Atlantic White-Cedar (Chamaecyparis thyoides [L.] B.S.P.) Response Post-Hurricane Disturbance
ORCID
Hale: https://orcid.org/0000-0002-9109-1491; Granger: https://orcid.org/0000-0001-6481-9240; Correa: https://orcid.org/0000-0003-4466-6923; Siegert: https://orcid.org/0000-0001-9804-3858
MSU Affiliation
College of Forest Resources; Department of Wildlife, Fisheries and Aquaculture; Department of Forestry; College of Arts and Sciences; Department of Mathematics and Statistics
Creation Date
2026-03-30
Abstract
Atlantic white-cedar (Chamaecyparis thyoides [L.] B.S.P.) is considered critically imperiled across much of its range. This species occurs in freshwater swamps, rarely further inland than 160 km from the Atlantic or Gulf Coasts and is susceptible to several natural and anthropogenic disturbances (i.e., tropical cyclones, fire, saltwater inundation, overharvesting). As the frequency and intensity of tropical storms increase, understanding the regeneration of Atlantic white-cedar will be critical to its conservation. This study evaluated the regeneration of Atlantic white-cedar 14 years after Hurricane Katrina. All Atlantic white-cedar ≥2.5 cm at breast height were inventoried within an ∼9 ha study area located within Grand Bay National Wildlife Refuge in Jackson County, Mississippi, USA. Additionally, the competing woody vegetation was surveyed. After Hurricane Katrina, the number of Atlantic white-cedar stems increased by 191%. This long-term study provides the first analysis of Atlantic white-cedar regeneration post-tropical cyclone disturbance within the Gulf Coast and allows conservationists a better understanding of the effects of tropical cyclone disturbance on this species.
Publication Date
5-7-2022
Publication Title
Forest Science
Publisher
Oxford University Press
First Page
270
Last Page
282
Recommended Citation
Clayton W Hale, Joshua J Granger, Sandra B Correa, Janice L DuBien, Courtney M Siegert, Atlantic White-Cedar (Chamaecyparis thyoides [L.] B.S.P.) Response Post-Hurricane Disturbance, Forest Science, Volume 68, Issue 3, June 2022, Pages 270–282, https://doi.org/10.1093/forsci/fxac007