[1]

Rapport DJ, Costanza R, McMichael AJ. 1998. Assessing ecosystem health. Trends in Ecology & Evolution 13:397−402

doi: 10.1016/S0169-5347(98)01449-9
[2]

Chazdon RL. 2008. Beyond deforestation: restoring forest and ecosystem services on degraded lands. Science 320:1458−60

doi: 10.1126/science.1155365
[3]

Henderson JP, Grissino-Mayer HD. 2009. Climate-tree growth relationships of longleaf pine (Pinus Palustris Mill.) in the Southeastern Coastal Plain, USA. Dendrochronologia 27:31−43

doi: 10.1016/j.dendro.2008.08.001
[4]

Pessin LJ. 1938. Effects of soil moisture on the rate of growth of longleaf and slash pine seedlings. Plant Physiology 13:179−89

doi: 10.1104/pp.13.1.179
[5]

Peet RK, Allard DJ. 1993. Longleaf pine vegetation of the southern Atlantic and eastern Gulf coast regions: a preliminary classification. Proceedings of the Tall Timbers Fire Ecology Conference, Tallahassee, Florida 1993. 18: 45−81. http://labs.bio.unc.edu/Peet/pubs/TTFEC-1993.pdf

[6]

Patterson TW, Knapp PA. 2016. Observations on a rare old-growth montane longleaf pine forest in central North Carolina, USA. Natural Areas Journal 36:153−61

doi: 10.3375/043.036.0206
[7]

Chapman HH. 2013. Is the longleaf type a climax? Fire Ecology 9:2−7

doi: 10.1007/BF03400625
[8]

Harcombe PA, Glitzenstein JS, Knox RG, Orzell SL, Bridges EL. 1993. Vegetation of longleaf pine region of the west gulf coastal plain. Proceedings of the Tall Timbers Fire Ecology Conference. Tallahassee, Florida 1993, 18: 83−104. https://talltimbers.org/wp-content/uploads/2018/09/83-Harcombeetal1993_op.pdf

[9]

Landers JL, Van Lear DH, Boyer WD. 1995. The longleaf pine forests of the southeast: requiem or renaissance. Journal of Forestry 93:39−44

doi: 10.1093/jof/93.11.38
[10]

Drewa PB, Platt WJ, Moser EB. 2002. Community structure along elevation gradients in headwater regions of longleaf pine savannas. Plant Ecology 160:61−78

doi: 10.1023/A:1015875828742
[11]

Oswalt SN, Smith WB, Miles PD, Pugh SA. 2012. Forest Resources of the United States, 2012: a technical document supporting the Forest Service 2010 update of the RPA Assessment. USDA Forest Service General Technical Report WO-92. https://www.fs.usda.gov/research/treesearch/47322

[12]

Christensen NL. 1993. The effects of fire on nutrient cycles in longleaf pine ecosystems. Proceedings of the Tall Timbers Fire Ecology Conference. Tallahassee, Florida 1993, 18: 205−14. https://talltimbers.org/wp-content/uploads/2018/09/205-Christensen1993_op.pdf

[13]

Outcalt KW. 1993. Southern pines performance on sandhill sites in Georgia and South Carolina. Southern Journal of Applied Forestry 17:100−02

doi: 10.1093/sjaf/17.2.100
[14]

Stambaugh MC, Sparks JC, Abadir ER. 2014. Historical pyrogeography of Texas, USA. Fire Ecology 10:72−89

doi: 10.4996/fireecology.1003072
[15]

Brockway DG, Lewis CE. 1997. Long-term effects of dormant-season prescribed fire on plant community diversity, structure and productivity in a longleaf pine wiregrass ecosystem. Forest Ecology and Management 96:167−83

doi: 10.1016/S0378-1127(96)03939-4
[16]

Rosenberg N, Trajtenberg MA. 2001. A general-purpose technology at work: the Corliss steam engine in the late19th century US. The Journal of Economic History 64:61−99

doi: 10.1017/S0022050704002608
[17]

Frost CC. 1993. Four centuries of changing landscape patterns in the longleaf pine ecosystem. Proceedings of the Tall Timbers Fire Ecology Conference. Tallahassee, Florida. 18: 17−23. https://talltimbers.org/wp-content/uploads/2018/09/17-Frost1993_op.pdf

[18]

Eviner VT, Hawkes CV. 2008. Embracing variability in the application of plant–soil interactions to the restoration of communities and ecosystems. Restoration Ecology 16:713−29

doi: 10.1111/j.1526-100X.2008.00482.x
[19]

Matson GC. 1916. The Catahoula Sandstone. Report. Professional Paper 98, USGS published series, Mississippi. pp 209−26. https://doi.org/10.3133/pp98M

[20]

United States Climate Data. August 24, 2017. https://www.usclimatedata.com/climate/united-states/us

[21]

USDA Forest Service. 1929. Volume, yield, and stand tables for second-growth southern pines. Handbook 50. U.S. Department of Agriculture, Washington, DC. 202 pp. https://doi.org/10.5962/bhl.title.65546

[22]

Klute A. 1986. Methods of soil analysis: part 1physical and mineralogical methods. Madison, Wisconsin: American Society of Agronomy, Inc. Soil Science Society of America, Inc. xxviii, 1188 pp. http://doi.org/10.2136/sssabookser5.1.2ed

[23]

Soil Science Division Staff. 1993. Soil survey manual. United States Department of Agriculture Handbook No. 18. 639 pp. https://www.nrcs.usda.gov/sites/default/files/2022-09/SSM-intro.pdf

[24]

United States Department of Agriculture-Natural Resource Conservation Services (USDA- NRCS). 1992. Soil-woodland correlation field data sheet (ECS-005) for longleaf pine on selected Letney, Stringtown, and Tehran soils. Retrieved from https://esi.sc.egov.usda.gov/ESIForestland/.

[25]

Saxton KE, Rawls WJ. 2006. Soil water characte1istic estimates by texture and organic matter for hydrologic solutions. Soil Science Society America Journal 70:1569−78

doi: 10.2136/sssaj2005.0117
[26]

Bolioluzzi EC, Tessier D, Rheinheimer DS, Julien JL. 2006. The cation exchange capacity of a sandy soil in southern Brazil: an estimation of permanent and pH-dependent charges. European Journal of Soil Science 57:356−64

doi: 10.1111/j.1365-2389.2005.00746.x
[27]

McWhorter IV. 2005. Effects of fire exclusion on the longleaf pine ecosystem of upland island wilderness. Thesis. Stephen F. Austin State University, Nacogdoches, Texas.

[28]

Farrish KW, Doolittle IA, Gambel EE. 1990. Loamy substrata and forest productivity of sandy glacial drift soils in Michigan. Canadian Journal of Soil Science 70:181−87

doi: 10.4141/cjss90-020
[29]

Hunter LR, Gibson AR. 1984. Predicting Pinus radiata site index from environmental variables. New Zeeland Journal Forestry Science 14:53−64

[30]

Corona P, Scotti R, Tarchiani N. 1998. Relationship between environmental factors and site index in Douglas-fir plantations in central Italy. Forest Ecology and Management 110:195−207

doi: 10.1016/S0378-1127(98)00281-3
[31]

Coile TS. 1935. Relation of site index for shortleaf pine to certain physical prope1iies of the soil. Journal of Forestry 33:726−30

doi: 10.1093/jof/33.8.726
[32]

Dexter AR. 2004. Soil physical quality: Part I. Theory, effects of soil texture, density, and organic matter, and effects on root growth. Geoderma201−14

doi: 10.1016/j.geoderma.2003.09.004
[33]

Fox TR, Lee Allen H, Albaugh TJ, Rubilar R, Carlson CA. 2007. Tree nutrition and forest fertilization of pine plantations in the southern United States. Southern Journal of Applied Forestry 31:5−11

doi: 10.1093/sjaf/31.1.5
[34]

Mead DJ, Gadgil RL. 1978. Fertilizer use in established radiate pine stands in New Zealand. New Zeeland Journal Forestry Science 8:105−34