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Research ArticleResearch Article

Graminification and Reversal of Mesophication in a Restored Oak Woodland

Alicia L. Arrington-Thomas and John Stephen Brewer
Ecological Restoration, June 2023, 41 (2-3) 109-118; DOI: https://doi.org/10.3368/er.41.2-3.109
Alicia L. Arrington-Thomas
Department of Biology, University of Mississippi, University, MS.
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John Stephen Brewer
Department of Biology, University of Mississippi, University, MS, 38677, .
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  • For correspondence: [email protected]
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References

  1. ↵
    1. Alexander H.D.,
    2. C. Siegert,
    3. J.S. Brewer,
    4. J. Kreye,
    5. M.A. Lashley,
    6. J.K. McDaniel
    et al. 2021. Mesophication of oak landscapes: evidence, knowledge gaps, and future research. Bioscience 71:531–542.
    OpenUrl
  2. ↵
    1. Anderson M.J.
    2001. A new method for non-parametric multivariate analysis of variance. Austral Ecology 26:32–46.
    OpenUrl
    1. Arrington, A.T.
    Unpublished data associated with Ph.D. dissertation, University of Mississippi.
  3. ↵
    1. Arthur, M.A.,
    2. R.D. Paratley and
    3. B.A. Blankenship
    . 1998. Single and repeated fires affect survival and regeneration of woody and herbaceous species in an oak-pine forest. The Journal of the Torrey Botanical Society 125:225–236.
    OpenUrl
    1. Brewer, J.S.
    2001. Current and presettlement tree species composition of some upland forests in northern Mississippi. Journal of the Torrey Botanical Society 128:332–349.
    OpenUrl
  4. ↵
    1. Brewer, J.S.
    2016. Natural canopy damage and the ecological restoration of fire-indicative groundcover vegetation in an oak-pine forest. Fire Ecology 12:205–226.
    OpenUrl
  5. ↵
    1. Brewer, J.S. and
    2. C. Rogers
    . 2006. Relationships between prescribed burning and wildfire occurrence and intensity in pine-hardwood forests in north Mississippi, USA. International Journal of Wildland Fire 15:203–211.
    OpenUrlCrossRefWeb of Science
  6. ↵
    1. Brewer, J.S.,
    2. M.J. Abbott and
    3. S.A. Moyer
    . 2015. Effects of oak-hickory woodland restoration treatments on native groundcover vegetation and the invasive grass Microstegium vimineum. Ecological Restoration 33:256–265.
    OpenUrlAbstract/FREE Full Text
  7. ↵
    1. Emery, S.M.,
    2. S.L. Flory,
    3. K. Clay,
    4. J.R. Robb and
    5. B. Winters
    . 2013. Demographic responses of the invasive annual grass Microstegium vimineum to prescribed fires and herbicide. Forest Ecology and Management 308:207–213.
    OpenUrlCrossRef
  8. ↵
    1. Gruchy, J.P.,
    2. C.A. Harper and
    3. M.J. Gray
    . 2009. Methods for controlling woody invasion in CRP fields in Tennessee. Proceedings Gamebird 2006: Quail VI and Perdix XII 6:315–321.
    OpenUrl
  9. ↵
    1. Hutchinson, T.F.,
    2. E.K. Sutherland and
    3. D.A. Yaussy
    . 2005. Effects of repeated prescribed fires on the structure, composition, and regeneration of mixed-oak forests in Ohio. Forest Ecology and Management 218: 210–228.
    OpenUrl
  10. ↵
    1. Kreye J.K.,
    2. J.M. Varner,
    3. G.W. Hamby and
    4. J.M. Kane
    . 2018. Mesophytic litter dampens flammability in fire-excluded pyrophytic oak–hickory woodlands. Ecosphere 9:e02078. https://doi.org/https://doi.org/10.1002/ecs2.2078.
    OpenUrl
  11. ↵
    1. Maynard, E. and
    2. J.S. Brewer
    . 2013. Restoring perennial warm-season grasses as a means of reversing mesophication of oak woodlands in northern Mississippi. Restoration Ecology 21:242–249.
    OpenUrl
  12. ↵
    1. McArdle B.H. and
    2. M.J. Anderson
    . 2001. Fitting multivariate models to community data: a comment on distance-based redundancy analysis. Ecology 82:290–297.
    OpenUrlCrossRefPubMedWeb of Science
  13. ↵
    1. McDaniel J.K.,
    2. H.D. Alexander,
    3. C.M. Siegert CM and
    4. M.A. Lashley
    . 2021. Shifting tree species composition of upland oak forests alters leaf litter structure, moisture, and flammability. Forest Ecology and Management 482:118860. https://doi.org/https://doi.org/10.1016/j.foreco.2020.118860.
    OpenUrl
  14. ↵
    1. Moyer, S.A. and
    2. J.S. Brewer
    . 2018. Competitive responses and effects of the invasive grass Microstegium vimineum during oak woodland restoration. Natural Areas Journal 38:139–147.
    OpenUrl
  15. ↵
    1. Nowacki G.J. and
    2. M.D. Abrams
    . 2008. The demise of fire and “mesophication” of forests in the eastern United States. Bioscience 58:123–138.
    OpenUrlCrossRefWeb of Science
  16. ↵
    R Core Team. 2022. R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. URL https://www.R-project.org/.
  17. ↵
    1. Sparks J.C.,
    2. R.E. Masters,
    3. D.M. Engle and
    4. G.A. Bukenhofer
    . 2002. Season of burn influences fire behavior and fuel consumption in restored shortleaf pine-grassland communities. Restoration Ecology 10:714–722.
    OpenUrl
  18. ↵
    1. Surrette, S.B. and
    2. J.S. Brewer
    . 2008. Inferring relationships between native plant diversity and Lonicera japonica in upland hardwood and hardwood-pine forests in north Mississippi, USA. Applied Vegetation Science 11:205–214.
    OpenUrl
    1. Surrette, S.B.,
    2. S.M. Aquilani and
    3. J.S. Brewer
    . 2008. Current and historical composition and size structure of upland forests across a soil gradient in north Mississippi. Southeastern Naturalist 7:27–48.
    OpenUrlCrossRefWeb of Science
  19. ↵
    1. Tyer, M.C.,
    2. W.E. Bright and
    3. P.J. Barlow
    . 1972. Soil Survey of Marshall County, Mississippi. Holly Springs, MS, USA: USDA Soil Conservation Service.
  20. ↵
    1. Vander Yacht, A.L.,
    2. P.D. Keyser,
    3. S.A. Barrioz,
    4. C. Kwit,
    5. M.C. Stambaugh,
    6. W.K. Clatterbuck and
    7. R. Jacobs
    . 2020. Litter to glitter: Promoting herbaceous groundcover and diversity in mid-southern USA oak forests using canopy disturbance and fire. Fire Ecology 16:1–19.
    OpenUrl
  21. ↵
    1. Varner J.M.,
    2. J.M. Kane,
    3. J.K. Hiers,
    4. J.K. Kreye and
    5. J.W. Veldman
    . 2016. Suites of fire-adapted traits of oaks in the southeastern USA: Multiple strategies for persistence. Fire Ecology 12: 48–64.
    OpenUrl
  22. ↵
    1. Vaughan M.C.,
    2. D.L. Hagan,
    3. W.C. Bridges,
    4. M.B. Dickinson and
    5. T.A. Coates
    . 2021. How do fire behavior and fuel consumption vary between dormant and early growing season prescribed burns in the southern Appalachian Mountains? Fire Ecology 17:1–16.
    OpenUrl
  23. ↵
    1. Wagner, S A. and
    2. J.M. Fraterrigo
    . 2015. Positive feedbacks between fire and non-native grass invasion in temperate deciduous forests. Forest Ecology and Management 354:170–176.
    OpenUrl
  24. ↵
    1. Weakley, A.S.
    2020. Flora of the Southeastern United States: Mississippi. University of North Carolina Herbarium, North Carolina Botanical Garden, Chapel Hill, NC, USA.
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Graminification and Reversal of Mesophication in a Restored Oak Woodland
Alicia L. Arrington-Thomas, John Stephen Brewer
Ecological Restoration Jun 2023, 41 (2-3) 109-118; DOI: 10.3368/er.41.2-3.109

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Graminification and Reversal of Mesophication in a Restored Oak Woodland
Alicia L. Arrington-Thomas, John Stephen Brewer
Ecological Restoration Jun 2023, 41 (2-3) 109-118; DOI: 10.3368/er.41.2-3.109
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