Open Access
Issue |
BIO Web Conf.
Volume 69, 2023
The 2nd International Conference on Agriculture, Food, and Environment (2nd ICAFE 2023)
|
|
---|---|---|
Article Number | 01029 | |
Number of page(s) | 18 | |
Section | Agricultural Sciences and Engineering | |
DOI | https://doi.org/10.1051/bioconf/20236901029 | |
Published online | 16 October 2023 |
- O. Erenstein, M. Jaleta, K. Sonder, K. Mottaleb, and B. M. Prasanna, “Global maize production, consumption and trade: trends and R&D implications,” Food Security, vol. 14, pp. 1295–1319, 2022, DOI: 10.1007/s12571-022-01288-7. [CrossRef] [Google Scholar]
- FAO [Food and Agriculture Organization of the United Nations], “World Food Situation: Global cereal production heading for a record high,” [Online]. Available: https://www.fao.org/worldfoodsituation/csdb/en/ (Accessed: 17-Jul-2023). [Google Scholar]
- S. Makmur, D.U. Sainuddin, “Pengaruh Berbagai metode aplikasi pupuk terhadap pertumbuhan dan produksi tanaman jagung (Zea mays L.),” AGROVITAL Jurnal Ilmu Pertanian, vol. 5, no. 1, pp. 11–16, 2020, DOI: 10.35329/agrovital.v5i1.631. [CrossRef] [Google Scholar]
- S.H. Kalqutny and S. Pakki, “The resistance of various maize germplasms collected from several regions in Indonesia to downy mildew (Peronosclerospora philippinensis),” in Proceedings of The 1st International Conference on Sustainable Cereals and Crops Production Systems in the Tropics (ICFST), IOP Conference Series: Earth and Environmental Science, vol. 484, 2020, p. 012098, DOI: 10.1088/1755-1315/484/1/012098. [Google Scholar]
- H. Mirsam et al., “Molecular characterization of indigenous microbes and its potential as a biological control agent of Fusarium stem rot disease (Fusarium verticillioides) on maize,” Heliyon, vol. 8, no. 12, p. e11960, 2022, DOI: 10.1016/j.heliyon.2022.e11960. [CrossRef] [PubMed] [Google Scholar]
- Suriani et al., “Morpho-physiological and molecular characteristics of bacteria causing stalk rot disease on corn in Gorontalo, Indonesia,” Biodiversitas, vol. 24, no. 3, pp. 1749–1758, 2023, DOI: 10.13057/biodiv/d240349. [Google Scholar]
- S.H. Kalqutny, S. Pakki, and A. Muis, “The potential use of DNA based molecular techniques in the study of maize downy mildew,” Agrosainstek, vol. 4, no. 1, pp. 17–27, 2020, DOI: 10.33019/agrosainstek.v4i1.107. [CrossRef] [Google Scholar]
- C. Ginting et al., “Identification of maize downy mildew pathogen in Lampung and the effects of varieties and metalaxyl on disease incidence,” Annual Research & Review in Biology, vol. 35, no. 7, pp. 23–35, 2020, DOI: 10.9734/ARRB/2020/v35i730244. [CrossRef] [Google Scholar]
- A. Muis et al., “Peronosclerospora neglecta sp. nov.—a widespread and overlooked threat to corn (maize) production in the tropics,” Mycological Progress, vol. 22, p. 12, 2023, DOI: 10.1007/s11557-022-01862-5. [CrossRef] [Google Scholar]
- H. Mirsam et al., “Genotype resistance of hybrid corn varieties candidate against major corn diseases,” in Proceedings of The 2nd International Conference on Sustainable Cereals and Crops Production Systems in the Tropics (ICFST), IOP Conference Series: Earth and Environmental Science, vol. 911, 2021, p. 012054, DOI: 10.1088/1755-1315/911/1/011002. [Google Scholar]
- R. K. Chugh, M. J. Kumar, and S. Kumar, “Growth modeling for prediction of cotton leaf curl disease (CLCuD),” J. Cotton Res. Dev., vol. 34, no. 2, pp. 291–300, 2020. [Google Scholar]
- M. J. Jeger, “The Epidemiology of plant virus disease: towards a new synthesis,” Plants, vol. 9, no. 12, p. 1768, 2020, DOI: 10.3390/plants9121768. [CrossRef] [PubMed] [Google Scholar]
- T. Maryono, A. Widiastuti, R. H. Murti, and A. Priyatmojo, “Epidemic components of sugarcane root and basal stem rot in South Sumatra,” Jurnal Fitopatologi Indonesia, vol. 16, no. 2, pp. 49–60, 2020, DOI: 10.14692/jfi.16.2.49-60. [CrossRef] [Google Scholar]
- “Climate and Geography of Gowa,” Central Bureau of Statistics (CBS) Gowa, Central Statistics Agency of South Sulawesi, Makassar, 2018. [Online]. Available: https://gowakab.bps.go.id/. [Google Scholar]
- K. S. Hooda, P. K. Bagaria, Mukesh Khokhar, Harleen Kaur, and Sujay Rakshit, “Mass screening techniques for resistance to maize diseases,” ICAR-Indian Institute of Maize Research, PAU Campus, Ludhiana-141004, 93pp, 2018. [Google Scholar]
- J. M. López-Vásquez and J. Castaño-Zapata, “Assessment of the level of adjustment of three epidemiological models in the analysis of epidemics with incidences less than 100% such as the lethal wilt of oil palm (Elaeis guineensis Jacq.),” Rev. Acad. Colomb. Cienc. Ex. Fis. Nat., vol. 46, no. 178, pp. 118–130, 2022, DOI: 10.18257/raccefyn.1571. [Google Scholar]
- T. Kikway, A. P. Keinath, and P. S. Ojiambo, “Temporal dynamics and severity of cucurbit downy mildew epidemics as affected by chemical control and cucurbit host,” Plant Disease, vol. 106, no. 3, pp. 1009–1019, 2022, DOI: 10.1094/PDIS-09-21-1992-RE. [CrossRef] [PubMed] [Google Scholar]
- S. Caulier et al., “Versatile Antagonistic Activities of Soil-Borne Bacillus spp. and Pseudomonas spp. against Phytophthora infestans and Other Potato Pathogens,” Frontiers in Microbiology, vol. 9, p. 143, 2018, DOI: 10.3389/fmicb.2018.00143. [CrossRef] [PubMed] [Google Scholar]
- A. Salcedo, M. Hausbeck, S. Pigg, and L. M. Quesada-Ocampo, “Diagnostic guide for cucurbit downy mildew,” Plant Health Progress, vol. 21, no. 3, pp. 166–172, 2020, DOI: 10.1094/PHP-12-19-0095-DG. [CrossRef] [Google Scholar]
- A. Salcedo, M. Hausbeck, S. Pigg, and L. M. Quesada-Ocampo, “Diagnostic guide for cucurbit downy mildew,” Plant Health Progress, vol. 21, no. 3, pp. 166–172, 2020, DOI: 10.1094/PHP-12-19-0095-DG. [CrossRef] [Google Scholar]
- M. A. Ulhaq and R. Masnilah, “The effect of using several varieties and application of pseudomonas to control downy mildew (Peronosclerospora maydis) pada tanaman jagung (Zay mays L),” Jurnal Pengendalian Hayati, vol. 2, no. 1, pp. 1–9, 2019, DOI: 10.19184/jph.v2i1.17131. [CrossRef] [Google Scholar]
- S. L. Kandel, B. Mou, N. Shishkoff, A. Shi, K. V. Subbarao, and S. J. Klosterman, “Spinach downy mildew: Advances in our understanding of the disease cycle and prospects for disease management,” Plant Disease, vol. 103, no. 5, pp. 791–803, 2019, DOI: 10.1094/PDIS-10-18-1720-FE. [CrossRef] [PubMed] [Google Scholar]
- R. N. F. Kurosawa, M. Vivas, A. T. Junior, R. M. Ribeiro, S. B. Miranda, G. F. Pena, J. T. Leite, and F. Mora, “Popcorn germplasm resistance to fungal diseases caused by Exserohilum turcicum and Bipolaris maydis,” Bragantia, vol. 77, no. 1, pp. 36–47, 2018, DOI: 10.1590/1678-4499.2017035. [CrossRef] [Google Scholar]
- C. M. Ferreira et al., “Characterization of the Bipolaris maydis: symptoms and pathogenicity in popcorn genotypes (Zea mays L.),” Brazilian Journal of Biology, vol. 84, p. e256799, 2021, DOI: 10.1590/1519-6984.256799. [Google Scholar]
- L. Rimbaud, J. Papaïx, J. F. Rey, L. G. Barrett, and P. H. Thrall, “Assessing the durability and efficiency of landscape-based strategies to deploy plant resistance to pathogens,” PLOS Computational Biology, vol. 14, no. 4, p. e1006067, 2018, DOI: 10.1371/journal.pcbi.1006067. [Google Scholar]
- Q. Sun et al., “Southern corn rust caused by Puccinia polysora Underw: a review,” Phytopathology Research, vol. 3, p. 25, 2021, DOI: 10.1186/s42483-021-00102-0. [CrossRef] [Google Scholar]
- L. Velasquez-Camacho, M. Otero, B. Basile, J. Pijuan, and G. Corrado, “Current trends and perspectives on predictive models for mildew diseases in Vineyards,” Microorganisms, vol. 11, no. 1, p. 73, 2023, DOI: 10.3390/microorganisms11010073. [Google Scholar]
- M. Azrai, H. Aswidinnoor, J. Koswara, M. Suharman, and J. R. Hidajat, “Analisis genetik ketahanan jagung terhadap bulai,” Jurnal Penelitian Pertanian Tanaman Pangan, vol. 25, no. 2, pp. 71–77, 2006. [Google Scholar]
- K. H. Ye et al., “Effect of cultivation measures on sheath blight and southern leaf blight of corn,” Plant Prot., vol. 41, pp. 154–159, 2015. [Google Scholar]
- X. Sun et al., “Etiology and Symptoms of Maize Leaf Spot Caused by Bipolaris spp. in Sichuan, China,” Pathogens, vol. 9, p. 229, 2020, DOI: 10.3390/pathogens9030229. [CrossRef] [PubMed] [Google Scholar]
- X. H. Li et al., “Correlation between Puccinia polysora Underw. spore number and disease index and meteorological factors,” Acta Phytopathol Sin., vol. 49, no. 3, pp. 362–369, 2019. [Google Scholar]
- S. H. Kalqutny and S. Pakki, “The resistance of various maize germplasms collected from several regions in Indonesia to downy mildew (Peronosclerospora philippinensis),” IOP Conference Series: Earth and Environmental Science, vol. 484, 2020, DOI: 10.1088/1755-1315/484/1/012098. [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.