below the 35- to 40-meter mature trees are either adapted to low-light conditions or follow a seasonal schedule of growth that allows them to thrive before the formation of the canopy from mid-spring through mid-fall.[6] Mosses and lichens make up significant ground cover, though they are also found growing on trees.[1]

Fauna edit

In addition to characteristic flora, temperate deciduous forests are home to several animal species that rely on the trees and other plant life for shelter and resources, such as squirrels, rabbits, skunks, birds, mountain lions, bobcats, timber wolves, foxes, and black bears.[3] Deer are also present in large populations, though they are clearing rather than true forest animals. Large deer populations have deleterious effects on tree regeneration overall, and grazing also has significant negative effects on the number and kind of herbaceous flowering plants. The continuous increase of deer populations and killing of top carnivores suggests that overgrazing by deer will continue.[11]

Ecosystem services edit

 
Forests maintain water flow in streams

Temperate deciduous forests provide several provisioning, regulating, supporting, and cultural ecosystem services.[4] With a higher biodiversity than boreal forests,[7] temperate deciduous forests maintain their genetic diversity by providing the supporting service of habitat availability for a variety of plants and animal species dependent on shade.[5] These forests play a role in the regulation of air and soil quality by preventing soil erosion and flooding, while also storing carbon in their soil.[5] Provisioning services provided by temperate deciduous forests include access to sources of drinking water,[12] oxygen,[13] food, timber, and biomass.[5] Humans depend on temperate deciduous forests for cultural services, using them as spaces for recreation and spiritual practices.[4]

Disturbances edit

Natural disturbances cause regular renewal of temperate deciduous forests and create a healthy, heterogeneous environment with constantly changing structures and populations.[5] Weather events like snow, storms, and wind can cause varying degrees of change to the structure of forest canopies, creating log habitats for small animals and spaces for less shade-tolerant species to grow where fallen trees once stood.[6] Other abiotic sources of disturbances to temperate deciduous forests include droughts, waterlogging, and fires.[14] Natural surface fire patterns are especially important in pine reproduction.[6] Biotic factors affecting forests take the form of fungal outbreaks in addition to mountain pine beetle and bark beetle infestations.[14] These beetles are particularly prevalent in North America and kill trees by clogging their vascular tissue.[13] Temperate deciduous forests tend to be resilient after minor weather-related disturbances, though major insect infestations, widespread anthropogenic disturbances, and catastrophic weather events can cause century-long succession or even the permanent conversion of the forest into a grassland.[6]

Climate change edit

Rising temperatures and increased dryness in temperate deciduous forests have been noted in recent years as the climate changes.[12] As a result, temperate deciduous forests have been experiencing an earlier onset to spring,[15] as well as a global increase in the frequency and intensity of disturbances.[5] They have been experiencing lower ecological resilience[16] in the face of increasing mega-fires, longer droughts, and severe storms.[12] Damaged wood from increased storm disturbance events provides nesting habitats for beetles, concurrently increasing bark beetle damage.[14] Forest cover decreases with continuous severe disturbances, causing habitat loss and lower biodiversity.[13]

Human use and impact edit

 
A logging truck and trailer transporting lumber from a temperate deciduous forest

Humans rely on wood from temperate deciduous forests for use in the timber industry as well as paper[13] and charcoal production.[17] Logging practices emit high levels of carbon while also causing erosion because fewer tree roots are present to provide soil support.[13] During the European colonization of North America, potash made from tree ashes was exported back to Europe as fertilizer.[18] At this time in history, clearcutting of the original temperate deciduous forests was also performed to make space for agricultural land use, so many forests now present are second-growth.[1] Over 50% of temperate deciduous forests are affected by fragmentation,[2] resulting in small fragments dissected by fields and roads;[citation needed] these islands of green often differ substantially from the original forests[19] and cause challenges for species migration.[6] Seminatural temperate deciduous forests with developed trail systems serve as sites for tourism and recreational activities, such as hiking and hunting.[13] In addition to fragmentation, human use of land adjacent to temperate deciduous forests is associated with pollution that can stunt the growth rate of trees.[6] Invasive species that outcompete native species and alter forest nutrient cycles, such as common buckthorn (Rhamnus cathartica), are also introduced by humans.[20] The introduction of exotic diseases, especially, continues to be a threat to forest trees and, hence, the forest.[21]

Conservation edit

A method for preserving temperate deciduous forests that has been used in the past is fire suppression. The process of preventing fires is associated with the build-up of biomass that, ultimately, increases the intensity of incidental fires. As an alternative, prescribed burning has been put into practice, in which regular, managed fires are administered to forest ecosystems to imitate the natural disturbances that play a significant role in preserving biodiversity.[7] To combat the effects of deforestation, reforestation has been employed.[14]

See also edit

References edit

  1. ^ a b c d e f g h i j k l m Savill, P. S. (2004-01-01), "TEMPERATE AND MEDITERRANEAN FORESTS | Temperate Broadleaved Deciduous Forest", in Burley, Jeffery (ed.), Encyclopedia of Forest Sciences, Oxford: Elsevier, pp. 1398–1403, ISBN 978-0-12-145160-8, retrieved 2023-10-24
  2. ^ a b Wade, Timothy G.; Riitters, Kurt H.; Wickham, James D.; Bruce Jones, K (2003). "Distribution and Causes of Global Forest Fragmentation". Conservation Ecology. 7 (2). doi:10.5751/ES-00530-070207. hdl:10535/2530 – via ResearchGate.
  3. ^ a b c d "The forest biome". ucmp.berkeley.edu. Retrieved 2023-10-24.
  4. ^ a b c Baral, Himlal; Guaruguata, Manuel R.; Keenan, Rodney J. (2016-10-01). "A Proposed Framework for Assessing Ecosystem Goods and Services from Planted Forests". Ecosystem Services. 22: 260–268. doi:10.1016/j.ecoser.2016.10.002 – via ResearchGate.
  5. ^ a b c d e f Thom, Dominik; Seidl, Rupert (2015-05-22). "Natural disturbance impacts on ecosystem services and biodiversity in temperate and boreal forests". Biological Reviews. 91 (3): 760–781. doi:10.1111/brv.12193. ISSN 1464-7931. PMC 4898621. PMID 26010526.
  6. ^ a b c d e f g h i j k l m Vankat, John L. (2002). "Boreal and Temperate Forests" (PDF). Encyclopedia of Life Sciences. Nature Pub. Group: 1–7.
  7. ^ a b c d e Islam, Kazi; Sato, Noriko (2012). "Deforestation, Land Conservation and Illegal Logging in Bangladesh: The Case of the Sal (Shorea robusta) Forests". IForest - Biogeosciences and Forestry (5): 171–178. doi:10.3832/ifor0578-005 – via ResearchGate.
  8. ^ a b c d e f "Temperate Deciduous Forest: Mission: Biomes". earthobservatory.nasa.gov. 2023-10-24. Retrieved 2023-10-24.
  9. ^ Zellweger, Florian; Coomes, David; Lenoir, Jonathan; Depauw, Leen; Maes, Sybryn L.; Wulf, Monika; Kirby, Keith J.; Brunet, Jörg; Kopecký, Martin; Máliš, František; Schmidt, Wolfgang; Heinrichs, Steffi; den Ouden, Jan; Jaroszewicz, Bogdan; Buyse, Gauthier (2019-08-22). Algar, Adam (ed.). "Seasonal drivers of understorey temperature buffering in temperate deciduous forests across Europe". Global Ecology and Biogeography. 28 (12): 1774–1786. Bibcode:2019GloEB..28.1774Z. doi:10.1111/geb.12991. ISSN 1466-822X. PMC 6900070. PMID 31866760.
  10. ^ Huerta, Marlene L.; Molotch, Noah P.; McPhee, James (2019-03-14). "Snowfall interception in a deciduous Nothofagus forest and implications for spatial snowpack distribution". Hydrological Processes. 33 (13): 1818–1834. doi:10.1002/hyp.13439. S2CID 134646035 – via Wiley Online Library.
  11. ^ Latham, R. E., J. Beyea, M. Benner, C.A. Dunn, M. A. Fajvan, R.R. Freed, M. Grund, S. B. Horsley, A. F. Rhoads, and B. P. Shissler. 2005. Managing White-tailed Deer in Forest Habitat from an Ecosystem Perspective: Pennsylvania Case Study. Harrisburg: Audubon Pennsylvania and Pennsylvania Habitat Alliance.
  12. ^ a b c Sommerfeld, Andreas; Senf, Cornelius; Buma, Brian; D'Amato, Anthony W.; Després, Tiphaine; Díaz-Hormazábal, Ignacio; Fraver, Shawn; Frelich, Lee E.; Gutiérrez, Álvaro G.; Hart, Sarah J.; Harvey, Brian J.; He, Hong S.; Hlásny, Tomáš; Holz, Andrés; Kitzberger, Thomas (2018-10-19). "Patterns and drivers of recent disturbances across the temperate forest biome". Nature Communications. 9 (1): 4355. Bibcode:2018NatCo...9.4355S. doi:10.1038/s41467-018-06788-9. ISSN 2041-1723. PMC 6195561. PMID 30341309.
  13. ^ a b c d e f "Timber Resources". education.nationalgeographic.org. 2023-10-19. Retrieved 2023-11-07.
  14. ^ a b c d Schelhaas, Mart-Jan; Nabuurs, Gert-Jan; Schuck, Andreas (2003-10-17). "Natural disturbances in the European forests in the 19th and 20th centuries". Global Change Biology. 9 (11): 1620–1633. Bibcode:2003GCBio...9.1620S. doi:10.1046/j.1365-2486.2003.00684.x. ISSN 1354-1013. S2CID 84148314.
  15. ^ Keenan, Trevor F.; Gray, Josh; Friedl, Mark A.; Toomey, Michael; Bohrer, Gil; Hollinger, David Y.; Munger, J. William; O'Keefe, John; Schmid, Hans Peter; Wing, Ian Sue; Yang, Bai; Richardson, Andrew D. (2014-06-01). "Net carbon uptake has increased through warming-induced changes in temperate forest phenology". Nature Climate Change. 4 (7): 598–604. Bibcode:2014NatCC...4..598K. doi:10.1038/nclimate2253. ISSN 1758-6798.
  16. ^ Seidl, Rupert; Thom, Dominik; Kautz, Markus; Martin-Benito, Dario; Peltoniemi, Mikko; Vacchiano, Giorgio; Wild, Jan; Ascoli, Davide; Petr, Michal; Honkaniemi, Juha; Lexer, Manfred J.; Trotsiuk, Volodymyr; Mairota, Paola; Svoboda, Miroslav; Fabrika, Marek (2017-05-31). "Forest disturbances under climate change". Nature Climate Change. 7 (6): 395–402. Bibcode:2017NatCC...7..395S. doi:10.1038/nclimate3303. ISSN 1758-6798. PMC 5572641. PMID 28861124.
  17. ^ Hughes, J. Donald; Thirgood, J. V. (1982-04-01). "Deforestation, Erosion, and Forest Management in Ancient Greece and Rome". Journal of Forest History. 26 (2): 60–75. doi:10.2307/4004530. ISSN 0094-5080. JSTOR 4004530. S2CID 130391537.
  18. ^ Taylor, Alan (1995). "The Great Change Begins: Settling the Forest of Central New York". New York History. 76 (3): 265–290. ISSN 0146-437X. JSTOR 23181992.
  19. ^ Temple, Stanley A. (1986). "Review of The Fragmented Forest: Island Biogeography Theory and the Preservation of Biotic Diversity". The Journal of Wildlife Management. 50 (1): 176. doi:10.2307/3801514. ISSN 0022-541X. JSTOR 3801514. S2CID 80904482.
  20. ^ Heberling, J. Mason; Fridley, Jason D. (2016-04-08). Laughlin, D. C. (ed.). "Invaders Do Not Require High Resource Levels to Maintain Physiological Advantages in a Temperate Deciduous Forest". Ecology. 97 (4): 874–884. Bibcode:2016Ecol...97..874H. doi:10.1890/15-1659.1. PMID 27220204 – via ESA.
  21. ^ Little, Charles E. (1995). Dying of the Trees: The Pandemic in America's Forests. New York: Penguin Books. ISBN 0670841358.

External links edit

  •   Media related to Temperate deciduous forest at Wikimedia Commons
  • A map of biome distribution (Temperate Deciduous Forest is in dark green)

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Temperate deciduous or temperate broad leaf forests are a variety of temperate forest dominated by deciduous trees that lose their leaves each winter 1 They represent one of Earth s major biomes making up 9 69 of global land area 2 These forests are found in areas with distinct seasonal variation that cycle through warm moist summers cold winters and moderate fall and spring seasons 3 They are most commonly found in the Northern Hemisphere with particularly large regions in eastern North America East Asia and a large portion of Europe though smaller regions of temperate deciduous forests are also located in South America Examples of trees typically growing in the Northern Hemisphere s deciduous forests include oak maple basswood beech and elm while in the Southern Hemisphere trees of the genus Nothofagus dominate this type of forest 1 Temperate deciduous forests provide several unique ecosystem services 4 including habitats for diverse wildlife and they face a set of natural and human induced disturbances that regularly alter their structure 5 Old growth beech forest in Slovakia Contents 1 Geography 2 Climate 2 1 Temperature 2 2 Precipitation 2 3 Seasonal variation 3 Characteristics 3 1 Soil 3 2 Flora 3 3 Fauna 4 Ecosystem services 5 Disturbances 5 1 Climate change 6 Human use and impact 6 1 Conservation 7 See also 8 References 9 External linksGeography edit nbsp Global distribution of the temperate deciduous forest biomeLocated below the northern boreal forests 6 temperate deciduous forests make up a significant portion of the land between the Tropic of Cancer 231 2 displaystyle tfrac 1 2 nbsp N and latitudes of 50 North in addition to areas south of the Tropic of Capricorn 231 2 displaystyle tfrac 1 2 nbsp S 7 Canada the United States China and several European countries have the largest land area covered by temperate deciduous forests 7 with smaller portions present throughout South America specifically Chile and Argentina 1 Climate editTemperate conditions refer to the cycle through four distinct seasons that occurs in areas between the polar regions and tropics In these regions where temperate deciduous forest are found warm and cold air circulation accounts for the biome s characteristic seasonal variation 8 Temperature edit Temperate deciduous forests experience seasonal temperature fluctuation with temperatures ranging from 30 Celsius on the coldest winter days to 30 Celsius on the hottest summer days 3 The average annual temperature tends to be around 10 Celsius though this is dependent on the region 8 Due to shading from the canopy the microclimate of temperate deciduous forests tends to be about 2 1 Celsius cooler than the surroundings whereas winter temperatures are from 0 4 to 0 9 Celsius warmer within forests as a result of insulation from vegetation strata 9 nbsp Snow covered leafless deciduous trees in the winterPrecipitation edit Annually temperate deciduous forests experience approximately 750 to 1 500 millimeters of precipitation 8 As there is no distinct rainy season precipitation is spread relatively evenly throughout the year 1 Snow makes up a portion of the precipitation present in temperate deciduous forests in the winter Tree branches can intercept up to 80 of snowfall affecting the amount of snow that ultimately reaches and melts on the forest floor 10 nbsp Changes in leaf color of deciduous trees in the fallSeasonal variation edit A defining factor of temperate deciduous forests is their leaf loss during the transition from fall to winter an adaptation that arose as a solution for the low sunlight conditions and bitter cold temperatures 1 In these forests winter is a time of dormancy for plants 8 when broadleaf deciduous trees conserve energy and prevent water loss and many animal species hibernate or migrate 1 Preceding winter is fruit bearing autumn a time when leaves change color to various shades of red yellow and orange as chlorophyll breakdown gives rise to anthocyanin carotene and xanthophyl pigments 1 Besides the characteristic colorful autumns and leafless winters temperate deciduous forests have a lengthy growing season during the spring and summer months that tends to last anywhere from 120 to 250 days 6 Spring in temperate deciduous forests is a period of ground vegetation and seasonal herb growth a process that starts early in the season before trees have regrown their leaves and when ample sunlight is available Once a suitable temperature is reached in mid to late spring budding and flowering of tall deciduous trees also begins In the summer when fully developed leaves occupy all trees a moderately dense canopy creates shade increasing the humidity of forested areas 1 Characteristics editSoil edit Though there is latitudinal variation in soil quality of temperate deciduous forests with those at central latitudes having a higher soil productivity than those more north or south 6 soil in this biome is overall highly fertile 1 The fallen leaves from deciduous trees introduce detritus to the forest floor increasing levels of nutrients and organic matter in the soil 1 The high soil productivity of temperate deciduous forests puts them at a high risk of conversion to agricultural land for human use 7 Flora edit nbsp Temperate deciduous forest canopy gaps and vegetation strataTemperate deciduous forests are characterized by a variety of temperate deciduous tree species that vary based on region 6 Most tree species present in temperate deciduous forests are broadleaf trees that lose their leaves in the fall 8 though some coniferous trees such as pines Pinus are present in northern temperate deciduous forests 6 Europe s temperate deciduous forests are rich with oaks of the genus Quercus European beech trees Fagus sylvatica and hornbeams Fagus grandifolia while those in Asia tend to have maples of the genus Acer a variety of ash trees Fraxinus and basswoods Tilia Similarly to Asia North American forests have maples especially Acer saccharum and basswoods in addition to hickories Carya and American chestnuts Castanea dentata 6 Southern beech Nothofagus trees are prevalent in the temperate deciduous forests of South America Elm trees Ulmus and willows Salix can also be found dispersed throughout the temperate deciduous forests of the world 1 While a wide variety of tree species can be found throughout the temperate deciduous forest biome tree species richness is typically moderate in each individual ecosystem with only 3 to 4 tree species per square kilometer 3 Besides the old growth trees that with their domed tree crowns form a canopy that lets little light filter through a sub canopy of shrubs 6 such as mountain laurel and azaleas is present 8 These other plant species found in the canopy layers below the 35 to 40 meter mature trees are either adapted to low light conditions or follow a seasonal schedule of growth that allows them to thrive before the formation of the canopy from mid spring through mid fall 6 Mosses and lichens make up significant ground cover though they are also found growing on trees 1 Fauna edit In addition to characteristic flora temperate deciduous forests are home to several animal species that rely on the trees and other plant life for shelter and resources such as squirrels rabbits skunks birds mountain lions bobcats timber wolves foxes and black bears 3 Deer are also present in large populations though they are clearing rather than true forest animals Large deer populations have deleterious effects on tree regeneration overall and grazing also has significant negative effects on the number and kind of herbaceous flowering plants The continuous increase of deer populations and killing of top carnivores suggests that overgrazing by deer will continue 11 Ecosystem services edit nbsp Forests maintain water flow in streamsTemperate deciduous forests provide several provisioning regulating supporting and cultural ecosystem services 4 With a higher biodiversity than boreal forests 7 temperate deciduous forests maintain their genetic diversity by providing the supporting service of habitat availability for a variety of plants and animal species dependent on shade 5 These forests play a role in the regulation of air and soil quality by preventing soil erosion and flooding while also storing carbon in their soil 5 Provisioning services provided by temperate deciduous forests include access to sources of drinking water 12 oxygen 13 food timber and biomass 5 Humans depend on temperate deciduous forests for cultural services using them as spaces for recreation and spiritual practices 4 Disturbances editNatural disturbances cause regular renewal of temperate deciduous forests and create a healthy heterogeneous environment with constantly changing structures and populations 5 Weather events like snow storms and wind can cause varying degrees of change to the structure of forest canopies creating log habitats for small animals and spaces for less shade tolerant species to grow where fallen trees once stood 6 Other abiotic sources of disturbances to temperate deciduous forests include droughts waterlogging and fires 14 Natural surface fire patterns are especially important in pine reproduction 6 Biotic factors affecting forests take the form of fungal outbreaks in addition to mountain pine beetle and bark beetle infestations 14 These beetles are particularly prevalent in North America and kill trees by clogging their vascular tissue 13 Temperate deciduous forests tend to be resilient after minor weather related disturbances though major insect infestations widespread anthropogenic disturbances and catastrophic weather events can cause century long succession or even the permanent conversion of the forest into a grassland 6 Climate change edit Rising temperatures and increased dryness in temperate deciduous forests have been noted in recent years as the climate changes 12 As a result temperate deciduous forests have been experiencing an earlier onset to spring 15 as well as a global increase in the frequency and intensity of disturbances 5 They have been experiencing lower ecological resilience 16 in the face of increasing mega fires longer droughts and severe storms 12 Damaged wood from increased storm disturbance events provides nesting habitats for beetles concurrently increasing bark beetle damage 14 Forest cover decreases with continuous severe disturbances causing habitat loss and lower biodiversity 13 Human use and impact edit nbsp A logging truck and trailer transporting lumber from a temperate deciduous forestHumans rely on wood from temperate deciduous forests for use in the timber industry as well as paper 13 and charcoal production 17 Logging practices emit high levels of carbon while also causing erosion because fewer tree roots are present to provide soil support 13 During the European colonization of North America potash made from tree ashes was exported back to Europe as fertilizer 18 At this time in history clearcutting of the original temperate deciduous forests was also performed to make space for agricultural land use so many forests now present are second growth 1 Over 50 of temperate deciduous forests are affected by fragmentation 2 resulting in small fragments dissected by fields and roads citation needed these islands of green often differ substantially from the original forests 19 and cause challenges for species migration 6 Seminatural temperate deciduous forests with developed trail systems serve as sites for tourism and recreational activities such as hiking and hunting 13 In addition to fragmentation human use of land adjacent to temperate deciduous forests is associated with pollution that can stunt the growth rate of trees 6 Invasive species that outcompete native species and alter forest nutrient cycles such as common buckthorn Rhamnus cathartica are also introduced by humans 20 The introduction of exotic diseases especially continues to be a threat to forest trees and hence the forest 21 Conservation edit A method for preserving temperate deciduous forests that has been used in the past is fire suppression The process of preventing fires is associated with the build up of biomass that ultimately increases the intensity of incidental fires As an alternative prescribed burning has been put into practice in which regular managed fires are administered to forest ecosystems to imitate the natural disturbances that play a significant role in preserving biodiversity 7 To combat the effects of deforestation reforestation has been employed 14 See also editTemperate coniferous forest Temperate broadleaf and mixed forest International Year of Forests Old growth forest Tropical evergreen forest Tropical deciduous forest Wood pasture hypothesisReferences edit a b c d e f g h i j k l m Savill P S 2004 01 01 TEMPERATE AND MEDITERRANEAN FORESTS Temperate Broadleaved Deciduous Forest in Burley Jeffery ed Encyclopedia of Forest Sciences Oxford Elsevier pp 1398 1403 ISBN 978 0 12 145160 8 retrieved 2023 10 24 a b Wade Timothy G Riitters Kurt H Wickham James D Bruce Jones K 2003 Distribution and Causes of Global Forest Fragmentation Conservation Ecology 7 2 doi 10 5751 ES 00530 070207 hdl 10535 2530 via ResearchGate a b c d The forest biome ucmp berkeley edu Retrieved 2023 10 24 a b c Baral Himlal Guaruguata Manuel R Keenan Rodney J 2016 10 01 A Proposed Framework for Assessing Ecosystem Goods and Services from Planted Forests Ecosystem Services 22 260 268 doi 10 1016 j ecoser 2016 10 002 via ResearchGate a b c d e f Thom Dominik Seidl Rupert 2015 05 22 Natural disturbance impacts on ecosystem services and biodiversity in temperate and boreal forests Biological Reviews 91 3 760 781 doi 10 1111 brv 12193 ISSN 1464 7931 PMC 4898621 PMID 26010526 a b c d e f g h i j k l m Vankat John L 2002 Boreal and Temperate Forests PDF Encyclopedia of Life Sciences Nature Pub Group 1 7 a b c d e Islam Kazi Sato Noriko 2012 Deforestation Land Conservation and Illegal Logging in Bangladesh The Case of the Sal Shorea robusta Forests IForest Biogeosciences and Forestry 5 171 178 doi 10 3832 ifor0578 005 via ResearchGate a b c d e f Temperate Deciduous Forest Mission Biomes earthobservatory nasa gov 2023 10 24 Retrieved 2023 10 24 Zellweger Florian Coomes David Lenoir Jonathan Depauw Leen Maes Sybryn L Wulf Monika Kirby Keith J Brunet Jorg Kopecky Martin Malis Frantisek Schmidt Wolfgang Heinrichs Steffi den Ouden Jan Jaroszewicz Bogdan Buyse Gauthier 2019 08 22 Algar Adam ed Seasonal drivers of understorey temperature buffering in temperate deciduous forests across Europe Global Ecology and Biogeography 28 12 1774 1786 Bibcode 2019GloEB 28 1774Z doi 10 1111 geb 12991 ISSN 1466 822X PMC 6900070 PMID 31866760 Huerta Marlene L Molotch Noah P McPhee James 2019 03 14 Snowfall interception in a deciduous Nothofagus forest and implications for spatial snowpack distribution Hydrological Processes 33 13 1818 1834 doi 10 1002 hyp 13439 S2CID 134646035 via Wiley Online Library Latham R E J Beyea M Benner C A Dunn M A Fajvan R R Freed M Grund S B Horsley A F Rhoads and B P Shissler 2005 Managing White tailed Deer in Forest Habitat from an Ecosystem Perspective Pennsylvania Case Study Harrisburg Audubon Pennsylvania and Pennsylvania Habitat Alliance a b c Sommerfeld Andreas Senf Cornelius Buma Brian D Amato Anthony W Despres Tiphaine Diaz Hormazabal Ignacio Fraver Shawn Frelich Lee E Gutierrez Alvaro G Hart Sarah J Harvey Brian J He Hong S Hlasny Tomas Holz Andres Kitzberger Thomas 2018 10 19 Patterns and drivers of recent disturbances across the temperate forest biome Nature Communications 9 1 4355 Bibcode 2018NatCo 9 4355S doi 10 1038 s41467 018 06788 9 ISSN 2041 1723 PMC 6195561 PMID 30341309 a b c d e f Timber Resources education nationalgeographic org 2023 10 19 Retrieved 2023 11 07 a b c d Schelhaas Mart Jan Nabuurs Gert Jan Schuck Andreas 2003 10 17 Natural disturbances in the European forests in the 19th and 20th 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Management in Ancient Greece and Rome Journal of Forest History 26 2 60 75 doi 10 2307 4004530 ISSN 0094 5080 JSTOR 4004530 S2CID 130391537 Taylor Alan 1995 The Great Change Begins Settling the Forest of Central New York New York History 76 3 265 290 ISSN 0146 437X JSTOR 23181992 Temple Stanley A 1986 Review of The Fragmented Forest Island Biogeography Theory and the Preservation of Biotic Diversity The Journal of Wildlife Management 50 1 176 doi 10 2307 3801514 ISSN 0022 541X JSTOR 3801514 S2CID 80904482 Heberling J Mason Fridley Jason D 2016 04 08 Laughlin D C ed Invaders Do Not Require High Resource Levels to Maintain Physiological Advantages in a Temperate Deciduous Forest Ecology 97 4 874 884 Bibcode 2016Ecol 97 874H doi 10 1890 15 1659 1 PMID 27220204 via ESA Little Charles E 1995 Dying of the Trees The Pandemic in America s Forests New York Penguin Books ISBN 0670841358 External links edit nbsp Media related to Temperate deciduous forest at Wikimedia Commons A map of biome 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