MOCHAMMAD SYAMSUL HADI
Department of Plant Pests and Diseases, Faculty of Agriculture, Universitas Brawijaya. Jl. Veteran, Malang 65145, East Java, Indonesia

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Screening of soil fungi as bioremediation fungicide and its effect on growth of potato plants ABDUL LATIEF ABADI; FERY ABDUL CHOLIQ; MUTHIA OKTAVIANITA; NOVIA ARINATA; MOCHAMMAD SYAMSUL HADI; YOGO SETIAWAN
Biodiversitas Journal of Biological Diversity Vol. 23 No. 3 (2022)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d230351

Abstract

Abstract. Abadi AL, Choliq FA, Oktavianita M, Arinata N, Hadi MS, Setiawan Y. 2022. Screening of soil fungi as bioremediation fungicide and its effect on growth of potato plants. Biodiversitas 23: 1605-1610. The negative impact of using fungicides on the environment can lead to chemical residues in the soil. The chemical degradation process can be carried out in several ways, one of which is by biological means by using microbes such as soil fungi. This study aimed to evaluate soil fungi isolated from natural forests for bioremediation of Mancozeb fungicide commonly used in potato fields in Indonesia. Isolated soil fungi were identified based on morphological and molecular level (PCR). The inhibition assay was carried out by growing fungal isolates on PDA media containing a fungicide with an active ingredient of 80% Mancozeb. Trichoderma harzianum isolated as a soil fungus from natural forest could grow in the fungicide Mancozeb medium. The biodegradation assay showed that treatment of Trichoderma harzianum and Mancozeb fungicide did not inhibit the growth of potato plants (plant height, number of leaves, and root length) as compared to the control. Based on the results of degradation test using HPLC method, T. harzianum both isolates can reduce the residue of fungicide Mancozeb in soil during the vegetative growth period of potato plants.
A comparison of integrated pest management and conventional practices on insect diversity and economic profitability of cayenne pepper cultivation MOCHAMMAD SYAMSUL HADI; SHARFINA FARHAH NAZIHA; RIZQIA NUR SALSABELA MULYONO; FAIZ NASHIRUDDIN MUHAMMAD; BINTANG ARYA PRAMANA; ACHMAD FITRIADI TAUFIQURRAHMAN; BINTAR PROBO SUNARTO
Biodiversitas Journal of Biological Diversity Vol. 26 No. 4 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d260403

Abstract

Abstract. Hadi MS, Naziha SF, Mulyono RNS, Muhammad FN, Pramana BA, Taufiqurrahman AF, Sunarto BP. 2025. A comparison of integrated pest management and conventional practices on insect diversity and economic profitability of cayenne pepper cultivation. Biodiversitas 26: 1519-1525. Cayenne pepper (Capsicum frutescens) cultivation generally relies heavily on insecticide applications. Integrated Pest Management (IPM) offers an effective solution to minimize insecticide use while maintaining crop productivity and sustainability. The objective of this study is to compare insect diversity and economic profitability in cayenne pepper cultivation under IPM and conventional practices. The research was conducted in Sukoharjo Village, Bancar Sub-district, Tuban District, East Java, Indonesia, and in the Plant Pest Laboratory, Universitas Brawijaya, Malang, East Java, from October 2023 to May 2024. Insect sampling was carried out using pan traps and pitfall traps to observe flying and ground-dwelling insects, respectively. Data analysis included diversity indices and economic calculations such as total cost, revenue, profit, break-even point, and benefit-cost (B/C) ratio. The results showed that the IPM system supported a greater number of species (20 species) and a higher total abundance of insects (298 individuals) compared to the conventional system (15 species and 240 individuals). IPM favored the presence of predatory insects such as Paederus sp., Omonadus sp., and Rynocoris sp., whereas conventional practices showed a higher abundance of herbivorous insects such as Myzus persicae and Acrididae sp.. In terms of yield, the IPM system produced 4.74 tons, greater than the 2.55 tons from the conventional system. IPM generated greater revenue and profitability compared to conventional practices. The findings suggest that IPM practices offer dual benefits, enhancing ecological sustainability by increasing predator populations while also improving economic returns for farmers.