2013, Issue 2, Volume 5

SIMULATION ANALYSIS OF ELEVATED CO2 AND TEMPERATURE WITH RICE GROWTH MODEL ORYZA 2000 UNDER DRIP-FERTIGATED AEROBIC RICE

View: Full Text Article

K. Vanitha

Department of Crop Physiology,

Tamil Nadu Agricultural University, Coimbatore 641 003. INDIA.

Corresponding email:  vanithacrp@gmail.com

Abstract: Simulation analysis with well calibrated and validated dynamic model of ORYZA2000 using present data inputs of drip  fertigation  system  indicated  that  temperature-induced  yield  alterations  in  future  climates  could  be  favourably mitigated with the CO2 fertilization along with fertigation practices. With the decline of the already limited water available for rice production, there is a need to adopt Water-saving measures such as aerobic rice to meet the challenge of feeding billions of people living and relying on rice. The crop growth model ORYZA2000 was used to calculate seasonal water balances of drip fertigation and flood irrigated aerobic rice study was conducted in Tamil Nadu agricultural university, India from 2007 during dry season.

Keywords: Simulation; Model; aerobic Rice; Elevated CO2; Temperature increment; Grain yield

REFERENCES

Acock, B. and Jr Allen L.H. Crop responses to elevated carbon dioxide concentrations. Pages 53-98. In:  Strain  B R,  Cure J D (Eds.) Direct  effects  of increasing  carbon  dioxide  on  vegetation.  United States  Department  of  Energy  DOE  /  ER  –  0238,

1985. USA.

Baker, J.T. and Jr Allen L.H. (1993). Effect of CO2 and temperature on rice: A summary of five growing seasons. J Agric Meteor, 48: 575-582.

Belder, P.; Bouman, B.A.M.; Spiertz, J.H.J. and Guoan,  L.  (2007).  Exploring  options  for  water savings in lowland rice using a modeling approach. Agric Syst, 92: 91-114.

Boling, A.; Bouman, B.A.M.; Tuong, T.P.; Murty, M.V.R.   and   Jatmiko,   S.Y.   (2007).   Increasing rainfed rice productivity in central Java, Indonesia: A modeling approach using ORYZA2000. Agric Syst,

92: 115-139.

Bouman, B.A.M. and van Laar, H.H. (2006). Description and evaluation of the rice growth model ORYZA2000   under   nitrogen-limited   conditions. Agric Syst, 87: 249-273.

Bouman, B.A.M.; Feng, L.; Tuong, T.P.; Lu, G.; Wang, H. and Feng, Y. (2007). Exploring options to grow rice under water-short conditions in Northern China using a  modeling  approach.  II:  Quantifying yield,    water    balance    components    and    water productivity. Agric Water Manage, 88: 23-33. Bouman,  B.A.M.;  Kropff,  M.J.;  Tuong,  T.P.; Wopereis,  M.C.S.;  Ten Berge,  H.F.M.  and  van Laar,    H.H.    (2001).    ORYZA2000:    Modeling Lowland Rice. International Rice Research Institute, Los Banos, Philippines. 235 pp.

Cure, J.D. (1985). Carbon dioxide doubling responses: A crop survey. Pages 99-116. In: Strain B R,  Cure  J  D  (Eds.).  Direct  effects  of  increasing carbon di oxide on vegetation, U.S. Department of Energy, 1985. DOE / ER-0238.

Cure, J.D. and Acock, B. (1986). Crop responses to carbon dioxide doubling: A literature survey. Agric For Meteorol, 38: 127-145.

Feng, L.; Bouman, B.A.M.; Tuong, T.P.; Cabangon,  R.J.;  Li,  Y.;  Lu,  G.  and  Feng,  Y. (2007).  Exploring  options to  grow rice  using  less water in northern China using a modeling approach. I. Field experiments and model evaluation. Agric Water Manage, 88: 1-13.

Gomez, K.A. and Gomez, A.A. (1984). Statistical procedures for agricultural research.  (2nd  Ed.) John Wiley and Sons, New York, USA. 1984. 680 p. Keeling,  C.D.;  Carter,  A.F.  and  Mook,  W.G. (1984). Seasonal, latitudinal and secular variations in the  abundance  and  isotopic  ratios  of  atmospheric CO2. J Geophys Res, 89: 4615-4628.

Kropff, M.J.; Van Laar, H.H. and Matthews, R.B.

(1994).  ORYZA1:  An ecophysiological model for

irrigated rice production         .     SARP Research Production,   IRRI,   Los Banos  ,   Philippines   and Wageningen, 1994, 110 p.

Matthews, R.B.; Kropff, M.J.; Bachelet,  D. and Vann Laar, H.H. (1995a). Modeling the impact of climate  change  on  rice  production  in  Asia.  CAB International, Wallingford, UK. 1995a, 289 p. Matthews, R.B.; Kropff, M.J.; Bachelet, D.; Horie, T.;   Lee,   M.H.;   Centeno,   H.G.S.;   Shin,   J.C.; Mohandass, S.; Singh, S. and Defeng, Z. (1995b). Modelling  the  impact  of  climate  change  on  rice production in Asia. 1995b. Pages 314-325. In: Peng S, Ingram K T, Neue H U, Ziska L H. (Eds.) Climate change and rice. Springer-Verlag, New York , USA and IRRI, Los Banos, Philippines.

Matthews, R.B.; Horie, T.; Kropff, M.J.; Bachelet, D.;         Centeno,         H.G.S.;         Shin,         J.C.; Mohandass, S.; Singh, S.; Defeng, Z. and   Lee, M.H. (1995c). A regional evaluation of the effect of future  climate  change  on  rice  production  in  Asia.

1995c.  Pages 95-139.  In:  Modeling  the impact  of

climate  change  on  rice  production  in  Asia.  CAB International,  Wallingford,  U.K  and  International Rice Research Institute, Los Baños, Philippines. Mohandass, S.; Kareem, A.A.; Ranganthan, T.B. and Jayaraman, S. (1995). Rice production in India under current and future climates. 1995. Pages 165-

181. In: Matthews  R B, Kropff M J, Bachelet  D, Vann  Laar  H  H  (Eds.).  Modeling  the  impact  of climate change on rice production in Asia. CAB International, Wallingford, UK.

Mohandass, S.; Thiyagarajan, T.M.; Palanisamy, S. and Kareem, A.A. (1993). Impact of increased temperature and CO2 on rice productivity in Cauvery Delta Zone, India-A simulation analysis. J Agric Meteor, 52: 721-726.

Penning de Vries,  F.W.T. (1993). Rice production and   climate   change.   1993.   Pages   175-192.   In: Penning de Vries F W T, Teng P S, Metselaar  K (Eds.) Systems approaches for agricultural development. Kluwer Academic Publishers, Dordrecht, The Netherlands.

Sionit, N.; Hellmers, H. and Strain, B.R. (1980). Growth and yield of wheat under  CO2   enrichment and water stress. Crop Sci, 20: 456-458.

Srivastava, S.K.; Meena Rani, H.C.; Jayaraman, V.; Bandyopadhyay, S.; Phene, S.G.; Mohandass, S.; Palanisamy, K.; Nayak, S.K. and Paul, J.V. (2004).  Dynamics  of  biospheric  aspect  of hydrological cycle (BAHC) in rice agro-ecosystems of India. ISRO-GBP Scientific Report No. 10. 2004. Indian Space Research Organization (ISRO), Bangalore, India. 92 pp.

Yoshida, S. (1981). Fundamentals of rice crop science. International Rice Research Institute, Los Baños, Philippines. 299 pp.