Development of Redwood Regeneration after Conifer Partial Harvest and Hardwood Management

Author:

Berrill John-Pascal1ORCID,Webb Lynn A2ORCID,DeYoung Kristy L3,Dagley Christa M1,Bodle Christopher G3,Simpson Sean M3ORCID

Affiliation:

1. School of Forest Resources, University of Maine, Orono, ME

2. California Department of Forestry and Fire Protection, Jackson Demonstration State Forest, Fort Bragg, CA

3. Department of Forestry and Wildland Resources, Humboldt State University, Arcata, CA

Abstract

Abstract Harvesting of commercial conifer species from conifer-hardwood mixtures can leave residual stands dominated by hardwoods. Removing unwanted hardwoods by cutting or herbicide makes growing space available to residual trees and regeneration and can restore conifer dominance. Forest managers of north coastal California need guidance on how such treatments affect subsequent growth of planted redwoods (Sequoia sempervirens [D. Don.] Endl.) or natural regeneration, as well as proliferation of undesirable species. Our observational study reconstructed growth of 108 regenerating redwoods in 26 treated stands. Residual stand density was the main driver of height and diameter growth in the new cohort of redwoods, irrespective of whether hardwoods were cut or received herbicide frill treatment (prevents resprouting). At lower residual stand densities, there were higher densities of natural regeneration (ingrowth) of conifers and hardwoods, which affected diameter at breast height (dbh) growth of regenerating redwoods. After heavier cutting of hardwoods, this ingrowth comprised a greater proportion of unwanted hardwood regeneration. Therefore, frill treatment is recommended when the objective of management is to reduce hardwood stocking and regeneration. Combining partial harvesting of conifers with cutting or frill treatment of hardwood is another option that reduces stand density to promote height and dbh growth of regenerating redwoods.

Funder

U.S. Department of Agriculture

National Institute of Food and Agriculture

Maine Agricultural and Forest Experiment Station

Publisher

Oxford University Press (OUP)

Subject

Ecological Modeling,Ecology,Forestry

Reference69 articles.

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4. Variable-density retention promotes spatial heterogeneity and structural complexity in a Douglas-fir/tanoak stand;Berrill;Curr. Trends For. Res.,2018

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