Developing recommendations by rapid ecological assessment for post-fire restoration in low altitude forests and shrublands in Mediterranean climate region: A case study for Datça-Bozburun Special Protection Area

Author:

TÜFEKCİOĞLU İrem1,ERGAN Gökhan2,KAYNAŞ Burçin3,AKTEPE Nursema4,TAVŞANOĞLU Çağatay1

Affiliation:

1. HACETTEPE ÜNİVERSİTESİ, FEN FAKÜLTESİ, BİYOLOJİ BÖLÜMÜ, EKOLOJİ ANABİLİM DALI

2. ÇUKUROVA ÜNİVERSİTESİ, ALADAĞ MESLEK YÜKSEKOKULU, ORMANCILIK BÖLÜMÜ, AVCILIK VE YABAN HAYATI PR.

3. BURDUR MEHMET AKİF ERSOY ÜNİVERSİTESİ, FEN-EDEBİYAT FAKÜLTESİ, BİYOLOJİ BÖLÜMÜ

4. KASTAMONU ÜNİVERSİTESİ, FEN-EDEBİYAT FAKÜLTESİ, BİYOLOJİ BÖLÜMÜ, EKOLOJİ VE ÇEVRE BİYOLOJİSİ ANABİLİM DALI

Abstract

The Mediterranean Basin is a biogeography shaped by fires for millions of years. For the restoration of burned areas in the Mediterranean Basin, therefore, planning should increase resistance and resilience of plant communities to fire by considering adaptation strategies of plant species to fire. In this study, following the fire of 2021, affected approximately 12,500 hectares in Marmaris region, a rapid assessment method and post-fire restoration prescriptions were developed for the Datça-Bozburun Special Environmental Protection Area. By using EFFIS and Sentinel-2 satellite images, the burned area was determined and classified to fire severity with normalized burn ratio difference The regeneration potential of burned areas was revealed by counting the number of serotinous cones of Turkish red pine (Pinus brutia) and estimating potential coverage of maquis species in sampling areas based on stand type and burn severity levels. Open pine stands had the highest serotiny and high resprouting potential following maquis vegetation, while the young pine stands have the lowest level of serotiny. Considering results and slope degrees, six restoration prescriptions were developed for burned areas. While 6% of the burned area was recommended to be left unmanaged, natural regeneration + laying out branches with cones and natural regeneration with additional seeding, and artificial regeneration by planting saplings after terracing and tillaging were foreseen for the remaining areas. This simple and cost-effective methodology developed in this study is highly applicable to local practitioners and decision makers, as it can be carried out within two months following the fire.

Publisher

Turkish Journal of Forestry

Subject

Building and Construction

Reference99 articles.

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