Research Paper

Effects of Toxic Levels of Aluminium on Seedling Parameters of Rice under Hydroponic Culture

Expand
  • Department of Genetics and Plant Breeding, Regional Research Station, Terai Zone, Uttar Banga Krishi Viswavidyalaya, Pundibari, Cooch Behar 736 165, West Bengal, India

Online published: 2014-07-24

Abstract

The presence of Al in the rhizosphere of rice in acid soil restricts root growth and significantly reduces crop productivity. In this study, the effects of Al (30, 60 and 90 µg/mL) on seedling root growth, number of primary roots per seedling, seedling shoot length, number of leaves per seedling, seedling fresh weight, and seedling dry weight were studied. Rice genotypes were classified into three different classes, namely, tolerant, moderately tolerant, and susceptible, based on root tolerance index. The method of hydroponic culture was modified, and elaborated in the text. Toxic levels of Al in nutrient solution significantly decreased seedling root growth, number of primary roots, seedling shoot length, number of leaves per seedling, seedling fresh weight, and seedling dry weight. Few genotypes showed longer root length at 30 µg/mL Al in nutrient solutions compared with the control. High levels of Al in nutrient solutions were highly toxic for rice seedlings. Based on root tolerance index, Radhunipagal, Gobindobhog, Badshabhog, Kalobhog, UBKVR-11, UBKVR-16, UBKVR-18, Khasha and IVT4007-B were classified as tolerant genotypes, and these genotypes may be used as donors for breeding of Al-toxicity tolerance.

Cite this article

Bidhan ROY, Sanjib BHADRA . Effects of Toxic Levels of Aluminium on Seedling Parameters of Rice under Hydroponic Culture[J]. Rice Science, 2014 , 21(4) : 217 -223 . DOI: 10.1016/S1672-6308(13)60182-1

References

Aniol A M. 1995. Physiological aspects of aluminum tolerance associated with the long arm of chromosome 2D of the wheat (Triticum aestivum L.) genome. Theor Appl Genet, 91(3): 510?516.
Campbell K A G, Caster T E Jr, Anderson J M. 1989. Aluminium tolerance of soybean callus culture: Comparison with greenhouse and solution culture screening methods. Soybean Genet Newsl, 16: 191?193.
de Macedo C C, Kinet J M, van Sint Jan V. 1997. Effects of duration and intensity of aluminum stress on growth parameters in four rice genotypes differing in aluminum sensitivity. J Plant Nutr, 20(1): 181?193.
Dobermann A, Fairhurst T H. 2000. Rice: Nutrient Disorder and Nutrient Management. Potash Phosphate Institute of Canada and International Rice Research Institute, Philippines: 191.
Eswaran H, Reich P, Beinroth F. 1997. Global distribution of soils with acidity. In: Moniz A C. Plant-Soil Interactions at Low pH. Brazilian Soil Science Society, Belo Horizonte Minas Gerais, Brazilian: 159?164.
Famoso A N, Clark R T, Shaff J E, Craft E, McCouch S R, Kochian L V. 2010. Development of a novel aluminum tolerance phenotyping platform used for comparisons of cereal aluminum tolerance and investigations into rice aluminum tolerance mechanisms. Plant Physiol, 153(4): 1678?1691.
Foy C D. 1992. Soil chemical factors limiting plant root growth. In: Hatfield J L, Stewart B A. Advances in Soil Sciences: Limitations to Plant Root Growth. New York: Springer-Verlag: 19: 97?149.
Foy C D. 1996. Tolerance of barley cultivars to an acid, aluminium-toxic subsoil related to mineral element concentrations in their shoots. J Plant Nutr, 19: 1361?1380.
Ganesan K, Sankaranarayanan C, Balakumar T. 1993. Physiological basis of differential aluminum tolerance in rice genotypes. Comm Soil Sci Plant, 24(17/18): 2179?2191.
Guo T R, Yao P C, Zhang Z D, Wang J J, Wang M. 2013. Involvement of antioxidative defense system in rice seedlings exposed to aluminum toxicity and phosphorus deficiency. Chin J Rice Sci, 27(6): 653?657. (in Chinese with English abstract)
Hanson W D, Kamprath E J. 1979. Selection for aluminium tolerance in soybean based on seedling-root growth. Agron J, 71(4): 581?586.
IRRI. 1977. Annual Report. International Rice Research Institute, Manila, Philippines: 548.
Kerridge P C, Dawson M D, Moore D P. 1971. Separation of degrees of aluminium tolerance in wheat. Agron J, 63: 586?591.
Kim B Y, Baier A C, Somers D J, Gustafson J P. 2001. Aluminum tolerance in triticale, wheat and rye. Euphytica, 120(3): 329?337.
Matsumoto H. 2000. Cell biology of aluminum toxicity and tolerance in higher plants. Inter Rev Cy996. Aluminum tolerance of 1BL.1RS and 1AL.1RS near-isolines in soft red winter wheat. Crop Sci, 36(4): 978?990.
Meriga B, Attitalla I H, Ramgopal M, Ediga A, Kavikishor P B. 2010. Differential tolerance to aluminium toxicity in rice cultivars: Involvement of antioxidative enzymes and possible role of aluminium resistant locus. Acad J Plant Sci, 3(2): 53?63.
Moore D P, Kronstad W E, Metzger R J. 1976. Screening wheat for aluminum tolerance. In: Wright M J, Ferrari S tol, 200: 1?46.
Mckendry A L, Tague D N, Somers D J. 1
A. Plant Adaptation to Mineral Stress in Problem Soils. Ithaca: Cornell University: 287?295.
Nursiamsy D, Osaki M, Tadano T. 2002. Mechanism of aluminium toxicity avoidance in tropical rice (Oryza sativa), maize (Zea mays) and soybean (Glycin max). Indon J Agric Sci, 3(1): 12?24.
Ohki K. 1987. Aluminium stress on sorghum growth and nutrient relationships. Plant Soil, 98: 195?202.
Polle E, Konzak C F, Kittrick J A. 1978. Visual detection of aluminum tolerance levels in wheat by hematoxilin staining of seedlings roots. Crop Sci, 18(5): 823?827.
Riede C R, Anderson J A. 1996. Linkage of RFLP markers to an aluminum tolerance gene in wheat. Crop Sci, 36(4): 905?909.
Roy B, Mandal A B. 2005. Toward development of Al-toxicity tolerant lines in indica rice by exploiting somaclonal variation. Euphytica, 145(3): 221?227.
Roy B, Basu A K. 2009. Abiotic Stress Tolerance in Crop Plants: Breeding and Biotechnology. New Delhi: New India Publishing Agency: 1?544.
Sivaguru M, Paliwal K. 1993. Differential aluminum tolerance in some tropical rice cultivars: I. Growth performance. J Plant Nutr, 16(9): 1705?1716.
Somers D J, Gustafson J P. 1995. The expression of aluminum stress induced polypeptides in a population segregation for aluminum tolerance in wheat (Triticum aestivum L.). Genome, 38(6): 1213?1220.
Somers D J, Briggs K G, Gustafson J P. 1996. Aluminum stress and protein synthesis in near isogenic lines of Triticum aestivum differing in aluminum tolerance. Physiol Plant, 97(4): 694?700.
Stolen O, Anderson S. 1978. Inheritance of tolerance to low soil pH in barley. Hereditas, 88: 101?105.
Tan K, Keltjens W G. 1990. Interaction between aluminum and phosphorus in sorghum plants. Plant Soil, 124: 15?23.
van Sint Jan V, de Macedo C C, Kinel J M, Bouharmont J. 1997. Selection of Al-resistant plants from a sensitive rice cultivar, using somaclonal variation, in vitro and hydrophonic cultures. Euphytica, 97: 303?310.
Vitorello V A, Capaldi F R, Stefanuto V A. 2005. Recent advances in aluminum toxicity and resistance in higher plants. Braz J Plant Physiol, 17(1): 129?143.
von Uexküll H R, Mutert E. 1995. Global extent, development and economic impact of acid soils. Plant Soil, 171: 1?15.
Wu P, Zhao B, Yan J, Luo A, Wu Y, Senadihra D. 1997. Genetic control of seedling tolerance to aluminum toxicity in rice. Euphytica, 97: 289?293.
Yoshida S, Forno D A, Cock J H, Gomez K A. 1976. Laboratory Manual for Plant Physiological Studies of Rice, 3 edn. Manila, Philippines: International Rice Research Institute.
Zhang X G, Humphries A, Auricht G. 2007. Genetic variability and inheritance of aluminium tolerance as indicated by long root regrowth in lucerne (Medicago sativa L.). Euphytica, 157: 177?184.
Outlines

/

浙ICP备05004719号-15   公安备案号:33010302003355
Copyright © Editorial office of Rice Science
Tel: 0571-63371017 E-mail: crrn@fy.hz.zn.cn; cjrs278@gmail.com
Supported by Beijing Magtech Co., Ltd.
Total visitors:  Visitors of today:  Now online: