EventsThe 2nd International Electronic Conference on Forests — Sustainable Forests: Ecology, Management, Products and Trade
Published
This submission belongs to the session PS. Poster Session of the event The 2nd International Electronic Conference on Forests — Sustainable Forests: Ecology, Management, Products and Trade
Published date
31 Aug, 2021
Academic Editor
author-avatarLotus Guo
Citation
H. Roaki Ishii, Naoto Kawata, Wakana Aoi Azuma, Takahiko Yoshioka, Yuiko Noguchi, Spatial and temporal variation of species composition and structure of unmanaged secondary forest (abandoned satoyama) adjacent to late-successional forest, in Proceedings of The 2nd International Electronic Conference on Forests — Sustainable Forests: Ecology, Management, Products and Trade, 1 September–15 September 2021, MDPI: Basel, Switzerland, doi: 10.3390/IECF2021-10787
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Spatial and temporal variation of species composition and structure of unmanaged secondary forest (abandoned satoyama) adjacent to late-successional forest

Naoto Kawata 1
Takahiko Yoshioka 1
Yuiko Noguchi 1
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1. Graduate School of Agricultural Science, Kobe University
Abstract

There are several ecological issues associated with unmanaged secondary forests, or abandoned satoyama, in Japan, such as decreasing species diversity and invasion by alien species. To understand its vegetation dynamics, we investigated change in stand structure of an unmanaged secondary forest over 15-years.

Study plots were established in a secondary forest at varying distances from a late-successional lucidophyllous forest. We calculated Bray-Curtis similarity indices of the plots over space and time and compared them using nMDS (non-Metric Multidimensional Scaling). Species composition of the proximal secondary forest was more similar to the lucidophyllous forest than that of the distal secondary forest, indicating that late-successional species are spreading into the unmanaged secondary forest.

Over the 15-year study period, species composition of the distal secondary forest approached that of the lucidophyllous forest. This was due to decreasing abundance of shade-intolerant species, such as Rhododendron. Stand structure, however, changed very little because dominant canopy trees, namely Quercus serrata and Quercus variabilis, continued to grow. Although late-successional species are regenerating in the secondary forest, it may take several decades for the stand to reach late-successional structure, where evergreen broadleaved trees, namely Castanopsis cuspidata, dominate the canopy.

Keywords
succession
nMDS
vegetation dynamics
stand structure
Manuscript
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