Open Access
Issue |
BIO Web Conf.
Volume 119, 2024
The Second International Conference on Agriculture, Natural Resources, and Rural Development “Enabling Policies Towards Resilient Agriculture and Sustainable Rural Development” (2nd ICANaRD)
|
|
---|---|---|
Article Number | 01007 | |
Number of page(s) | 9 | |
Section | Production, Processing and Post-Harvest Handling | |
DOI | https://doi.org/10.1051/bioconf/202411901007 | |
Published online | 12 July 2024 |
- J. Y. Li, J. Wang, and R. S. Zeigler, GigaScience 3, 8 (2014) [CrossRef] [PubMed] [Google Scholar]
- R. T. Terryana, P. Lestari, G. K. D. ArsanaI, K. Nugroho, I. M. J. Mejaya, P. Sasmita, Y. Sastro, K. Mulya, D. W. Utami, and Mastur, Hayati J. Biosci. 29, 749 (2022) [CrossRef] [Google Scholar]
- M. J. Thomson, N. R. Polato, J. Prasetiyono, R. Trijatmiko, T. S. Silitonga, and S. R. McCouch, Rice 2, 80 (2009) [CrossRef] [Google Scholar]
- A. N. Puspito, S. Nabilah, D. M. A. Imam Buqori, S. Hartatik, Kyung-Min Kim, and M. Ubaidillah, Agron. Res. 20, 1104 (2022) [Google Scholar]
- A. Z. Karimah, T. A. Siswoyo, K. M. Kim, and M. Ubaidillah, J. Crop Sci. Biotechnol. 24, 93 (2021) [CrossRef] [Google Scholar]
- D. H. Mursyidin, I. Khairullah, and R. Syamsudin, Agr. Nat. Resour. 56, 95 (2022) [Google Scholar]
- B. Kadidaa, G. R. Sadimantara, Suaib, L. O. Safuan, and Muhidin, Asian J. Crop Sci. 9, 109 (2017) [CrossRef] [Google Scholar]
- U. Solikhah, Parjanto, T. Handoyo, and A. Yunus, Intl. J. Advanced Eng. Inform. Technol. 9, 1046 (2019) [Google Scholar]
- United Nations, Transforming our world: The 2030 agenda for sustainable development (United Nations, New York, 2015) [Google Scholar]
- R. K. Salgotra and B. S. Chauhan, Genes 14, 174 (2023) [CrossRef] [PubMed] [Google Scholar]
- J. M. M. Engel and L. Visser, A guide to effective management of germplasm collections (International Plant Genetic Resources Institute, Fiumicino, 2003) [Google Scholar]
- N. Jamora and V. Ramaiah, CABI Agric. Biosci. 3, 26 (2022) [CrossRef] [Google Scholar]
- Food and Agriculture Organization, The genebank standard for plant genetic resources for food and agriculture (Food and Agriculture Organization, Rome, 2014) [Google Scholar]
- Bioversity International, Developing crop descriptor list: Guidelines for developer (Bioversity International, Rome, 2007) [Google Scholar]
- A. Kumar and V. Kaur, Training program on management of plant genetic resources (Indian Council of Agricultural Research, New Delhi, 2020) [Google Scholar]
- N. Hidayatun, A. Risliawati, H. Kurniawan, N. Dewi, and M. Sabda, Conservation of Indonesia plant genetic resources for food and agricuture in ICABIOGRAD gene bank, in Proceedings of the National Seminar of PERIPI 2017, 3 October 2017, Bogor, Indonesia (2018) [Google Scholar]
- N. Hidayatun, M. Sabran, D. Susilowati, H. Kurniawan, L. Herlina, N. Dewi, Conservation of agricultural genetic resources as an indicator of the Sustainable Development Goals (SDGs) in Indonesia, in Proceedings of the 2nd Agrifood System International Conference, ASIC, 8-9 November 2022, Padang, Indonesia (2023) [Google Scholar]
- N. Hidayatun, M. Sabran, Sutoro, and H. Kurniawan, in Pemanfaatan SDG dan bioteknologi untuk mendukung pertanian berkelanjutan, edited by M. Sabran (IAARD Press, Jakarta, 2018) [Google Scholar]
- IBPGR-IRRI Rice Advisory Committee, Descriptor for rice Oryza sativa L (International Rice Research Institute, Manila, 1980) [Google Scholar]
- M. C. de Vicente, F. A. Guzman, J. M. M. Engels, and R.V. Rao, in The role of biotechnology in exploring and protecting agricultural genetic resources, edited by J. Ruane and A. Sonnino (Food and Agriculture Organization, Rome, 2006), pp.129–138 [Google Scholar]
- S. Adhikari, S. Saha, and A. Biswas, Nucleus 60, 283 (2017) [CrossRef] [Google Scholar]
- G. Barcaccia, in Molecular techniques in crop improvement, edited by S.M. Jain and D. S. Brar (Springer Science+Business Media, Berlin, 2020), pp 231–254 [Google Scholar]
- G. Kumawat, G. Singh, C. Gireesh, M. Shivakumar, M. Arya, D. K. Agarwal, and S. M. Husain, Physiol. Mol. Biol. Plants 21, 101 (2015) [CrossRef] [PubMed] [Google Scholar]
- D. W. Utami, N. Hidayatun, A. Risliawati, and I.H. Somantri, J. Agrobiogen 6, 1 (2013). [Google Scholar]
- J. Prasetiyono, N. Hidayatun, and Tasliah, J. AgroBiogen 14, 1 (2018) [CrossRef] [Google Scholar]
- P. S. Virk, M. S. Andersson, J. Arcos, M. Govindaraj and W. H. Pfeiffer, Front. Plant Sci. 12, 703990 (2021) [CrossRef] [Google Scholar]
- V. Raboy, SABRAO J. Breed. Genet 45, 100 (2013) [Google Scholar]
- The World Bank Group and Asian Development Bank, Climate Risk Country Profile: Indonesia (The World Bank Group, Washington, DC, 2021) [Google Scholar]
- M. Case, F. Ardiansyah, and E. Spector, Climate change in Indonesia: Implications for human and nature (World Wildlife Fund, Washington, DC, 2007) [Google Scholar]
- B. Wang, A. R. Hof, and C. S. Ma, Front. Agr. Sci 9, 4 (2022) [CrossRef] [Google Scholar]
- E. H Iswanto, U. Susanto, and A. Jamil, J. Litbang Pert 34, 187 (2015) [Google Scholar]
- K. Lamba and D. Dono, Asian J. Res. Crop. Sci. 6, 7 (2021) [Google Scholar]
- C. Thorburn, Insects 6, 381 (2015) [CrossRef] [Google Scholar]
- S. E. Baehaki, Iptek Tan. Pangan 7, 8 (2012) [Google Scholar]
- H. R. Hifni, S. Mihardja, E. Soetarwo, Yusida, and M. K. Kardin, Bul. Agrobio 1, 19 (1996) [Google Scholar]
- A. N. Sudir, Santoso, and B. Nuryanto, Iptek Tan. Pangan 9, 85 (2014) [Google Scholar]
- A. E. Asibi, Q. Chai, and J. A. Coulter, Agronomy 9, 451 (2019) [CrossRef] [Google Scholar]
- S. Kadeawi, Swaruno, A. Nasution, A. Hairmansis, M. J. T. Yanoria, M. Obara, N. Hayashi, and Y. Fukuta, Plant Disease. 105, 675 (2020) [Google Scholar]
- Suwardi, Utilisation and improvement of marginal soils for agricultural development in Indonesia, in Proceedings of the 1st International Conference on Agriculture and Rural Development, 8-9 August 2019, Banten, Indonesia (2019) [Google Scholar]
- A. Mulyani and M. Sarwani, J. Sumberdaya Lahan 7, 47 (2013) [Google Scholar]
- J. Pertanika and A. K. Berek, J. Tropical Agric. Sci. 42, 745 (2019) [Google Scholar]
- D. Nursamsi, Pengelolaan lahan sulfat masam untuk pertanian berkelanjutan (IAARD Press, Jakarta, 2014) [Google Scholar]
- Sahrawat and L. Kanwar, J. Plant Nutr. 27, 1471 (2005) [CrossRef] [Google Scholar]
- M. Sabran, D. W. Utami, and Susilawati, Current status of tidal swamp rice varieties and its improvement for Fe toxicity tolerance and biofortification, in Proceedings of the Second International Conference on Genetic Resources and Biotechnology, 24-25 May 2021, Bogor, Indonesia (2022) [Google Scholar]
- V. Novianti, Indradewa, Maryani and D. Rachmawati, J. Crop Sci. Biotechnol 26, 369 (2023) [CrossRef] [Google Scholar]
- Food and Agriculture Organization, Understanding the drought impact of El Niño on the global agricultural areas: An assessment using FAO’s Agricultural Stress Index (ASI) (Food and Agriculture Organization, Rome, 2014) [Google Scholar]
- R. Boer and S. Arjunapermal, in Monitoring and predicting agricultural drought: A global study, edited by V. K. Boken, A. P Cracknell, and R. L. Heathcote (Oxford Academic, Oxford, 2020) [Google Scholar]
- S. Ritung, E. Suryani, and D. Subardja, Sumberdaya lahan pertanian Indonesia: Luas, penyebaran, dan potensi ketersediaan (IAARD Press, Jakarta, 2015) [Google Scholar]
- S. Purnama, Antara Kantor Berita Indonesia (2023) [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.