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Growth and Yield Under Low Solar Radiation During the Reproductive Growth Stages of Rice Plants

벼의 생식생장기 일조부족이 생육 및 수량에 미치는 영향

  • Received : 2016.05.24
  • Accepted : 2016.06.08
  • Published : 2016.06.30

Abstract

Recently, rice growth and production have been influenced by climatic change worldwide. In particular, under low solar radiation and cloudy weather, rice plants show abnormal physiological responses. In this experiment, plants of the rice cultivar Samgwangbyeo grown 40% and 70% shading and natural conditions at the primordium initiation stage (PI) for 30 days and the booting stage for 10 days up to heading were compared. After shading treatments, culm lengths were significnatly longer than that in natural condition plots, and panicle lengths were shorter in the 40% and 70% shading treatment plots compared to control plots. After heading, the production of dry matter treated at the PI stage was significantly lower than that at the booting stage. SPAD values of the leaf color and N concentration of leaves treated with shading were greater than those under natural conditions. In the shading treatment, the lodging index at 20 days after heading was significantly higher than that in natural condition. For yield components, number of panicles, spikelet number per panicle, and ripened grain ratio significantly decreased with shading treatment; thus, rice yield decreased significantly. For rice quality, the protein content of the head rice treated with shading was significantly higher than that in the control plot, but the amylose content of rice treated with shading was signifiantly lower than that in rice in control plots.

벼의 일조부족에 대한 생리적 반응을 조사하기 위하여 유수형성기와 수잉기에 각각 40%, 70% 차광처리를 출수직전까지 처리한 결과를 요약하면 다음과 같다. 1. 유수형성기와 수잉기에 차광처리후 출수기 간장은 차광처리가 유의하게 길어졌고, 수장은 유의하게 감소하였다. 2. 출수 후 건물생산량은 무처리에 비하여 차광 처리구에서 현저하게 감소하였으며 유수형성기 처리가 수잉기 처리에 비하여 유의한 감소를 보였고, 40% 차광처리보다 70% 차광처리에서 현저하게 감소하였다. 3. 차광처리구의 출수 후 잎의 엽색도와 질소 함량은 무처리에 비하여 유수형성기와 수잉기 처리 모두 차광 처리 정도가 높을수록 높아졌다. 4. 출수 후 20일에 벼 식물체 도복지수는 차광처리가 현저히 높아졌으며, 유수형성기 처리구가 수잉기 처리보다 유의하게 높아졌다. 5. 차광처리는 수량구성요소 중에서 이삭수와 이삭당 영화수를 감소시켰으며, 등숙률과 천립중을 감소시킴으로서 수량을 유의하게 감소시켰다. 6. 차광처리는 쌀의 단백질 함량을 높였으며 아밀로스 함량은 감소폭이 크지 않았다.

Keywords

References

  1. Biswas, P. K. and Salokhe. 2002. Effects of N rates, shading, tiller separation, and plant density on the yield of transplanted rice. Tropical Agri. 79(3) : 168-172.
  2. Chowdhury, P. K. and M. Jayapragasam. 1994. Biochemical changes in low-irradiance tolerant and susceptible rice cultivars. Biologia Plantarium. 36(2) : 237-242. https://doi.org/10.1007/BF02921092
  3. Dobermann, A., D. Dawe, R. P. Roetter, and K. G. Cassman. 2000. Reversal of rice yield decline in a long-term continuous cropping experiment. Agron. J. 92(4) : 633-643. https://doi.org/10.2134/agronj2000.924633x
  4. Evans, L. T. and S. K. De Datta. 1979. The relationship between irradiance and grain yield of irrigated rice in the tropics, as influenced by cultivar, nitrogen fertilizer application and month of planting. Field Crops Res. 2 : 1-17. https://doi.org/10.1016/0378-4290(79)90002-9
  5. Gibson, K. D., A. J. Fischer, and T. C. Foin. 2004. Compensatory responses of late watergrass (Echinochloa phyllopogon) and rice to resource limitations. Weed Sci. 52(2) : 271-280. https://doi.org/10.1614/WS-03-103R
  6. Islam, M. S. and J. I. L. Morison. 1992. Influence of solar-radiation and temperature on irrigated rice grain-yield in Bangladesh. Field Crops Res. 30(1-2) : 13-28. https://doi.org/10.1016/0378-4290(92)90053-C
  7. Juliano, B. O. 1979. Amylose analysis in rice-A Review. Proc. of the workshop on Chemical Aspects of Rice Grain Quality, IRRI: 251-260.
  8. Kim, K. S., S. K. Kim, B. L. Huh, and K. M. Yoon. 1991. Effects of shading at heading stage on yield components in rice. Korea J. Crop Sci. 36(2) : 127-133.
  9. Makino, A., T. Sato, H. Nakano, and T. Mae. 1997. Leaf photosynthesis and nitrogen allocation in rice under different irradiance. Planta. 203(3) : 390-398.
  10. Nakano, H. 2000. Effect of early stage shading of direct-seeded rice on growth and yield components. Jpn. J. Crop Sci. 69(2) : 182-188. https://doi.org/10.1626/jcs.69.182
  11. RDA. 2003. Research standard rules of agricultural experiment, Korea (in Korean).
  12. RDA. 2007. Analysis methods of plants, Korea (in Korean).
  13. Samarajeewa, K. B. D. P., N. Kojima, J. Sakagami, and W. A. Chandanie. 2005. The effect of different timing of top dressing of nitrogen application under low light intensity on the yield of rice (Oryza sativa L.). J. Agron. Crop Sci. 191(2) : 99-105. https://doi.org/10.1111/j.1439-037X.2004.00132.x
  14. Tamaki, M. and Y. Yamamoto. 1997. Effect of shading and nitrogen fertilizer levels on flag leaf emergence rate and tillering of rice plants, with special reference to the turning point of the leaf emergence rate. Jpn. J. Crop Sci. 66(1) : 29-34. https://doi.org/10.1626/jcs.66.29
  15. Viji, M. M., M. Thangaraj, and M. Jayapragasam. 1997. Effect of low light on photosynthetic pigments, photochemical effciency and Hill reaction in rice (Oryza sativa L.). J. Agron. Crop Sci.-Zeitschrift fur Acker und Pflanzenban. 178(4) : 193-196. https://doi.org/10.1111/j.1439-037X.1997.tb00490.x
  16. Yamamoto, Y., H. Kurokawa, Y. Nitta, and T. Yoshida. 1995. Varietal difference of tillering response to shading and nitrogen levels in rice plant-Comparison between high tillering semidwarf indica and low tillering japonica. Jpn. J. Crop Sci. 64(2) : 227-234. https://doi.org/10.1626/jcs.64.227
  17. Yao, Y., Y. Yamamoto, T. Yoshida, Y. Nitta, and A. Miyazaki. 2000. Response of differentiated and degenerated spikelets to top-dressing, shading and day/night temperature treatments in rice cultivars with large panicles. Soil Sci. Plant Nutr. 46(3) : 631-641. https://doi.org/10.1080/00380768.2000.10409128

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