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Stephen F. Austin State University

AVIAN COMMUNITIES MONITORED ALONG A SUCCESSIONAL CHRONOSEQUENCE IN BOTTOMLAND HARDWOOD FORESTS IN THE LOWER MISSISSIPPI ALLUVIAL VALLEY

Abstract

dc:description.abstract

<p>Bottomland hardwood forests in the Lower Mississippi Alluvial Valley have been extensively reduced due to agriculture conversion and altered hydrology. Remnant forests have undergone further degradation from sources such as a lack of forest management, invasive species, and reduced regeneration of oaks (<em>Quercus</em> spp.). Recent restoration efforts of bottomland hardwood forests have focused on implementing wildlife forestry practices that prioritize restoring wildlife habitat while retaining profitable timber harvests. In this study I surveyed bird communities in bottomland hardwood forests in the Lower Mississippi Alluvial Valley along a successional chronosequence. Birds were sampled using automated recording units over 10 days across 149 sites for the breeding bird seasons of 2021 and 2022. Sites were categorized into one of eight forest classes based on age and time since silviculture treatment. Additionally, single-species occupancy models were developed for these four species of concern: northern parula (<em>Setophaga americana</em>), prothonotary warbler (<em>Protonotaria citrea</em>), wood thrush (<em>Hylocichla mustelina</em>), and Acadian flycatcher (<em>Empidonax virescens</em>).</p> <p> Species richness and diversity were not significantly different among forest classes. Bird communities in the grass/shrub forest class were significantly distinct from any other bird community, due to an absence of an overstory stratum. We were able to</p> <p>successfully use forest class to compare bird communities. We found that, due to inconsistency in intensity of management practices and site conditions, forest structure was highly variable in the Lower Mississippi Alluvial Valley making it difficult to categorize sites into distinct forest classes. Rather, forest structure variables provided more insight into bird community composition. Hardwood basal area (from 0 to 26.6 m<sup>2</sup>/ha) was found to be positively correlated with occupancy for all four species of concern identified by Partners in Flight. The larger bird community was unaffected by forest management, but since occupancy of species of concern was influenced by increasing hardwood basal area managers should take efforts to maintain some forests with a higher basal area to serve as a sanctuary for these species.</p>

Degree

thesis:*
Name thesis:degree_name
Master of Science - Forestry
Level thesis:degree_level
Thesis
Discipline thesis:degree_discipline
Forestry
Year dc:date.available
2024

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Thurmond, Eamonn Alasdair
Contributors dc:contributor
  • Kathryn R. Kidd
  • Daniel Saenz
  • Clifford E. Shackelford

Subjects

dc:subject × 13

Identifiers

dc:identifier.*
Repository record dc:identifier
https://scholarworks.sfasu.edu/etds/564
OAI identifier oai:identifier
oai:scholarworks.sfasu.edu:etds-1611

Chain of custody

source
Harvested from
Stephen F. Austin State University
Base URL
scholarworks.sfasu.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Thurmond, Eamonn Alasdair. AVIAN COMMUNITIES MONITORED ALONG A SUCCESSIONAL CHRONOSEQUENCE IN BOTTOMLAND HARDWOOD FORESTS IN THE LOWER MISSISSIPPI ALLUVIAL VALLEY. Thesis thesis, 2024. https://scholarworks.sfasu.edu/etds/564