Browse > Article

Impact of Sulphur and Nitrogen Application on Seed and Xanthotoxin Yield in Ammi majus L.  

Ahmad, Saif (Centre for Transgenic Plant Development, Department of Biotechnology, Jamia Hamdard (Hamdard University))
Jamal, Arshad (Centre for Transgenic Plant Development, Department of Biotechnology, Jamia Hamdard (Hamdard University))
Fazili, Inayat Saleem (Centre for Transgenic Plant Development, Department of Biotechnology, Jamia Hamdard (Hamdard University))
Alam, Tanweer (Centre for Transgenic Plant Development, Department of Biotechnology, Jamia Hamdard (Hamdard University))
Khan, Mather Ali (Centre for Transgenic Plant Development, Department of Biotechnology, Jamia Hamdard (Hamdard University))
Kamaluddin, Kamaluddin (Centre for Transgenic Plant Development, Department of Biotechnology, Jamia Hamdard (Hamdard University))
Iqbal, Mohd (Department of Botany, Hamdard University)
Abdin, Malik Zainul (Centre for Transgenic Plant Development, Department of Biotechnology, Jamia Hamdard (Hamdard University))
Publication Information
KOREAN JOURNAL OF CROP SCIENCE / v.52, no.2, 2007 , pp. 153-161 More about this Journal
Abstract
Field experiments were conducted to determine the physiological and biochemical basis of the interactive effect of sulphur (S) and nitrogen (N) application on seed and xanthotoxin yield of Ammi majus L. Six treatments were tested ($T_1$ = control-without manure and fertilizers, $T_2$ = manure @ 9 kg $plot^{-1}-10\;t\;ha^{-1},\;T_3=A_0N_{50}K_{25}P_{25},\;T_4=S_{40}N_{50}K_{25}P_{25},\;T_5=S_{40}N_{100}K_{25}P_{25}\;T_6=S_{20+20}N_{50+50}K_{25}P_{25})$). Nitrate reductase (NR) activity and ATP-sulphurylase activity in the leaves were measured at various phonological stages, as the two enzymes catalyze rate-limiting steps of the assimilatory pathways of nitrate and sulphate, respectively. The activities of these two enzymes were strongly correlated with seed and xanthotoxin yield. The highest nitrate reductase activity, ATP-sulphurylase activity and xanthotoxin yield were achieved with the treatment $T_4$. Any variation from this treatment decreased the activity of these enzymes, resulting in a reduction of the seed and xanthotoxin yield in Ammi majus L. The higher seed and xanthotoxin yield achieved in Ammi majus L. at treatment $T_4$ could be due to optimization of leaf soluble protein and photosynthetic rate, as these parameters are Influenced by S and N assimilation.
Keywords
Ammi majus L.; sulphur; nitrogen; xanthotoxin; ATP-sulphurylase; nitrate reductase (NR);
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Ahmad, A., Y. P. Abrol, and M. Z. Abdin. 1999b. Effect of the split application of sulphur and nitrogen on the growth and yield attributes of Brassica genotypes differing in their time of flowering. Can J. Plant Sci. 79 : 175-180   DOI
2 Balasubramanian, V., P. Shantakumari, and S. K. Sinha. 1977. $CO_{2}$ fixation and nitrate reductase activity in vivo in relation to hybrid vigour in maize. Ind J Experl Biol. 15: 780-782
3 Barney, Jr. P. E. and L. P. Bush. 1985. Interaction of nitrate and sulphate reduction in tobacco. Influence of availability of nitrate and sulphate. J. Plant Nutr. 8 : 507-515
4 Fazli, I. S., M. Z. Abdin, A. Jamal, and S. Ahmad. 2005a. Interactive effect of sulphur and nitrogen on lipid accumulation, acetyl-CoA concentration and acetyl-CoA carboxylase activity in developing seeds of oilseed crops (Brassica campestris L. and Eruca sativa Mill.). Plant Sci. 168 : 29-36   DOI   ScienceOn
5 Fazli, I. S., S. Ahmad, A. Jamal, and M. Z. Abdin. 2005b. Changes in lipid, protein, sugar and fatty acid composition in developing seeds of taramira (Eruca sativa Mill.) as influenced by sulphur and nitrogen. Ind J. Plant Physiol. 10 : 354-361
6 Jamal A., I. S. Fazli, S. Ahmad, M. Z. Abdin, and S. J. Yun. 2005. Effect of sulphur and nitrogen application on growth characteristics, seed and oil yield of soybean cultivars. K. J. Crop Sci. 50(5) : 340-345   과학기술학회마을
7 Lakshmipathaiah, O. R., A. A. Farooqi, and B. S. Sreeramu. 1999. Influence of nitrogen, phosphorous and potassium on growth and yield of Ammi majus. Mysore J. Agric Sci. 33 : 323-327
8 Pal, U. R., D. R. Gossett, J. L. Sims, and J. E. Legett. 1976. Molybdenum and sulphur nutrition effects on nitrate reductase in Burley tobacco. Can J. Bot. 54 : 2014-2022   DOI
9 Pande, D., M. Purohit, and P. S. Srivastava. 2002. Variation in xanthotoxin content in Ammi majus L. cultures during in vitro flowering and fruiting. Plant Science. 162 : 583-587   DOI   ScienceOn
10 Parrish, J. A., T. B. Fitzpatrick, L. Tannenbaum, and M. A. Pathak. 1974. Photochemotherapy of psoriasis with oral methoxalen and long ultraviolet light. N. Engl. J. Med. 291 : 1207-1211   DOI   ScienceOn
11 Ramesh., A. A. Farooqi, and S. Thilak. 1989. Influence of sowing date and nutrients on growth and yield of Isabgol (Plantago ovata Forsk.). Crop Res., 2 : 169-174
12 Reuveny, Z., D. K. Dougall, and P. M. Trinity. 1980. Regulatory coupling of nitrate and sulphate assimilation pathways in cultured tobacco cells. Proc. Natl Acad Sci. USA. 77 : 6670-6672
13 Stewart, B. A. and L. K. Porter. 1969. Nitrogen-Sulphur relationships in wheat (Triticum aestivum L.), com (Zea mays), and beans (Phaseolus vulgaris). Agronomy Journal. 61 : 267-271   DOI
14 Wilson, L. G. and R. S. Bandurski. 1958. Enzymatic reactions involving sulphate, sulphite, selenate and molybdate. J. Biol. Chem. 233: 975-981
15 Evans, H. J. and A. Nason. 1953. Pyridine nucleotide-nitrate reductase from extracts of higher plants. Plant Physiol. 28 : 233-254   DOI   ScienceOn
16 Gill, B. S. and J. S. Samra. 1986. Yield behaviour of Ammi majus under different transplanting dates spacing and nitrogen levels. J. Res. Punjab Agric Univ. 23 : 213-216
17 Randhawa, G. S., R. K. Mahey, S. S. Saini, and B. S. Sindhu. 1985. Response of Ammi majus to age of seedling and nitrogen application under late-sown conditions. J. Res. Punjab Agric Univ. 22 : 624-628
18 Ahmad, A., G. Abraham, and M. Z. Abdin. 1999a. Physiological investigation of the impact of nitrogen and sulphur application on seed and oil yield of Rapeseed (Brassica campestris L.) and Mustard (Brassica juncea L. Czern. and Coss.) Genotypes. J. Agron Crop Sci. 183 : 19-25   DOI
19 Deckard, E. L., R. J. Lambert, and R. H. Hageman. 1973. Nitrate reductase activity in corn leaves as related to yield of grain and grain protein. Crop Sci. 13 : 343-350   DOI
20 Ahmad, A., G. Abraham, N. Gandotra, Y. P. Abrol, and M. Z. Abdin. 1998. Interactive effective of nitrogen and sulphur on growth and yield of Rape-seed-Mustard (Brassica juncea L. Czern. and Coss. and Brassica campestris L.) Genotypes. J. Agron Crop Sci. 181 : 193-199   DOI
21 People, M. B., V. C. Beilharz, S. P. Waters, R. J. Simpson, and M. J. Dalling. 1980. Nitrogen redistribution during grain growth in wheat (Triticum aestivum L.). II. Chloroplast senescence and the degradation of ribulose-1, 5-bisphosphare carboxylase. Planta. 149 : 241-251   DOI   ScienceOn
22 Hageman, R. H. and D. P. Husklesby. 1971. Nitrate reductase from higher plants. In : A San Pietro (ed.), Methods in Enzymology, pp. 491-503. Acad. Press, New York, USA
23 Ahmad, S., M. Z. Abdin, I. S. Fazli, A. Jamal, M. Maaz, and M. Iqbal. 2004. Variability in xanthotoxin concentration in organs of Ammi majus and yield at different phonological stages. J. Med Arom Plant Sci. 26 : 8-11
24 Ahmad, A., I. Khan, and M. Z. Abdin. 2001. Interactive effect of sulphur and nitrogen on N-assimilation and nitrogen harvest of rapeseed-mustard. Indian J. Plant Physiol. 6 : 46-52
25 Nageswar, R. G. 1983. Statistics for agricultural sciences. Oxford and IBH Publishing Co., Oxford
26 Ahmad, A. and M. Z. Abdin. 2000. Photosynthesis and its related physiological variables in the leaves of Brassica genotypes as influenced by sulphur fertilization. Physiol Plant. 110 : 144-149   DOI   ScienceOn
27 Bradford, M. M. 1976. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein dye binding, Anal Biochemistry. 72 : 248-254   DOI   ScienceOn
28 Clarkson, D. T., L. R. Saker, J. V. Purves, and R. B. Lee. 1989. Depression of nitrate and ammonium transport in barley plants with diminished sulphate status. Evidence of co-regulation of nitrogen and sulphate intake. J. Expt. Bot. 40 : 953-963   DOI
29 Smith, I. K. 1975. Sulphate transport in cultured tobacco. Plant Physiol. 55 : 303-307   DOI   ScienceOn
30 Abdin, M. Z., A. Ahmad, N. Khan, I. Khan, A. Jamal, and M. Iqbal. 2003. Sulphur interaction with other nutrients. In: Y.P. Abrol and A. Ahmad (eds), Sulphur in plants, pp. 359-374. Kluwer Academic Publishers, Dordrecht
31 Ahmad, S., I. S. Fazli, A. Jamal, Kamaluddin, M. Maaz, M. Iqbal, and M. Z. Abdin. 2006. Cultivation of Ammi majus (Psoralea corylifolia L., Fabaceae) for the production of furocoumarin (Psoralen) of therapeutic value. In : M. Z. Abdin and Y. P. Abrol (eds), Traditional Systems of Medicine, pp. 465-470. Narosa Publishing House Pvt. Ltd., India)
32 Croy, L. I. and R. H. Hageman. 1970. Relationship of nitrate reductase activity to grain protein production in wheat. Crop Sci. 10 : 280-288   DOI
33 Kavli, G. and Volden, G. 1984. Phytophotodermatitis. Photodermatol. 1 : 65-75
34 Abrol, Y. P., M. S. Kaim, and T. V. R. Nair. 1976. Nitrogen assimilation, its mobilization and accumulation in wheat (T. aestivum L.) grains. Cereal Res. Commun. 4 : 431-440
35 Eppendorfer, W. H. 1971. Effect of sulphur, nitrogen and phosphorus on the amino acid composition of the field bean (vicia faba) and responses of the biological value of the seed protein and sulphur-amino acid content. J. Sci. Food Agric. 22 : 501-505   DOI
36 Ahmad, A., G. Abraham, N. Gandotra, Y. P. Abrol, and M. Z. Abdin. 1999. Interactive effective of nitrogen and sulphur on growth and yield of Rape-seed-Mustard (Brassica juncea L. Czern. and Coss. and Brassica campestris L.) Genotypes. J. Agron Crop Sci. 181 : 193-199   DOI