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Analisis Kesuburan Tanah pada Sistem Polikultur dan Monokultur Tanaman Jagung: Soil Fertility Analysis Using Polyculture Systems and Monoculture in Maize Cultivation Ratih Ratih; Asti Irawanti Azis; Dea Ekaputri Andraini
Perbal: Jurnal Pertanian Berkelanjutan Vol. 14 No. 1 (2026): Perbal: Jurnal Pertanian Berkelanjutan
Publisher : Fakultas Pertanian Universitas Cokroaminoto Palopo

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30605/perbal.v14i1.7600

Abstract

Tanaman jagung dikenal memiliki kebutuhan unsur hara yang tinggi, terutama nitrogen, fosfor, dan kalium, sehingga penanaman berulang dengan sistem monokultur tanpa pengelolaan kesuburan yang tepat dapat menyebabkan penurunan kadar unsur hara esensial dalam tanah. Sistem polikultur menjadi solusi untuk meningkatkan kesuburan tanah karena prinsip dasarnya mengedepankan keragaman hayati dan keseimbangan ekosistem pada lahan pertanian, dengan menanam berbagai jenis tanaman secara bersamaan, sistem ini menciptakan interaksi positif antarspesies tanaman. Tujuan penelitian ini untuk mengetahui status kesuburan  tanah pada sistem  pertanaman polikultur dan monokultur tanaman jagung. Penelitian dilaksanakan di kebun percobaan Fakultas Pertanian Universitas Islam Makassar, Juni hingga Agustus 2023. Metode pengambilan sampel tanah terbagi atas dua yakni sampel tanah terganggu sebelum penanaman dan setelah panen, kemudian dianalisis di Laboratorium Kimia Tanah. Parameter yang diamati yakni pH H2O, C-organik (%), N-Total (%), P-Tersedia (ppm), K- tersedia (cmol(+) kg-1), KTK (cmol(+) kg-1). Hasil analisis nilai indeks kesuburan tanah (IKT) pada sistem polikultur sebelum penanaman yaitu 0,56 dan setelah penanaman meningkat menjadi 0,722. Pada sistem monokultur sebelum penanaman yaitu 0,61 meningkat menjadi 0,72 dimana dapat disimpulkan bahwa kesuburan tanah pada sistem polikultur dan monokultur sama-sama berada pada kategori sedang, baik sebelum maupun setelah penanaman. Maize is known to have high nutrient requirements, especially nitrogen, phosphorus, and potassium, so repeated planting with monoculture systems without proper fertility management can lead to a decrease in the levels of essential nutrients in the soil. The polyculture system is a solution to increase soil fertility because the basic principle is to prioritize biodiversity and ecosystem balance on agricultural land, by planting various types of plants at the same time, this system creates positive interactions between plant species. This study aims to determine the status of soil fertility in polyculture and monoculture cultivation systems of corn plants. The research was carried out in the experimental garden of the Faculty of Agriculture, Makassar Islamic University, from June to August 2023. The soil sampling method is divided into two, namely soil samples that are disturbed before planting and after harvest, then analyzed in the Soil Chemistry Laboratory. The observed parameters were pH H2O, C-organic (%), N-Total (%), P-Available (ppm), K- available (cmol(+) kg-1), KTK (cmol(+) kg-1). The results of the analysis of the soil fertility index (IKT) value in the polyculture system before planting were 0.56 and after planting increased to 0.722. In the monoculture system, before planting, which is 0.61, it increases to 0.72 where it can be concluded that the soil fertility in the polyculture and monoculture systems is both in the medium category, both before and after planting. 
Comparative antifungal efficacy of Zinnia elegans and Tithonia diversifolia extracts against Fusarium verticillioides: In-vitro study Asmila Asmila; Asti Irawanti Azis; Eka Lestari Ariyanti; Ade Sugiarti Kumalasari
Wallacea Plant Protection Journal Vol. 1 No. 2 (2025)
Publisher : Department of Plant Pest and Diseases, Faculty of Agriculture, Hasanuddin University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.64128/wppj.v1i2.48421

Abstract

Fusarium verticillioides are broad-spectrum pathogens with extensive host ranges and represent a major constraint in agricultural production. Synthetic pesticides are commonly used by farmers to manage Fusarium-induced diseases; however, their intensive application poses serious risks to environmental sustainability and human health. Consequently, the development of eco-friendly disease management strategies is urgently required. Botanical pesticides derived from plant extracts represent a promising alternative. This study evaluated the antifungal effectiveness of Mexican sunflower (Tithonia diversifolia) and zinnia (Zinnia elegans) extracts at different concentrations against Fusarium wilt. The experiment was conducted from September to December 2024 using a completely randomized design (CRD) with six extract treatments (1800, 3600, and 5400 ppm for each plant species) and an untreated control. Antifungal activity was assessed based on the percentage of mycelial growth inhibition. The results demonstrated that both extract type and concentration significantly affected fungal inhibition (p ≤ 0.05). Extract of Z. elegans at 5400 ppm exhibited the highest inhibitory effect, suppressing Fusarium growth by 32.0%, which was significantly higher than all other treatments. In contrast, T. diversifolia extract showed moderate inhibition, with a maximum of 16.5% inhibition at 5400 ppm. The increasing inhibition with higher concentrations indicates a clear dose-dependent response. These findings highlight the scientific significance of plant-based extracts as natural antifungal agents and demonstrate the superior efficacy of Z. elegans extract at higher concentrations. Overall, this study underscores the strong potential of zinnia-based extracts as eco-friendly biofungicide candidates for sustainable management of Fusarium wilt diseases.