AGNES V. SIMAMORA
Department of Agrotechnology, Faculty of Agriculture, Universitas Nusa Cendana. Jl. Adisucipto, Penfui, Kupang 85001, East Nusa Tenggara, Indonesia

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Insect vectors of banana blood disease in Flores Island, East Nusa Tenggara, Indonesia MAYAVIRA V. HAHULY; I WAYAN MUDITA; AGNES V. SIMAMORA; PETRONELLA S. NENOTEK; SRI WIDINUGRAHENI; VIKTORIANUS JEHAUT; FADLAN PRAMATANA
Biodiversitas Journal of Biological Diversity Vol. 26 No. 8 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d260812

Abstract

Abstract. Hahuly MV, Mudita IW, Simamora AV, Nenotek PS, Widinugraheni S, Jehaut V, Pramatana F. 2025. Insect vectors of banana blood disease in Flores Island, East Nusa Tenggara, Indonesia. Biodiversitas 26: 3791-3802. Banana Blood Disease (BBD) poses a significant threat to banana cultivation in Indonesia. Following severe outbreaks on Sumba Island, the disease spread to the neighboring Flores Island in mid-2022, with a particularly pronounced impact on the predominant cultivar, Musa sp. ABB ‘Kepok plantain.’ Despite prior outbreaks, awareness and understanding of the disease and its insect vectors remain limited among agricultural officers, village leaders, and farmers on Flores Island. The pathogen, Ralstonia syzygii subsp. celebesensis (Rsc), is known to be transmitted by insect vectors; however, no prior data existed regarding vectors on Flores Island. This knowledge gap has impeded effective disease management and allowed the disease to spread unnoticed. This study aimed to assess the spread and incidence of BBD and investigate potential insect vectors involved in its transmission. A survey conducted across five districts in western Flores confirmed the presence of BBD in all surveyed areas, with varying incidence rates among banana cultivars. The highest incidence (65.88%) was recorded in Musa sp. ABB ‘Kepok plantain,’ followed by Musa sp. AAB ‘Raja Sereh banana,’ Musa sp. AAA ‘Barangan banana,’ Musa sp. AAA ‘Cavendish banana,’ and Musa sp. BB ‘Klutuk plantain.’ Insect surveys identified eight species visiting male banana inflorescences. Among them, Oscinella sp. (Diptera: Chloropidae) and Bactrocera sp. (Diptera: Tephritidae) were the most widespread and abundant. These species have previously been reported as BBD vectors in other regions. They were likely key contributors to the spread of Rsc on Flores Island.
In vitro growth assessment of Trichoderma spp. from paddy rhizosphere on glyphosate- and fipronil- containing medium AGNES V. SIMAMORA; PETRONELLA S. NENOTEK; MAYAVIRA V. HAHULY; LILY F. ISHAQ; SRI WIDINUGRAHENI; YENNY RAJA KANA; SPERATUS C. U. PASI; ANTONIUS R. B. OLA; EVERT Y. HOSANG; BAYU R. FITRIADI
Biodiversitas Journal of Biological Diversity Vol. 26 No. 5 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d260502

Abstract

Abstract. Simamora AV, Nenotek PS, Hahuly MV, Ishaq LF, Widinugraheni S, Kana YR, Pasi SCU, Ola ARB, Hosang EY, Fitriadi BR. 2025. In vitro growth assessment of Trichoderma spp. from paddy rhizosphere on glyphosate- and fipronil- containing medium. Biodiversitas 26: 2028-2038. Agricultural practices worldwide increasingly rely on synthetic pesticides to enhance crop productivity and manage pest infestations. Glyphosate, a widely used herbicide, and fipronil, a broad-spectrum insecticide, are extensively applied due to their effectiveness. However, prolonged use of these agrochemicals raises significant environmental concerns, particularly soil contamination, which disrupts microbial diversity and degrades soil health. The persistence of glyphosate and fipronil in soil ecosystems challenges sustainable agriculture, necessitating the exploration of bioremediation strategies. Research on the ability of Trichoderma spp. to degrade these pesticides remains limited, highlighting the need for this study. This research aimed to (i) isolate Trichoderma spp. from paddy fields with frequent glyphosate and fipronil application; (ii) assess their growth on PDA media supplemented with glyphosate and fipronil; and (iii) evaluate their in vitro potential for pesticide degradation. Growth assessments were conducted on PDA media supplemented with glyphosate at 0 mL/L (control), 5.0 mL/L (recommended concentration), and 12.5 mL/L, and with fipronil at 0 mL/L (control), 2.0 mL/L (recommended concentration), and 4.0 mL/L. The degradation potential was evaluated using a modified dual-culture method with Fusarium oxysporum as the indicator pathogen. The results showed four Trichoderma isolates were obtained, namely T. harzianum 01, T. camerunense 02, T. harzianum 03, and Trichoderma 04. Growth analysis indicated that T. harzianum 01 had the highest colony diameter (9.0 cm) and exhibited complete resistance at recommended glyphosate and fipronil concentrations, while T. camerunense 02 was the most sensitive. Relative inhibition rate analysis confirmed that glyphosate had a stronger inhibitory effect than fipronil. Antagonism tests revealed that all isolates suppressed Fusarium oxysporum, with inhibition rates ranging from 70.59 to 83.96%, indicating strong biocontrol potential. These findings demonstrate the resilience of Trichoderma spp. under pesticide exposure and their capacity to inhibit phytopathogens, supporting their potential as bioremediation and biological control agents for sustainable soil management.