Cassava breeding and agronomy in Asia: 50 years of history and future directions

Author:

Malik Al Imran1,Kongsil Pasajee2,Nguyễn Vũ Anh3,Ou Wenjun4,Sholihin 5,Srean Pao6,Sheela MN7,Becerra López-Lavalle Luis Augusto8,Utsumi Yoshinori39,Lu Cheng4,Kittipadakul Piya2,Nguyễn Hữu Hỷ10,Ceballos Hernan8,Nguyễn Trọng Hiển11,Selvaraj Gomez Michael8,Aiemnaka Pornsak2,Labarta Ricardo8,Chen Songbi4,Amawan Suwaluk12,Sok Sophearith13,Youabee Laothao1,Seki Motoaki39,Tokunaga Hiroki39,Wang Wenquan4,Li Kaimian4,Nguyễn Hai Anh3,Nguyễn Văn Đồng3,Hàm Lê Huy3,Ishitani Manabu38

Affiliation:

1. International Center for Tropical Agriculture (CIAT-Laos), Lao PDR Office

2. Department of Agronomy, Faculty of Agriculture, Kasetsart University

3. International Laboratory for Cassava Molecular Breeding, National Key Laboratory for Plant Cell Biotechnology, Agricultural Genetics Institute

4. Chinese Academy of Tropical Agricultural Sciences (CATAS)

5. Indonesian Legume and Tuber Crops Research Institute

6. Faculty of Agriculture & Food Processing, University of Battambang

7. Central Tuber Crops Research Institute Sreekariyam

8. International Center for Tropical Agriculture (CIAT)

9. RIKEN Center for Sustainable Resource Science

10. Hung Loc Agricultural Research Center, Institute for Agriculture in Southern Vietnam

11. Root and Tuber Crop Research and Development Center, Food and Field Crop Research Institute

12. Rayong Field Crops Research Center

13. International Center for Tropical Agriculture (CIAT-Asia)

Publisher

Japanese Society of Breeding

Subject

Plant Science,Genetics,Agronomy and Crop Science

Reference168 articles.

1. Abraham, K., S.G. Nair and S.K. Naskar (2001) Cassava breeding and varietal dissemination in India—Major achievements during past 25–30 years. In: Howeler, R.H. (ed.) Cassava’s Potentials in the 21st Century: Present Situation and Future Research and Development Needs. CIAT Regional Workshop, Ho Chi Minh City, Vietnam, pp. 174–184.

2. Aiemnaka, P., A. Wongkaew, J. Chanthaworn, S.K. Nagashima, S. Boonma, J. Authapun, S. Jenweerawat, P. Kongsila, P. Kittipadakul, S. Nakasathien et al. (2012) Molecular characterization of a spontaneous waxy starch mutation in cassava. Crop Sci. 52: 2121–2130.

3. Akano, A., A. Dixon, C. Mba, E. Barrera and M. Fregene (2002) Genetic mapping of a dominant gene conferring resistance to cassava mosaic disease. Theor. Appl. Genet. 105: 521–525.

4. Amuge, T., D.K. Berger, M.S. Katari, A.A. Myburg, S.L. Goldman and M.E. Ferguson (2017) A time series transcriptome analysis of cassava (Manihot esculenta Crantz) varieties challenged with Ugandan cassava brown streak virus. Sci. Rep. 7: 9747.

5. An, F., J. Fan, J. Li, Q.X. Li, K. Li, W. Zhu, F. Wen, L.J.C.B. Carvalho and S. Chen (2014) Comparison of leaf proteomes of Cassava (Manihot esculenta Crantz) cultivar NZ199 diploid and autotetraploid genotypes. PLoS ONE 9: e85991.

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