ECOLOGICAL CHARACTERISTICS OF Castanopsis tungurrut (BLUME) A. DC ALONG THE ALTITUDINAL GRADIENT IN CIBODAS BIOSPHERE RESERVE
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HIGHLIGHTS
- Castanopsis tungurrut prefer mid-altitude forest habitat
- The population show clumped pattern on steep slopes
- Vegetation cluster shift with altitudinal gradient
- Cisarua is the highest density of Castanopsis tungurrut
ABSTRACT
Castanopsis tungurrut is an endangered species that has received limited attention in terms of research, with scarce ecological information and description of its native distribution area, the Cibodas Biosphere Reserve. This study aimed to investigate the ecological characteristics, vegetation clusters, population structure, and habitat preferences of C. tungurrut along the altitudinal gradient. To assess the vegetation, a total of 41 plots were used, with dimensions of 20 × 20 m for trees, 10 × 10 m for poles, 5 × 5 m for saplings, and 2 × 2 m for wildings. The results revealed that the vegetation in four different locations (Cibodas, Bodogol, Cisarua, and Selabintana) within the altitude range of ca. 750 - 1800 meters above sea level (m asl) could be grouped into three distinct zone clusters based on the dominant species. These clusters were named Zone I (ca. 500 - 1,000 m asl), Castanopsis-Lithocarpus and Schima wallichii forest characterized by the dominance of Castanopsis tungurrut, Maesopsis eminii, and Schima wallichii; Zone II (ca. 1,000 -1,500 m asl), Castanopsis and Schima wallichii forest, dominated by Castanopsis (Fagaceae forest) and Schima wallichii; and Zone III (ca.1,500-2,400 m asl), Schima wallichii, Castanopsis, and Altingia excelsa forest where Schima wallichii, Castanopsis, and Altingia excelsa were prevalent. C. tungurrut was found to dominate at elevations between ca. 750 and 1,500 m asl, gradually decreasing in higher elevations or even absent. It exhibited a clumped distribution pattern, favoring steep to highly steep habitats. The highest population density was observed in Cisarua (53.1 individuals/ha), followed by Bodogol (25 individuals/ha), Cibodas (10.7 individuals/ha), and Selabintana (5 individuals/ha). These findings emphasize the species' selective habitat preferences, particularly with regard to altitude and slope factors, which should be taken into consideration when planning conservation efforts.
Béland M, Baldocchi D. 2020. Is foliage clumping an outcome of resource limitations within forests? Agric Forest Meteorol 295:108185. DOI: 10.1016/j.agrformet.2020.108185 DOI: https://doi.org/10.1016/j.agrformet.2020.108185
Callaway RM. 1997. Positive interactions in plant communities and the individualistic-continuum concept. Oecologia 112(2):143-49. DOI: https://doi.org/10.1007/s004420050293
Cheuk ML, Fischer GA. 2021. The impact of climate change on the distribution of Castanopsis (Fagaceae) species in south China and Indo-China region. Global Ecol Conserv 26. DOI: https://doi.org/10.1016/j.gecco.2020.e01388
Eccles N, Lamont B, Esler K, Lamont H. 2001. Relative performance of clumped vs. experimentally isolated plants in a South African winter-rainfall desert community. Plant Ecol 155(2):219-27. DOI: 10.1023/A:1013229122307 DOI: https://doi.org/10.1023/A:1013229122307
Fathia AA, Hilwan I, Kusmana C. 2019. Species composition and stand structure in sub-montane forest of Mount Galunggung, Tasikmalaya, West Java. IOP Conference Series: Earth and Environmental Science 394(1). DOI: 10.1088/1755-1315/394/1/012012 DOI: https://doi.org/10.1088/1755-1315/394/1/012012
Frei ER, Moser B, Wohlgemuth T. 2022. Competitive ability of natural Douglas fir regeneration in central European close-to-nature forests. For Ecol Manage 503:119767. DOI: https://doi.org/10.1016/j.foreco.2021.119767
Handayani A, Lailaty IQ, Astutik S. 2019. Evaluasi Kesintasan dan Pertumbuhan Beberapa Jenis Pohon Lokal di Area Restorasi Cagar Biosfer Cibodas [Evaluation on survival and growth of several local trees in Cibodas Biosphere Reserve]. Jurnal Pengelolaan Sumberdaya Alam dan Lingkungan 9(3):541-48. DOI: 10.29244/jpsl.9.3.541-548 DOI: https://doi.org/10.29244/jpsl.9.3.541-548
Hilwan I, Irfani E. 2018. Pola penyebaran dan regenerasi jenis Saninten (Castanopsis argentea Blume) di Resort Selabintana, Taman Nasional Gunung Gede Pangrango [Distribution pattern and regeneration of Castanopsis argentea Blume in Selabintana Resort, Gunung Gede Pangrango National Park]. Silvikultur Tropika - Journal of Tropical Silviculture Science and Technology 9(1):53-9. DOI: https://doi.org/10.29244/j-siltrop.9.1.53-59
Mekonen T, Ayele B, Ashagrie Y. 2015. Woody plant species diversity, structure and regeneration status of Woynwuha natural forest, North West Ethiopia. J Agric Environ Sci 1(2):90-113.
Nguyen HH, Uria-Diez J, Wiegand K. 2016. Spatial distribution and association patterns in a tropical evergreen broad-leaved forest of north-central Vietnam. J Veg Sci 27(2):318-27. DOI: https://doi.org/10.1111/jvs.12361
Nurcahyani R. 2017. Pola Penyebaran dan Karakteristik Tempat Tumbuh Castanopsis javanica dan Castanopsis tungurrut di Hutan Gunung Galunggung Tasikmalaya [Distribution pattern and characteristics of habitat of Castanopsis javanica and Castanopsis tungurrut in the forest area of Gunung Galunggung, Tasikmalaya. [Undergraduate Thesis]. Bogor (ID): IPB University.
Pandey J, Lodhiyal LS. 2015. Vegetation structure and regeneration of Van Panchayat forests in Kumaun Himalaya, Uttarakhand. Int J Environ 4(3):69-80. DOI: https://doi.org/10.3126/ije.v4i3.13231
Sadili A, Salamah A, Mirmanto E, Kartawinata K. 2023. Variation in the composition and structure of natural lowland forests at Bodogol, Gunung Gede Pangrango National Park, West Java, Indonesia. Reinwardtia 22(1):1-25. DOI: https://doi.org/10.55981/reinwardtia.2023.4399
Sang W. 2009. Plant diversity patterns and their relationships with soil and climatic factors along an altitudinal gradient in the middle Tianshan Mountain area, Xinjiang, China. Ecol Res 24(2):303-14. DOI:10.1007/s11284-008-0507-z DOI: https://doi.org/10.1007/s11284-008-0507-z
Watanabe T, Matsunaga K, Kanazawa Y, Suzuki K, Rotherham ID. 2021. Landforms and distribution patterns of giant Castanopsis sieboldii trees in urban areas and western suburbs of Tokyo, Japan. Urban For Urban Green 60:126997. DOI: 10.1016/j.ufug.2021.126997 DOI: https://doi.org/10.1016/j.ufug.2021.126997
Yu Q, Rao X, Chu C, Sy L, Lin Y, Sun D-H, …, Shen W. 2020. Species dominance rather than species asynchrony determines the temporal stability of productivity in four subtropical forests along 30 years of restoration. For Ecol Manage 457:117687. DOI: https://doi.org/10.1016/j.foreco.2019.117687
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