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Synergistic effects of tropical cyclones on forest ecosystems: a global synthesis

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Abstract

Tropical cyclones are large-scale strong wind disturbance events that occur frequently in tropical and subtropical coastal regions and often bring catastrophic physical destruction to ecosystems and economic disruption to societies along their paths. Major tropical cyclones can infrequently move into the midaltitudes and inland areas. Ecologically, tropical cyclones have profound impacts on diversity, structure, succession and function of forest ecosystems. The ecological effects are both dramatic and subtle. The dramatic effects can be visible, noticeable and to some extent predictable over the short-term and relatively well documented in the literature. However, the subtle effects are often invisible, complex and at smaller scale relatively unpredictable in the long-term. Many factors, meteorologic, topographic and biologic, simultaneously interact to influence the complexity of patterns of damage and dynamics of recovery. I present a global synthesis on the effects of tropical cyclones on forest ecosystems and the complexity of forest responses, with particular attention on the response to large hurricanes in the neotropics and the temperate North America, and strong typhoons on the subtropical and temperate forests in the East and Southeast Asia. Four major aspects provide on organizational framework for this synthesis: (1) consistent damage patterns, (2) factors that influence response patterns and predict damage risks, (3) complexity of forest responses and recovery, and (4) the long-term effects. This review reveals highly variable and complex effects of tropical cyclones on forest ecosystems. A deep understanding of the synergistic effects of tropical cyclones is essential for effective forest management and biodiversity conservation.

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References

  • Abrams MD, Scott ML (1989) Disturbance-mediated accelerated succession in 2 Michigan forest types. For Sci 35(1):42–49

    Google Scholar 

  • Altman J, Doležal J, Černý T, Song JS (2013) Forest response to increasing typhoon activity on the Korean peninsula: evidence from oak tree-rings. Glob Change Biol 19(2):498–504

    Google Scholar 

  • Arevalo JR, DeCoster JK, Mcalister SD, Palmer MW (2000) Changes in two Minnesota forests during 14 years following catastrophic windthrow. J Veg Sci 11(6):833–840

    Google Scholar 

  • Baker GT (1915) A windfall problem. For Q 13:317–324

    Google Scholar 

  • Barry P, Doggett C, Anderson R, Swain K (1993) How to evaluate and manage storm-damaged forest areas. United States Forest Service, Southern Region Management Bulletin R8-MB 63

  • Batista WB, Platt WJ (2003) Tree population responses to hurricane disturbance: syndromes in a south-eastern USA old-growth forest. J Ecol 91(2):197–212

    Google Scholar 

  • Beard KH, Vogt KA, Vogt DJ, Scatena FN, Covich A, Siccama TC, Sigurdardottir R, Crowl TA (2005) Structural and functional responses of a subtropical forest to 10 years of periodic hurricanes and droughts. Ecol Monogr 75(3):345–361

    Google Scholar 

  • Beckage B, Ellingwood C (2008) Fire feedbacks with vegetation and alternative stable states. Complex Syst 18:159–173

    Google Scholar 

  • Bellingham PJ, Tanner EVJ, Healey JR (1994) Sprouting of trees in Jamaican montane forests, after a hurricane. J Ecol 82(4):747–758

    Google Scholar 

  • Bellingham PJ, Tanner EVJ, Healey JR (1995) Damage and responsiveness of Jamaican montane tree species after disturbance by a hurricane. Ecology 76(8):2562–2580

    Google Scholar 

  • Bellingham PJ, Kohyama T, Aiba S (1996) The effects of a typhoon on Japanese warm temperate rainforests. Ecol Res 11(3):229–247

    Google Scholar 

  • Bellingham PJ, Tanner EVJ, Healey JR (2005) Hurricane disturbance accelerates invasion by the alien tree Pittosporum undulatum in Jamaican Montane Rain Forests. J Veg Sci 16(6):675–684

    Google Scholar 

  • Boose ER, Foster DR, Fluet M (1994) Hurricane impacts to tropical and temperate forest landscapes. Ecol Monogr 64(4):369–400

    Google Scholar 

  • Boose ER, Chamberlin KE, Foster DR (2001) Landscape and regional impacts of hurricanes in New England. Ecol Monogr 71(1):27–48

    Google Scholar 

  • Boucher DH, Vandermeer JH, Yih K, Zamora N (1990) Contrasting hurricane damage in tropical rain-forest and pine forest. Ecology 71(1):2022–2024

    Google Scholar 

  • Brokaw NVL, Walker LR (1991) Summary of the effects of Caribbean hurricanes on vegetation. Biotropica 23(4):442–447

    Google Scholar 

  • Bromley SW (1939) Factors influencing tree destruction during the New England hurricane. Science 90:15–16

    CAS  PubMed  Google Scholar 

  • Burslem D, Whitmore TC, Brown GC (2000) Short-term effects of cyclone impact and long-term recovery of tropical rain forest on Kolombangara, Solomon Islands. J Ecol 88(6):1063–1078

    Google Scholar 

  • Busing RT, White RD, Harmon ME, White PS (2009) Hurricane disturbance in a temperate deciduous forest: patch dynamics, tree mortality, and coarse woody debris. Plant Ecol 201(1):351–363

    Google Scholar 

  • Canham CD, Loucks OL (1984) Catastrophic windthrow in the presettlement forests of Wisconsin. Ecology 65(3):803–809

    Google Scholar 

  • Canham CD, Papaik MJ, Latty EF (2001) Interspecific variation in susceptibility to windthrow as a function of tree size and storm severity for northern temperate tree species. Can J For Res 31:1–10

    Google Scholar 

  • Conner WH, Mihalia I, Wolfe J (2002) Tree community structure and changes from 1987 to 1999 in three Louisiana and three South Carolina forested wetlands. Wetlands 22(1):58–70

    Google Scholar 

  • Coutts MP, Grace J (1995) Wind and trees. Cambridge University Press, Cambridge

    Google Scholar 

  • Curtis JD (1943) Some observations of wind damage. J For 41(12):877–882

    Google Scholar 

  • DeCoster JK (1996) Impacts of tornados and hurricanes on the community structure and dynamics of North and South Carolina forests. PhD Dissertation. University of North Carolina at Chapel Hill, Chapel Hill, North Carolina

  • Doyle TW (1997) Modeling hurricane effects on mangrove ecosystems. USGS Biological Resources Division USGS FS-095-97

  • Elliott KJ, Hitchcock SL, Krueger L (2002) Vegetation response to large scale disturbance in a southern Appalachian forest: hurricane opal and salvage logging. J Torrey Bot Soc 129(1):48–59

    Google Scholar 

  • Emanuel KA (2005) Increasing destructiveness of tropical cyclones over the past 30 years. Nature 486:686–688

    Google Scholar 

  • Ennos AR (1997) Wind as an ecological factor. Trends Ecol Evol 12(3):108–111

    CAS  PubMed  Google Scholar 

  • Esselstyn JA, Arjun A, Dustin J (2006) Impact of post-typhoon hunting on mariana fruit bats (Pteropus mariannus). Pac Sci 60(4):531–539

    Google Scholar 

  • Everham EM, Brokaw NVL (1996) Forest damage and recovery from catastrophic wind. Bot Rev 62:113–185

    Google Scholar 

  • Fernández DS, Fetcher N (1991) Changes in light availability following hurricane Hugo in a subtropical Montane Forest in Puerto Rico. Biotropica 23(4):393–399

    Google Scholar 

  • Fisk JP, Hurtt GC, Chambers JQ, Zeng H, Dolan KA, Negrón-Juárez RI (2013) The impacts of tropical cyclones on the net carbon balance of eastern US forests (1851–2000). Environ Res Lett 8(4):1–6

    Google Scholar 

  • Foster DR (1988a) Disturbance history, community organization and vegetation dynamics of the old-growth Pisgah forest, southwestern New Hampshire, USA. J Ecol 76(1):105–134

    Google Scholar 

  • Foster DR (1988b) Species and stand response to catastrophic wind in central New England, USA. J Ecol 76(1):135–151

    Google Scholar 

  • Foster DR, Boose ER (1992) Patterns of forest damage resulting from catastrophic wind in central New England, USA. J Ecol 80(1):79–98

    Google Scholar 

  • Fraser AI (1964) Wind tunnel and other related studies on coniferous trees and tree crops. Scott For 18:84–92

    Google Scholar 

  • George LO, Bazzaz FA (1999) The fern understory as an ecological filter: growth and survival of canopy tree seedlings. Ecology 80(3):846–856

    Google Scholar 

  • Goldenberg SB, Landsea CW, Mestas-Nunez AM, Gray WM (2001) The recent increase in Atlantic hurricane activity: causes and implications. Science 293:474–479

    CAS  PubMed  Google Scholar 

  • Greenberg CH, McNab WH (1998) Forest disturbance in hurricane-related downbursts in the Appalachian mountains of North Carolina. For Ecol Manag 104:179–191

    Google Scholar 

  • Gresham CA, Williams TM, Lipscomb DJ (1991) Hurricane Hugo wind damage to southeastern United-States coastal forest tree species. Biotropica 23(4a):420–426

    Google Scholar 

  • Guzman-Grajales SM, Walker LR (1991) Differential seedling responses to litter after Hurricane Hugo in the Luquillo Experimental Forest, Puerto Rico. Biotropica 23(4a):407–413

    Google Scholar 

  • Harcombe PA, Bill CJ, Fulton M, Glitzenstein JS, Marks PL, Elsik IS (2002) Stand dynamics over 18 years in a southern mixed hardwood forest, Texas, USA. J Ecol 90(6):947–957

    Google Scholar 

  • Hibbs DE (1983) 40 years of forest succession in central New England. Ecology 64(6):1394–1401

    Google Scholar 

  • Holland GJ (1993) Ready Reckoner—Chapter 9, Global guide to tropical cyclone forecasting, WMO/TC-No. 560, Report No. TCP-31, World Meteorological Organization, Geneva

  • Hook DD, Buford MA, Williams TM (1991) Impact of hurricane Hugo on the South Carolina coastal plain forest. J Coast Res 8(SI):291–300

    Google Scholar 

  • Horvitz CC, Pascarella JB, McMann S, Freedman A, Hofstetter RH (1998) Functional roles of invasive non-indigenous plants in hurricane affected subtropical hardwood forests. Ecol Appl 8(4):947–974

    Google Scholar 

  • Imbert D, Rousteau A, Labbe P (1998) Hurricanes and biological diversity in tropical forests—the case of Guadeloupe. Acta Oecol 19(3):251–262

    Google Scholar 

  • King HB, Hsia YJ, Lin TC, Wang LJ, Liaw SC (2000) Ecological Significance of typhoon: a case study of Fu-Shan forest ecosystem. http://www.klter.org/EVENTS/Conference00/html/Hen-biau%20King.htm

  • Knutson TR, McBride JL, Chan J, Emanuel K, Holland G, Landsea C, Held I, Kossin JP, Srivastava AK, Masato S (2010) Tropical cyclones and climate change. Nat Geosci 3:157–163

    CAS  Google Scholar 

  • Kulakowski D, Veblen TT (2002) Influences of fire history and topography on the pattern of a severe wind blowdown in a Colorado subalpine forest. J Ecol 90(5):806–819

    Google Scholar 

  • Liu KB, Fearn ML (2000) Reconstruction of prehistoric landfall frequencies of catastrophic hurricanes in northwestern Florida from lake sediment records. Q Res 54(2):238–245

    Google Scholar 

  • Liu KB, Lu H, Shen C (2008) A 1,200-year proxy record of hurricanes and fires from the Gulf of Mexico coast: testing the hypothesis of hurricane–fire interactions. Q Res 69(1):29–41

    Google Scholar 

  • Liu B, Pan L, Xue L (2012) A review of the effect of typhoon on forests. Acta Ecol Sin 32(5):1596–1605

    Google Scholar 

  • Lugo AE (2008) Visible and invisible effects of hurricanes on forest ecosystems: an international review. Austral Ecol 33:368–398

    Google Scholar 

  • Martin TJ, Ogden J (2006) Wind damage and response in New Zealand forests: a review. N Z J Ecol 30(3):295–310

    Google Scholar 

  • McDonald RI, Peet RK, Urban DL (2003) Spatial pattern of Quercus regeneration limitation and Acer rubrum invasion in a piedmont forest. J Veg Sci 14(3):441–450

    Google Scholar 

  • McNulty SG (2002) Hurricane impacts on US forest carbon sequestration. Environ Pollut 116(SI):17–24

    Google Scholar 

  • Merrens EJ, Peart DR (1992) Effects of hurricane damage on individual growth and stand structure in a hardwood forest in New Hampshire, USA. J Ecol 80(4):787–795

    Google Scholar 

  • Michener WK, Blood ER, Bildstein KL, Brinson MM, Gardner LR (1997) Climate change, hurricanes and tropical storms, and rising sea level in coastal wetlands. Ecol Appl 7(3):770–801

    Google Scholar 

  • Mitchell SJ (2012) Wind as a natural disturbance agent in forests: a synthesis. Forestry 86(2):147–157

    Google Scholar 

  • Myers RK, Van Lear DH (1998) Hurricane-fire interactions in coastal forests of the south: a review and hypothesis. For Ecol Manag 103(2–3):265–276

    Google Scholar 

  • Pacala SW, Hurtt GC, Baker D, Peylin P, Houghton RA, Birdsy RA, Heath L, Sundquist ET, Stallard RF, Ciais P, Moorcroft P, Caspersen JP, Shevliakova E, Moore B, Kohlmaier G, Gloor M, Harmon ME, Fan S, Sarmiento JL, Goodale CL, Field CB (2001) Consistent land- and atmosphere-based U.S. carbon sink estimates. Science 292(5525):2316–2320

    CAS  PubMed  Google Scholar 

  • Palmer MW, Mcalister SD, Arevalo JR, DeCoster JK (2000) Changes in the understory during 14 years following catastrophic windthrow in two Minnesota forests. J Veg Sci 11(6):841–854

    Google Scholar 

  • Pascarella JB, Aide TM, Zimmerman JK (2004) Short-term response of secondary forests to hurricane disturbance in Puerto Rico, USA. For Ecol Manag 199(2–3):79–393

    Google Scholar 

  • Peet RK, Christensen NL (1980) Succession—a population process. Vegetatio 43(1–2):131–140

    Google Scholar 

  • Peltola H (1996) Model computations on the wind flow and turning moment for Scots pine along the margins of clearcut areas. For Ecol Manag 83(3):203–215

    Google Scholar 

  • Peterson CJ (2000a) Catastrophic wind damage to North American forests and the potential impact of climate change. Sci Total Environ 262:287–311

    CAS  PubMed  Google Scholar 

  • Peterson CJ (2000b) Damage and recovery of tree species after two different tornadoes in the same old growth forest: a comparison of infrequent wind disturbances. For Ecol Manag 135(1–3):237–252

    Google Scholar 

  • Peterson CJ (2004) Within-stand variation in windthrow in southern boreal forests of Minnesota: is it predictable? Can J For Res 34(2):365–375

    Google Scholar 

  • Peterson CJ, Pickett STA (1991) Treefall and resprouting following catastrophic windthrow in an old-growth hemlock hardwoods forest. For Ecol Manag 42(3–4):205–217

    Google Scholar 

  • Platt WJ, Doren RF, Armentano TV (2000) Effects of hurricane Andrew on stands of slash pine (Pinus elliottii var. densa) in the everglades region of south Florida (USA). Plant Ecol 146(1):43–60

    Google Scholar 

  • Platt WJ, Beckage B, Doren RF, Slater HH (2002) Interactions of large-scale disturbances: prior fire regimes and hurricane mortality of savanna pines. Ecology 83(6):1566–1572

    Google Scholar 

  • Putz FE, Sharitz RR (1991) Hurricane damage to old-growth forest in Congaree Swamp National Monument, South Carolina, USA. Can J For Res 21(12):1765–1770

    Google Scholar 

  • Putz FE, Coley PD, Lu K, Montalvo A, Aiello A (1983) Uprooting and snapping of trees—structural determinants and ecological consequences. Can J For Res 13(5):1011–1020

    Google Scholar 

  • Reice SR (1994) Nonequilibrium determinants of biological community structure. Am Sci 82:424–435

    Google Scholar 

  • Reice SR (2001) The silver lining: the benefits of natural disasters. Princeton University Press, Princeton

    Google Scholar 

  • Rice MD, Lockaby BG, Stanturf JA, Keeland BD (1997) Woody debris decomposition in the Atchafalaya river basin of Louisiana following hurricane disturbance. Soil Sci Soc Am J 61(4):1264–1274

    CAS  Google Scholar 

  • Ruiz GM, Carlton JT (2003) Invasive species: vectors and management strategies. Island Press, Washington, DC, p 518

    Google Scholar 

  • Schumacher S, Bugmann H, Mladenoff DJ (2004) Improving the formulation of tree growth and succession in a spatially explicit landscape model. Ecol Model 180:175–194

    Google Scholar 

  • Sharitz RR, Vaitkus MR, Cook AE. 1992. Hurricane damage to an old-growth floodplain forest in the southeast. In: Proceedings of the seventh biennial southern silvicultural research conference, Mobile, Alabama, USA, pp 203–210

  • Sinton DS, Jones JA, Ohmann JL, Swanson FJ (2000) Windthrow disturbance, forest composition, and structure in the Bull Run basin, Oregon. Ecology 81(9):2539–2556

    Google Scholar 

  • Snitzer JL, Boucher DH, Kyde KL (2005) Response of exotic invasive plant species to forest damage caused by Hurricane Isabel. In: Sellner KG (ed) Hurricane Isabel in perspective. Chesapeake Research Consortium, CRC Publication 05-160, Edgewater, pp 209–214

    Google Scholar 

  • Spiller DA, Agrawal A (2003) Intense disturbance enhances plant susceptibility to herbivory: natural and experimental evidence. Ecology 84(4):890–897

    Google Scholar 

  • Spiller DA, Losos JB, Schoener TW (1998) Impact of a catastrophic hurricane on island populations. Science 281(5377):695–697

    CAS  PubMed  Google Scholar 

  • Spurr SH (1956) Natural restocking of forests following the 1938 hurricane in central New England. Ecology 37:443–445

    Google Scholar 

  • Stanturf JA, Goodrick SL, Outcalt KW (2007) Disturbance and coastal forests: a strategic approach to forest management in hurricane impact zones. For Ecol Manag 250(1–2):119–135

    Google Scholar 

  • Tong C, Yang Y (2007) A review of the impacts of hurricanes and typhoons on forest ecosystems in coastal areas. Acta Ecol Sin 27(12):5337–5344

    Google Scholar 

  • Turner MG, Dale VH, Everham EH (1997) Fires, hurricanes, and volcanoes: comparing large disturbances. Bioscience 47(11):758–768

    Google Scholar 

  • Turner MG, Baker WL, Peterson CJ, Peet RK (1998) Factors influencing succession: lessons from large, infrequent natural disturbances. Ecosystems 1(6):511–523

    Google Scholar 

  • Turton SM (1992) Understorey light environments in a north-east Australian rain-forest before and after a tropical cyclone. J Trop Ecol 8(3):241–252

    Google Scholar 

  • Uriarte M, Canham CD, Thompson J, Zimmerman JK (2004) A neighborhood analysis of tree growth and survival in a hurricane-driven tropical forest. Ecol Monogr 74(4):591–614

    Google Scholar 

  • Vandermeer J, Mallona MA, Boucher D, Yih K, Perfecto I (1995) Three years of ingrowth following catastrophic hurricane damage on the Caribbean coast of Nicaragua—evidence in support of the direct regeneration hypothesis. J Trop Ecol 11(3):465–471

    Google Scholar 

  • Vandermeer J, De La Cerda IG, Boucher D, Perfecto I, Ruiz J (2000) Hurricane disturbance and tropical tree species diversity. Science 290(5492):788–791

    CAS  PubMed  Google Scholar 

  • Veblen TT, Hadley KS, Reid MS, Rebertus AJ (1989) Blowdown and stand development in a Colorado subalpine forest. Can J For Res 19(10):1218–1225

    Google Scholar 

  • Vogel S (1996) Blowing in the wind: storm-resisting features of the design of trees. J Arboric 22(2):92–98

    Google Scholar 

  • Walker LR (1991) Tree damage and recovery from Hurricane Hugo in Luquillo experimental forest, Puerto Rico. Biotropica 23:379–385

    Google Scholar 

  • Walker LR (1995) Timing of post-hurricane tree mortality in Puerto Rico. J Trop Ecol 11(3):315–320

    Google Scholar 

  • Walker LR (2000) Seedling and sapling dynamics in treefall pits in Puerto Rico. Biotropica 32(2):262–275

    Google Scholar 

  • Walker LR, Voltzow J, Ackerman JD, Fernandez DS, Fetcher N (1992) Immediate impact of Hurricane Hugo on a Puerto-Rican rain-forest. Ecology 73(2):691–694

    Google Scholar 

  • Waring RH, Schlesinger WH (1985) Forest ecosystems: concepts and management. Academic Press, Orlando

    Google Scholar 

  • Webb SL (1989) Contrasting windstorm consequences in 2 forests, Itasca State Park, Minnesota. Ecology 70(4):1167–1180

    Google Scholar 

  • Webb SL (1999) Wind disturbances in temperate forests. In: Walker SL (ed) Ecosystems of disturbed ground. Elsevier, Amsterdam

    Google Scholar 

  • Whigham DF, Dickinson MB, Brokaw NVL (1999) Background canopy gap and catastrophic wind distubance in tropical forests. Ecosystems of disturbed ground. Elsevier, Amsterdam, pp 223–252

    Google Scholar 

  • White PS, Jentsch A (2004) Disturbance, succession, and community assembly in terrestrial plant communities. In: Temperton V, Hobbs R, Halle S, Hobbs R (eds) Assembly rules and restoration ecology. Island Press, California, pp 342–366

    Google Scholar 

  • Xi W (2005) Forest response to natural disturbance: changes in structure and diversity on a North Carolina piedmont forest in response to catastrophic wind events. PhD Dissertation. The University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA

  • Xi W, Peet RK (2008a) Hurricane effects on the Piedmont forests: patterns and implications. Ecol Restor 26(4):295–298

    Google Scholar 

  • Xi W, Peet RK (2008b) Long-term forest dynamics and ecological monitoring study in the Duke Forest of the Eastern United States: a synthesis. Chin J Plant Ecol 32(2):299–318

    Google Scholar 

  • Xi W, Peet RK (2011) The complexity of catastrophic wind disturbance on temperate forests. In: Anthony Lupo (ed), Recent hurricane research: climate, dynamics, and societal impacts. Vienna, Austria: In Tech, Pages, pp. 503–534

  • Xi W, Peet RK, Urban DL (2008a) Changes in forest structure, species diversity, and spatial pattern following hurricane disturbance in a Piedmont North Carolina forest, USA. J Plant Ecol 1(1):43–57

    Google Scholar 

  • Xi W, Peet RK, DeCoster JK, Urban DL (2008b) Tree damage risk factors associated with large, infrequent wind disturbances of Carolina forests. Forestry 81(3):317–334

    Google Scholar 

  • Xi W, Chen SH, Chu YC (2012a) The synergistic effects of typhoon and earthquake disturbances on forest ecosystems: lessons from Taiwan for ecological restoration and sustainable management. Tree For Sci Biotechnol 6(1):27–33

    Google Scholar 

  • Xi W, Peet RK, Urban DL (2012b) The impacts of a large hurricane on understory sapling dynamics and diversity in North Carolina Piedmont forests, USA. Tree For Sci Biotechnol 6(1):51–59

    Google Scholar 

  • Xu XN, Hirata E, Enoki T, Tokashiki Y (2004) Leaf litter decomposition and nutrient dynamics in a subtropical forest after typhoon disturbance. Plant Ecol 173(2):161–170

    Google Scholar 

  • Zeng HC, Chambers JQ, Negron-Juarez RI, Hurtt GC, Baker DB, Powell MD (2009) Impacts of tropical cyclones on U.S. forest tree mortality and carbon flux from 1851 to 2000. Proc Natl Acad Sci 106(19):7888–7892

    PubMed Central  CAS  PubMed  Google Scholar 

  • Zhu JJ, Liu Z, Takeshi M, Gonda Y (2004) Effects of wind on trees. J For Res 15(2):153–160

    Google Scholar 

  • Zimmerman JK, Aide TM, Rosario M, Serrano M, Herrera L (1995) Effects of land management and a recent hurricane on forest structure and composition in the Luquillo Experimental Forest, Puerto Rico. For Ecol Manag 77(1–3):65–76

    Google Scholar 

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Acknowledgments

The author gratefully acknowledges the support of K.C.Wong Education Foundation. This work was supported by National Natural Science Foundation of China (31370483) and a University Research Award from Texas A&M University-Kingsville. This work was supported by National Natural Science Foundation of China (31370483), K.C.Wong Education Foundation and Texas A&M University-Kingsville.

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Correspondence to Weimin Xi.

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Project funding: This work was supported by National Natural Science Foundation of China (31370483) and a University Research Award from Texas A&M University-Kingsville.

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Corresponding editor: Chai Ruihai

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Xi, W. Synergistic effects of tropical cyclones on forest ecosystems: a global synthesis. J. For. Res. 26, 1–21 (2015). https://doi.org/10.1007/s11676-015-0018-z

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