Fungal wood decomposer activity induces niche separation between two dominant tree species seedlings regenerating on coarse woody material

Author:

Fukasawa Y.1,Komagata Y.1,Ushijima S.2

Affiliation:

1. Laboratory of Forest Ecology, Graduate School of Agricultural Science, Tohoku University, Naruko, Osaki, Miyagi 989-6711, Japan.

2. Fungus/Mushroom Resource and Research Center, Faculty of Agriculture, Tottori University, 4-101 Koyama-minami, Tottori 680-8553, Japan.

Abstract

Decomposition subsystems have an essential role in forest dynamics but few studies demonstrate the effect of microbial decay traits on seedling regeneration. In the present study, we focused on seedling regeneration on coarse woody material (CWM), which is an important regeneration site for forest tree species, and the effects of wood decay type according to fungal decay preference for wood structural components on seedling colonization. Effects of log properties including wood decay type and other environmental variables on seedling density were evaluated by ordination methods and generalized linear models. In total, 22 woody species were recorded as seedlings on Pinus densiflora logs. By ordination analysis, white rot in heartwood and brown rot in sapwood, as well as canopy openness and log diameter, showed significant association with seedling communities. The factors selected for a generalized linear model for explaining seedling densities of the two dominant seedling species Cryptomeria japonica and P. densiflora included brown rot in sapwood and white rot in heartwood, but the effects were different: a positive effect of brown rot on C. japonica and a negative effect of white rot on P. densiflora. These results suggested that wood decay type could induce niche separation between dominant tree species regenerating on CWM.

Publisher

Canadian Science Publishing

Subject

Ecology,Forestry,Global and Planetary Change

Reference47 articles.

1. Relationship between the Decay Types of Dead Wood and Occurrence of Lucanid Beetles(Coleoptera:Lucanidae)

2. Natural regeneration in Central-European subalpine spruce forests: Which logs are suitable for seedling recruitment?

3. Bardgett, R.D., and Wardle, D.A. 2010. Aboveground–belowground linkages: biotic interactions, ecosystem processes, and global change. Oxford University Press, Oxford, UK.

4. Good dirt with good friends

5. Eaton, R.A., and Hale, M.D.C. 1993. Wood: decay, pests and protection. Chapman and Hall, London.

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