Open Access

Effect of aluminum on the growth of the in vitro culture tissues of the date palm (Phoenix dactylifera L.) cv. Um-Aldehin


Cite

Ali, B., Hasans. A., Hayats, Q., Yadv, S., Fariduddin, Q., Ahmed, A., 2008. A role for brassinosteroids in the amelioration of aluminium stress through antioxidant system in mung bean. Environmental and Experimental Botany, 62: 153–159.10.1016/j.envexpbot.2007.07.014Search in Google Scholar

Al-Mayahi, A.M.W., Ahmed, A.N., Al-Khalifa, A.A., 2010. Isolation and diagnose of fungi associated with the cultivation of tissues of five cultivars of date palm (Phoenix dactylifera L.) and the effect of fungicide Benlate in control. Basra Journal for Date Palm Research, 9 (2): 79–97.Search in Google Scholar

Al-Mayahi, A.M.W., 2012. Effect of the media on vegetative buds and rooting of vegetative shoot of date palm cv. Khadrawi propagated by in vitro culture. Journal of Agricultural and Veterinary Sciences, 5 (1): 27–46.Search in Google Scholar

Al-Mayahi, A.M.W., 2014. Effect of copper sulphate and cobalt chloride on growth of the in vitro culture tissues for date palm (Phoenix dactylifera L.) cv. Ashgar. American Journal of Agricultural and Biological Sciences, 9 (1): 6–18.10.3844/ajabssp.2014.6.18Search in Google Scholar

Al-Mayahi, A.M.W., 2015. The compound effects of NaCl and gibberellic acid on the growth and development of in vitro date palm (Phoenix dactylifera L.) plantlets cv. Showathy. Journal of King Saudi University Agricultural Science, 26 (2): 147–183.Search in Google Scholar

Al-Mayahi, A.M.W., 2016 a. Effect of red and blue light emitting diodes “CRB-LED” on in vitro organogenesis of date palm (Phoenix dactylifera L.) cv. Alshakr. World Journal of Microbiology and Biotechnology, 32: 160.10.1007/s11274-016-2120-627562594Search in Google Scholar

Al-Mayahi, A.M.W., 2016b. Effect of silicon (Si) application on Phoenix dactylifera L. growth under drought stress induced by polyethylene glycol (PEG) in vitro. American Journal of Plant Sciences, 7: 1711–1728.10.4236/ajps.2016.713161Search in Google Scholar

Al-Mayahi, A.M.W., 2016c. Influence of salicylic acid (SA) and ascorbic acid (ASA) on in vitro propagation and salt tolerance of date palm (Phoenix dactylifera L.) cv. ‘Nersy’. Australian Journal of Crop Science, 10 (7): 969–976.10.21475/ajcs.2016.10.07.p7640Search in Google Scholar

Al-Khalifah, R., Manickavsagan, A., 2012. An overview of date palm. In Manickavasagan, A., Mohamed, E.M., Su-kumar, E. (eds). Dates, production, processing, food and medicinal values. Florida, FL, USA: CRC Press, p. 3–11.Search in Google Scholar

Amaral, J.A.T., Rena, A.B., Cordeiro, A.T, Schmildt, ER., 2013. Effects of aluminum, nitrate and ammonium on the growth, potassium content and composition of amino acids in Stylosanthes. Idesia, 31 (2): 61–68.10.4067/S0718-34292013000200009Search in Google Scholar

Ashraf, M., Foolad, M.R., 2007. Roles of glycine betaine and proline in improving plant abiotic stress resistance. Environmental and Experimental Botany, 59: 206–216.10.1016/j.envexpbot.2005.12.006Search in Google Scholar

Basso, L.H.M., Lima, G.P.P., Goncalves, A.N., Vilhena, S.M.C., Padilha, C. do C. F., 2007. Efeito do aluminio no contedo de poliamin a slivrese atividade da fosfatase acidadurante o crescimento debrotaçes de Eucalyptus grandis x E. urophylla cultivadas in vitro [Effect of aluminium on the tree polyamines content and acid phosphatase activity during the growth of Eucalyptus × E. urophylla shoots cultivated in vitro]. Scientia Forestalis, 75: 9–18.Search in Google Scholar

Bates, L.S., Waldren, R.P., Teare, I.D., 1973. Rapid determination of free proline for water-stress studies. Plant and Soil, 39: 205–207.10.1007/BF00018060Search in Google Scholar

Black, C.A., 1965. Methods of soil analysis. Part 1, Physical and mineralogical properties, including statistics of measurement and sampling. Agronomy, vol. 9. Madison, Wis.: American Society of Agronomy. 770 p.10.2134/agronmonogr9.1Search in Google Scholar

Chao, C.T., Krueger, R.R., 2007. The date palm (Phoenix dactylifera L.): overview of biology, uses, and cultivation. Horticultural Science, 42: 1077–1082.10.21273/HORTSCI.42.5.1077Search in Google Scholar

Cresser, M.S., Parsons, J.W., 1979. Sulphuric perchloric acid digestion of plant material for the determination of nitrogen, phosphorus, potassium, calcium and magnesium. Analytica Chimica Acta, 109: 43–436.10.1016/S0003-2670(01)84273-2Search in Google Scholar

Ezaki, B., Suzuki, M., Motoda, H., Kawamur, M., Nakashima, S., Matsumoto, H., 2004. Mechanism of gene expression of Arabidopsis Glutathione S-transferase, AtGST1 and AtGST11 in response to aluminum stress. Plant Physiology, 134: 1672–1682.10.1104/pp.103.037135Search in Google Scholar

Gueye, B., Morcillo, F., Collin, M., Gargani, D., Over-voorde, P., Bertossi, F.A., Taranbarger, T.J., Sane, D., Tregear, J.W., Borgell, A., Verdeil, J.L., 2009. Acquisition of callogenic capacity in date palm leaf tissues in response to 2,4-D treatment. Plant Cell, Tissue and Organ Culture, 99: 35–45.10.1007/s11240-009-9573-3Search in Google Scholar

Hossian, Z., Mandal, A.K., Datta, S.K., 2006. Development of NaCl tolerant strain in Chrysanthemum morifolium Ramat. Through in vitro mutagenesis. Plant Biology, 8: 450–461.10.1055/s-2006-923951Search in Google Scholar

Hussian, K., Sahadevan, K.K., Salim, N., 2010. Bioaccumulation and release of mercury in (Vigna mungo L.) hepper seedlings. Journal of Stress Physiology & Biochemistry, 6: 56–63.Search in Google Scholar

Jasim, A.M., Al-Mayahi, A.M.W., Attaha, A.H.M., 2009. Propagation of four rare cultivars of date palm (phoenix dactylifera L.) by tissue culture techniques. Basrah Journal for Date Palm Research, 8 (1): 72–99.Search in Google Scholar

Jemo, M., Abaidoo, R.C., Notle, C., Horst, W.J., 2007. Aluminum resistance of cowpea as affected by phosphorus-deficiency stress. Journal of Plant Physiology, 164: 442–451.10.1016/j.jplph.2005.12.010Search in Google Scholar

Kalaji, H.M., Jajoo, A., Oukarroum, A., Brestic, M., Zivcak, M., Samboska, I.A., Cetner, M.D., Łukasik, I., Goltsev, V., Ladle, R.J., 2016. Chlorophyll a fluorescence as a tool to monitor physiological status of plants under abiotic stress conditions. Acta Physiologiae Plantarum, 38 (4): 102–113.10.1007/s11738-016-2113-ySearch in Google Scholar

Koca, H., Bor, M., Ozdemie, F., Turkan., I., 2007. The effect of salt stress on lip peroxidation, antioxidative enzymes and proline content of sesame cultivars. Environmental and Experimental Botany, 60: 344–310.1016/j.envexpbot.2006.12.005Search in Google Scholar

Ma, J.F., 2007. Syndrome of aluminum toxicity and diversity of aluminum resistance in higher plants. International Review of Cytology, 264: 225–252.10.1016/S0074-7696(07)64005-4Search in Google Scholar

Malavolta, E., Vitti, G.C., Oliveira, S.A., 1997. Avaliaço do estado nutricional das plantas: principos e aplicaçes. [Assessment of nutritional status of plants: principles and applications]. 2.ed. Piracicaba: Potafos. 319p.Search in Google Scholar

Marscner, H., 1995. Mineral nutrition of higher plants. London: Academic Press. 674 p.Search in Google Scholar

Meriǹo-Gergichevich, C., Alberdi, M., Ivanov, A.G., Reyes-Diaz, M., 2010. Al3+- Ca2+ Interaction in plants growing in acid soils: Al-phytotoxicity response to calcareous amendments. Journal of Soil Science and Plant Nutrition, 10: 217–243.Search in Google Scholar

Munnē-Bosch, S, Jubany-Mari, T., Alegre, L., 2001. Drought-induced senescence is characterized by loss of antioxidant defences in chloroplasts. Plant Cell and Environment, 24: 1319–1327.10.1046/j.1365-3040.2001.00794.xSearch in Google Scholar

Murashige, T., Skoog, F., 1962. A revised medium for rapid growth and bio assays with tobacco tissue cultures. Physiologia Plantarum, 15: 473–497.10.1111/j.1399-3054.1962.tb08052.xSearch in Google Scholar

Murphy, T., Riley, J.R.J., 1962. A modified single solution method for the determination of phosphate in natural waters. Analytica Chimica Acta, 27: 31–36.10.1016/S0003-2670(00)88444-5Search in Google Scholar

Nakano, Y., Asada, K., 1981. Hydrogen peroxide is scavenged by ascorbate-specific peroxidase in spinach chloroplasts. Plant and Cell Physiology, 22: 867–880.Search in Google Scholar

Page, A.L, Miller, R.H, Keeny, D., 1982. Methods of soil analysis. Part 2. Madison, Wis.: American Society of Agronomy.Search in Google Scholar

Porra, RJ., 2002. The chequered history of the development and use of stimulation quantions for the accurate determination of chlorophylls a and b. Photosynthesis Research, 73: 149–156.Search in Google Scholar

Ribeiro, M.A.Q., De Almeidaa, A.-A.F., Mielke, M.S., Gomes, F.P., Pires, M.V., Baligar, V.C., 2013. Aluminum effects on growth photosynthesis, and mineral nutrition of cacao genotypes. Journal of Plant Nutrition, 36: 8: 1161–1179.10.1080/01904167.2013.766889Search in Google Scholar

Rout, G.R., Samantaray, S., Das, P., 2001. Aluminium toxicity in plants: a review. Agronomie, 21: 3–21.10.1051/agro:2001105Search in Google Scholar

Rufyikiri, G., Dufey, J.E., Nootens, D., Delvaux, B., 2000. Effect of aluminium on bananas (Musa spp.) cultivated in acid solutions. II. Water and nutrient uptake. Fruits, 56 (1): 5–16.10.1051/fruits:2001107Search in Google Scholar

Siripornadulsil, S., Train, S., Verma, D.P.S., Sayre, RT., 2002. Molecular mechanisms of proline-mediated tolerance to toxic heavy metals in transgenic microalgae. Plant Cell, 14: 2837–2847.10.1105/tpc.00485315273112417705Search in Google Scholar

Taiz , L., Zeiger, E., 2009. Fisiologia vegetal [Plant physiology]. 4. ed. Porto Alegre: Artmed. 819 p.Search in Google Scholar

Uhrin, P., Supuka, J., Billikova, M., 2018. Growth adaptability of Norway maple (Acer platanoides L.) to urban environment. Folia Oecologica. 45 (1):33–45.10.2478/foecol-2018-0004Search in Google Scholar

Vardar, F., Arican, E., Gözȕkirizi, N., 2006. Effect of Aluminum on in vitro root growth and seed germination of tobacco (Nicotiana tabacum L.). Advances in Food Sciences, 28 (2): 85–88.Search in Google Scholar

Yousefi, S, Kartoolinjad, D., Bahmani, M., Naghdi, R., 2017. Salinity tolerance of Dodonaea viscosa L. inoculated with plant growth-promoting rhizobacteria: assessed based on seed germination and seedling growth characteristics. Folia Oecologica, 44 (1): 20–27.10.1515/foecol-2017-0003Search in Google Scholar

Zayed, Z.E., Eldawayati, M.M., Elsharabasy, S.F., 2019. Total steroids production from date palm callus under heavy metals stress. Biological Research, 16 (2): 1448–1457.Search in Google Scholar

Zhang, X.B., Peng, L., Yang, Y.S., Xu, G.-D., 2007. Effect of Al in soil on photosynthesis and related morphological and physiological characteristics of two soybean geno-types. Botany Study 48: 435–444.Search in Google Scholar

eISSN:
1338-7014
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Life Sciences, other, Plant Science, Zoology, Ecology