ANDI PRASTIYO
Department of Forestry, Faculty of Forestry, Universitas Hasanuddin. Jl. Perintis Kemerdekaan Km. 10, Makassar 90245, South Sulawesi, Indonesia

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Morphological characters of the endemic honey bee Apis binghami binghami across different elevations in South Sulawesi, Indonesia JAENAR ADELIA NADI; SITTI NURAENI; BUDIAMAN BUDIAMAN; ANDI PRASTIYO
Biodiversitas Journal of Biological Diversity Vol. 27 No. 2 (2026)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d270220

Abstract

Abstract. Nadi JA, Nuraeni S, Budiaman, Prastiyo A. 2026. Morphological characters of the endemic honey bee Apis binghami binghami across different elevations in South Sulawesi, Indonesia. Biodiversitas 27 (2): d270220. https://doi.org/10.13057/biodiv/d270220. Apis binghami binghami is an endemic honey bee of Wallacea that plays a crucial role in pollination and maintaining tropical ecosystem balance. However, information on its morphological characters along the elevational gradient in South Sulawesi remains limited. Environmental heterogeneity associated with altitude may strongly influence morphological traits related to flight performance, foraging efficiency, and physiological adaptation. This study aimed to analyze the morphological characters of A. b. binghami across three elevational zones lowland (0-300 masl), midland (301-700 masl), and highland (>700 masl) in South Sulawesi, Indonesia. Worker bees were collected using standardized bait traps, with 30 individuals sampled from each elevation. A total of 37 morphometric characters were measured using stereo microscopy. Data were analyzed using one-way Analysis of Variance (ANOVA), Principal Component Analysis (PCA), cluster analysis, and correlation analysis. The results revealed significant morphometric differences (p<0.001) among elevations, with increasing body size, wing length, abdomen, and sting dimensions at higher altitudes. PCA showed that the first principal component explained 80.22% of the total variation, primarily influenced by mesoscutum width, forewing length, including tegula, and abdominal length. Cluster analysis separated highland populations from lowland and midland groups, indicating clear morphological differentiation along the elevational gradient. These findings demonstrate pronounced morphological plasticity of A. b. binghami in response to altitude-related environmental conditions. The study provides the first comprehensive morphometric dataset for this endemic subspecies in South Sulawesi and offers important insights for conservation planning.
Forage vegetation for stingless bees to support the sustainability of the meliponiculture in Tulak Tallu Village, South Sulawesi, Indonesia SYAMSUDDIN MILLANG; BUDIAMAN BUDIAMAN; YENI OKTAVIA; ANDI PRASTIYO; ENY YUNIATI
Biodiversitas Journal of Biological Diversity Vol. 27 No. 1 (2026)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d270124

Abstract

Abstract. Millang S, Budiaman, Oktavia Y, Prastiyo A, Yuniati E. 2026. Forage vegetation for stingless bees to support the sustainability of the meliponiculture in Tulak Tallu Village, South Sulawesi, Indonesia. Biodiversitas 27 (1): d270124. https://doi.org/10.13057/biodiv/d270124. The stingless bee is an insect that plays a crucial role in pollinating various flowering plants in tropical ecosystems. However, forage resource management remains limited because previous studies have focused mainly on the importance value index (IVI) without integrating flowering calendars and actual foraging activity. This study aims to identify forage plant species for stingless bees as a basis for better feed planning. Sampling was conducted across all vegetation growth strata from April to May 2024. Interviews, field data collection, and literature studies were conducted to record the flowering period. The results identified 39 plant species from 25 families as potential food sources. Vegetation analysis showed that the species with the highest IVI at each growth stage were coconut (Cocos nucifera) at the tree level (IVI = 55.20), jackfruit (Artocarpus heterophyllus) at the pole level (IVI = 48.53), calliandra (Calliandra calothyrsus) at the sapling level (IVI = 53.21), and goad weed (Ageratum conyzoides) at the seedling level (IVI = 29.79). The combination of multi-strata vegetation with asynchronous flowering patterns plays a role in maintaining the continuity of bee food availability throughout the season at the study site. These findings indicate that several types of plants around meliponiculture need to be identified to see the vegetation that is a food source for the continued development of bee colonies, especially at the research location.