Increasing Production of Rainfed Lowland Rice in Drought Prone Environments

Author:

Fukai Shu1,Sittisuang Prasoot2,Chanphengsay Monthathip3

Affiliation:

1. Department of Agriculture, The University of Queensland, Brisbane, Queensland 4072, Australia

2. Department of Agriculture, The University of Queensland, Bangkok, Thailand

3. Department of Agriculture and Extension, Vientiane, Lao PDR

Publisher

Informa UK Limited

Subject

Agronomy and Crop Science

Reference19 articles.

1. Bhuiyan S.I. 1994. On-farm Resevoir Systems for Rainfed Ricelands. International Rice Research Institute, Manila, Philippines. 1–164.

2. Cooper M. and Somrith B. 1997. Implications of genotype-by-environment interactions for yield adaptation of rainfed lowland rice : Influence of flowering date on yield variation. In S. Fukai, M. Cooper and J. Salisbury eds., Proceedings of Workshop, Plant Breeding Strategies for Rainfed Lowland Rice in Drought Prone Environments. ACIAR, Canberra. 104–114.

3. Fukai S. 1996. Crop physiological approaches to understanding rice production under water limiting conditions. In R. Ishii and T. Horie eds., Proceedings of the 2nd Asian Crop Science Conference. Asian crop Sci. Assoc. Tokyo. 240–245.

4. Fukai S. and Cooper M. 1995. Development of drought-resistant cultivars using physio-morphological traits in rice. Field Crops Res. 40:67–86.

5. Fukai S., Rajatasereekul S., Boonjung H. and Skulkhu E. 1995. Simulation modelling to quantify the effect of drought for rainfed lowland rice in Northeast Thailand. IRRI -International Rice Research Institute. Fragile Lives in Fragile Ecosystems : Proceedings of International Rice Research Conference. IRRI, Manila, 657–674.

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