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

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Morphology and morphometric of Tetragonula biroi bees at three different altitudes in South Sulawesi, Indonesia ANDI PRASTIYO; SITTI NURAENI; BUDIAMAN BUDIAMAN
Biodiversitas Journal of Biological Diversity Vol. 25 No. 5 (2024)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d250516

Abstract

Abstract. Prastiyo A, Nuraeni S, Budiaman. 2024. Morphology and morphometric of Tetragonula biroi bees at three different altitudes in South Sulawesi, Indonesia. Biodiversitas 25: 1993-2002. Tetragonula biroi Friese 1898 is a stingless bee species that plays an essential role in pollination and environmental conservation. This research is important because bees play a crucial role as pollinators for the sustainability of plants, and morphometric measurements can reveal patterns of adaptation and the potential production of products generated by these bees. This research aims to analyze the morphological and morphometric variations of T. biroi at three different altitudes in South Sulawesi. The study was conducted from November 2023 to January 2024, with sampling points in lowland (158 meters above sea level or masl), midland (417 masl), and highland (709 masl), using Principal Component Analysis (PCA) test using XLSTAT and one-way analysis of variance (ANOVA) test using program SPSS. Observations of T. biroi morphology at the three locations were generally similar, with a black body color tinged with brown and characteristic hamuli numbering five. The morphometric analysis involved measuring body dimensions of T. biroi across 35 characters/sections of the external body, and the one-way ANOVA test results showed that the dominant characters significantly influencing were body length (BL) and length of fore wing, including tegula (WL1). T. biroi bees at lowlands tend to have smaller bodies, measuring 3.73±0.09 mm, while those at higher altitudes tend to have larger bodies, measuring 4.09±0.14 mm. This indicates adaptation to environmental conditions such as temperature (26.75C), humidity (81%), and dominant vegetation (Cocos nucifera L.) in lowland, which influence bee adaptation, as well as in midland and highland areas. This research provides a better understanding of morphological and morphometric variations in T. biroi bees at various altitudes in South Sulawesi. The morphology and morphometrics description of bees is crucial in determining the growth and production of a species.
The pathological pebrine diseases of Bombyx mori caused by Nosema bombycis (mNb) in South Sulawesi, Indonesia SITTI NURAENI; ANDANG SURYANA SOMA; ANDI SADAPOTTO; ANDI MUJETAHID; BAHARUDDIN BAHARUDDIN; RYZA JAZID BAHARUDDIN NUR; NURUL HUDA; ABDUL FATTAH
Biodiversitas Journal of Biological Diversity Vol. 25 No. 9 (2024)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d250920

Abstract

Abstract. Nuraeni S, Soma AS, Sadapotto A, Mujetahid A, Baharuddin, Nur RJB, Huda N, Fattah A. 2024. The pathological pebrine diseases of Bombyx mori caused by Nosema bombycis (mNb) in South Sulawesi, Indonesia. Biodiversitas 25: 2990-2995. South Sulawesi is the main producer of raw silk in Indonesia. However, over the past decade, raw silk production has plummeted due to an epizootic of pebrine disease. Pebrine disease is caused by the obligate parasite microsporidium Nosema bombycis Filatova, 1942 (mNb) (Microsporidia: Nosematidae). This study aims to identify mNb spore morphology and pathological characteristics, including disease symptoms, infectivity tests, and pebrine epizootic history. Spore morphology was observed using a light microscope. Infectivity test with a spore concentration of 1×108 mL-1 in 3rd, and 4th instars, inoculation using the smear method on mulberry leaves. Information on pebrine disease rates was obtained from documents of egg certification between 2002 and 2016. The research results show that the spores are oval in shape. The size of the spores can reach a length of 4.57±0.46 µm and a width of 2.24±0.493 µm. The main symptoms of this disease are the change in color of the cuticle to brownish with irregular black spots and non-uniform growth because many fail to molt, and the larval phase increases by 8-10 days. Inoculation in the 3rd instar can cause larval death starting on the second day after inoculation, with a cumulative mortality rate of 64%. Inoculation of the 4th instar, death begins on the eighth day, and a cumulative mortality rate of 52%. The pebrine epizootic in 2010 reached 72.42%, which reduced production by 57%. Understanding the pathological causes of pebrine disease and its history is useful to prevent rather than control the occurrence of the next epizootic.