Journal of Natural Science Research and Review (JNSRR)
Ganoderma Boninense: An Existential Threat to Indonesian Oil Palm Sustainability - A Review of Pathogenicity, Economic Impact, and Integrated Management Strategies
Judijanto, Loso
24 February 2026 · Vol. 2, Issue 2, pp. 77-89
DOI: 10.65150/EP-jnsrr/V2E2/2026-04
Abstract
Basal stem rot (BSR) caused by Ganoderma boninense represents the most devastating disease threatening the sustainability of Indonesia's oil palm industry, the world's largest palm oil producer. This qualitative literature review synthesizes current knowledge on the pathogenicity mechanisms, economic impacts, and management strategies for Ganoderma disease in the Indonesian context. Through a thematic analysis of 60+ peer-reviewed publications from 2010 to 2026, this study reveals that BSR incidence is increasing across all plantation ages and soil types, with projected infection rates reaching 100% in Sumatra under climate change scenarios by 2100. Economic losses are estimated at USD 500 million annually, with individual infected palms experiencing 43% yield reduction within six months. Current management approaches demonstrate that no single control method provides complete protection; however, integrated disease management combining cultural practices (clean clearing with one-year fallowing reducing incidence to 3-6%), biological control agents (Trichoderma spp. achieving 83-89% disease suppression), moderate resistant varieties, and early detection technologies (UAV multispectral imaging with >90% accuracy) offers the most promising pathway. Critical gaps include the absence of completely resistant varieties, limited smallholder access to advanced technologies, and inadequate national biosecurity frameworks. This review provides evidence-based policy recommendations, including establishing a national Ganoderma biosecurity program, dedicated research funding, mandatory integration into the Indonesian Sustainable Palm Oil (ISPO) certification system, and technology democratization mechanisms to safeguard the sustainability of Indonesia's palm oil industry.
Keywords: Ganoderma boninense, basal stem rot, oil palm sustainability, integrated disease management, biological control, Indonesia, climate change, resistant varieties, economic impact, qualitative literature review
Read the full text on Journal of Natural Science Research and Review →The full peer-reviewed article and PDF are hosted on the journal's site (the version of record).
Cite this article
Judijanto, & Loso (2026). Ganoderma Boninense: An Existential Threat to Indonesian Oil Palm Sustainability - A Review of Pathogenicity, Economic Impact, and Integrated Management Strategies. Journal of Natural Science Research and Review, 2(2), 77-89. https://doi.org/10.65150/EP-jnsrr/V2E2/2026-04
@article{Judijanto2026,
title = {Ganoderma Boninense: An Existential Threat to Indonesian Oil Palm Sustainability - A Review of Pathogenicity, Economic Impact, and Integrated Management Strategies},
author = {Judijanto and Loso},
journal = {Journal of Natural Science Research and Review},
year = {2026},
volume = {2},
number = {2},
pages = {77-89},
doi = {10.65150/EP-jnsrr/V2E2/2026-04},
url = {https://doi.org/10.65150/EP-jnsrr/V2E2/2026-04}
}Related articles in JNSRR
- Evaluation of the Response of Vinca Catharanthus Roseus (L.) G. Don to Biofertilization and Foliar Application of 24-Epibrassinolide in Selected Vegetative, Floral, And Chemical Traits
Aboud, Kawther Hadi · Sept 2026
- Quorum Sensing: Biochemical Mechanisms and Implications
David, Bando Christopher, Tutuwa, Jummai Adamu, Polly, Jesse Shingu, Joshua, Uwhe Efi, Ngozi, Odii Josephine, Blessing, Smart Aigbogun, Patience, Angyu Jonathan · Sept 2026
- The Impact of the Earthquake Disaster on the Lives of the Community in Nagari Malampah, Pasaman Regency
Froza, Hadya, Dasrizal, Nefilinda · Aug 2026
- Mobilizing Agricultural Natural Resources for Development and Reducing the Risk of Food Insecurity in Cameroon
Ludovic, MBOMEYO Alain, Ewane, ETAH IVO, Colbert, AWOMO NDONGO Jean · Aug 2026
- Chromatin-Optimized Crispr Activation for Enhanced Pollutant Degradation in Rhodococcus Consortia
D., Sebastian, Jeremia, B, Akpadolu, Chidinma, Sandra, Benin,, Rosemary, Okoye,, H., Owusu, Nana · Aug 2026
