Penyusunan E-Monograf Bioteknologi Berbasit Riset Uji Potensi Dan Karakterisasi Kapang Pendegradasi Pestisida Karbofuran
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Amiyati, S., Muhfahroyin, & Sutanto, A. (2020). Pengembangan Monograf Materi Jamur (Fungi) Berbasis Bioentrepreneur untuk Memberdayakan Minat Berwirausaha. Jurnal Lentera Pendidikan Pusat Penelitian LPPM UM Metro, 5(1), 62–74.
Anggreini, C. D. (2019). Bioremediasi Lingkungan Tercemar Klorpirifos. Osf, 1–5.
Apriliya, I., Prasetyo, D., & Remila, S. (2021). Isolasi Bakteri Rhizosfer Resisten Pestisida dan Herbisida pada Berbagai Jenis Tutupan Lahan. Agrotekma, 5(1), 64–71. https://doi.org/10.31289/agr.v5i1.4466 Agrotekma
Hamad, M. T. M. H. (2020). Biodegradation of diazinon by fungal strain Apergillus niger MK640786 using response surface methodology. Environmental Technology and Innovation, 18, 100691. https://doi.org/10.1016/j.eti.2020.100691
Jayawardana, R. S. (2020). Inovasi Pembelajaran Kearsipan Digital di Era Revolusi Industri 4 . 0. Orasi Ilmiah Disampaikan Pada Upacara Dies Natalis Ke-7 Fakultas Ekonomi Universitas Negeri Yogyakarta, June, 0–20.
Lestari, S. R., Abadi, A. L., Himawan, T., Saputra, M. M., & Saadah, F. L. (2024). Novel derivative compound produced from carbofuran insecticide degradation and transformation promoted by Pseudomonas fluorescens. Advanced Agrochem, November. https://doi.org/10.1016/j.aac.2023.11.008
Mishra, S., Zhang, W., Lin, Z., Pang, S., Huang, Y., Bhatt, P., & Chen, S. (2020). Carbofuran toxicity and its microbial degradation in contaminated environments. Chemosphere, 259, 127419. https://doi.org/10.1016/j.chemosphere.2020.127419
Mwevura, H., Kylin, H., Vogt, T., & Bouwman, H. (2021). Dynamics of organochlorine and organophosphate pesticide residues in soil, water, and sediment from the Rufiji River Delta, Tanzania. Regional Studies in Marine Science, 41, 101607. https://doi.org/10.1016/j.rsma.2020.101607
Nafis, B., Tirta, N., Zilhaya, U., Chairunnisa, N., Firdus, & Rizki, Alia Nasir, and M. (2024). LITERATURE REVIEW : KONTAMINASI PESTISIDA membunuh , mencegah , dan mengusir hama serta mengendalikan keberadaan aliran pertanian , aliran persawahan , limbah domestik , dan limbah perkotaan atau. 4(1), 38–43.
Pratiwi, W. M., & Asri, M. T. (2022). Isolasi dan Identifikasi Bakteri Indigenous Pendegradasi Pestisida Profenofos dan Klorantraniliprol di Jombang Jawa Timur. LenteraBio : Berkala Ilmiah Biologi, 11(2), 300–309. https://doi.org/10.26740/lenterabio.v11n2.p300-309
Ruiz-Herrera, J., Cabrera-Ponce, J. L., León-Ramírez, C., Pérez-Rodríguez, F., Salazar-Chávez, M., Sánchez-Arreguín, A., & Vélez-Haro, J. (2019). The developmental history of Ustilago maydis: A saprophytic yeast, a mycelial fungus, mushroom-like, and a smut. In Advancing Frontiers in Mycology and Mycotechnology: Basic and Applied Aspects of Fungi. https://doi.org/10.1007/978-981-13-9349-5_2
Sari, D. N. R., & Anitasari, S. D. (2022). Isolation of Indigenous Fungi in River Containing Ammonia from Rubber Industry Waste in Jember. Journal of Multidisciplinary Applied Natural Science, 2(1), 58–64. https://doi.org/10.47352/jmans.2774-3047.109
Amiyati, S., Muhfahroyin, & Sutanto, A. (2020). Pengembangan Monograf Materi Jamur (Fungi) Berbasis Bioentrepreneur untuk Memberdayakan Minat Berwirausaha. Jurnal Lentera Pendidikan Pusat Penelitian LPPM UM Metro, 5(1), 62–74.
Anggreini, C. D. (2019). Bioremediasi Lingkungan Tercemar Klorpirifos. Osf, 1–5.
Apriliya, I., Prasetyo, D., & Remila, S. (2021). Isolasi Bakteri Rhizosfer Resisten Pestisida dan Herbisida pada Berbagai Jenis Tutupan Lahan. Agrotekma, 5(1), 64–71. https://doi.org/10.31289/agr.v5i1.4466 Agrotekma
Hamad, M. T. M. H. (2020). Biodegradation of diazinon by fungal strain Apergillus niger MK640786 using response surface methodology. Environmental Technology and Innovation, 18, 100691. https://doi.org/10.1016/j.eti.2020.100691
Jayawardana, R. S. (2020). Inovasi Pembelajaran Kearsipan Digital di Era Revolusi Industri 4 . 0. Orasi Ilmiah Disampaikan Pada Upacara Dies Natalis Ke-7 Fakultas Ekonomi Universitas Negeri Yogyakarta, June, 0–20.
Lestari, S. R., Abadi, A. L., Himawan, T., Saputra, M. M., & Saadah, F. L. (2024). Novel derivative compound produced from carbofuran insecticide degradation and transformation promoted by Pseudomonas fluorescens. Advanced Agrochem, November. https://doi.org/10.1016/j.aac.2023.11.008
Mishra, S., Zhang, W., Lin, Z., Pang, S., Huang, Y., Bhatt, P., & Chen, S. (2020). Carbofuran toxicity and its microbial degradation in contaminated environments. Chemosphere, 259, 127419. https://doi.org/10.1016/j.chemosphere.2020.127419
Mwevura, H., Kylin, H., Vogt, T., & Bouwman, H. (2021). Dynamics of organochlorine and organophosphate pesticide residues in soil, water, and sediment from the Rufiji River Delta, Tanzania. Regional Studies in Marine Science, 41, 101607. https://doi.org/10.1016/j.rsma.2020.101607
Nafis, B., Tirta, N., Zilhaya, U., Chairunnisa, N., Firdus, & Rizki, Alia Nasir, and M. (2024). LITERATURE REVIEW : KONTAMINASI PESTISIDA membunuh , mencegah , dan mengusir hama serta mengendalikan keberadaan aliran pertanian , aliran persawahan , limbah domestik , dan limbah perkotaan atau. 4(1), 38–43.
Pratiwi, W. M., & Asri, M. T. (2022). Isolasi dan Identifikasi Bakteri Indigenous Pendegradasi Pestisida Profenofos dan Klorantraniliprol di Jombang Jawa Timur. LenteraBio : Berkala Ilmiah Biologi, 11(2), 300–309. https://doi.org/10.26740/lenterabio.v11n2.p300-309
Ruiz-Herrera, J., Cabrera-Ponce, J. L., León-Ramírez, C., Pérez-Rodríguez, F., Salazar-Chávez, M., Sánchez-Arreguín, A., & Vélez-Haro, J. (2019). The developmental history of Ustilago maydis: A saprophytic yeast, a mycelial fungus, mushroom-like, and a smut. In Advancing Frontiers in Mycology and Mycotechnology: Basic and Applied Aspects of Fungi. https://doi.org/10.1007/978-981-13-9349-5_2
Sari, D. N. R., & Anitasari, S. D. (2022). Isolation of Indigenous Fungi in River Containing Ammonia from Rubber Industry Waste in Jember. Journal of Multidisciplinary Applied Natural Science, 2(1), 58–64. https://doi.org/10.47352/jmans.2774-3047.109
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