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Effects of dicamba and casein hydrolysate on in vitro growthand shoot regeneration of date palm (Phoenix dactylifera L.) cv. Barhee


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Abdalla, N., El-Ramady, H., Seliem, M.K., El-MAHROUK, M.E., Taha, N., Bayoumi, Y.,Shalaby, T.A., Dobranszki, J., 2022. An academic and technical overview on plant micropropagation challenges. Horticulturae, 8: 677. Search in Google Scholar

Abdel-Rahim, E.A., Abdel-Fatah, O.M., El-Shemy, H.A.I, Abd Elsamei, M.B., 1998. Growth of date palm callus as affected by amino acids as organic nitrogen source. In First international conference on date palms. Al-Ain, United Arab Emirates, March 810. Proceedings. Al-Ain: United Arab Emirates University, p. 234–240. Search in Google Scholar

Adawy, S.S., Hussein, E.H.A, Saker, M.M., El-Itriby, H.A., 2004. Intra- and inter-varietal variation of Upper Egypt date palm cultivars (Phoenix dactylifera L.): I. as revealed by RAPD and inter simple sequence repeat markers. In Proceedings of the international conference of genetic engineering and its application. Sharma El-Sheikh, South Sinai, Egypt, April 8-11, 2004. The Egyptian Society of Genetics and Suez Canal University, p. 165–179. Search in Google Scholar

Afolabi, A.S., Ovebanji, O., Odusany, O., Abo, M.E. Misra, M., Ogbadu, G.H., 2008. Regeneration of plants from rice caryopsis derived callus culture of Nigerian local cv. Suakoko 8 and a NERICA cv. FARO 55. African Journal of Plant Science. 2: 109–112. Search in Google Scholar

Ageel, S., Elmeer, K., 2011. Effects of casein hydrolysates and glutamine on callus and somatic embryogenesis of date palm (Phoenix dactylifera L.). New York Science Journal, 4 (7): 121–125. Search in Google Scholar

Al-Khalifah, N.S., Askari, E., Shanavaskhan, A.E., 2013. Date palm tissue culture and genetical identification of cultivars grown in Saudi Arabia. Riyadh: KACST Press. 207 p. Search in Google Scholar

Al-Khayri, J.M., 2011. Influence of yeast extract and casein hydrolysate on callus multiplication and somatic embryo-genesis of date palm (Phoenix dactylifera L.). Scientia Horticulturae, 130: 531–535. Search in Google Scholar

Al-Mayahi, A.M.W, 2010. The effect of amino acids and silver nitrate in the growth and organogenesis of adventitious buds for date palm (Phoenix dactylifera L.) cv. Showaithy by in vitro. Damascus University Journal of Agricultural Science, 26 (2): 97–110. Search 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. Basrah Journal for Date Palm Research, 9 (2): 79–97. Search in Google Scholar

Al-Mayahi, A.M.W., 2019. Effect of aluminium on the growth of the in vitro culture tissues of the date palm (Phoenix dactylifera L.) cv. Um-Adelhin. Folia Oecologica, 46 (2): 164–169. https://doi.org/10.2478/foecol-2019-0019. Search in Google Scholar

Al-Mayahi, A.M.W., 2021. In vitro plant regeneration system for date palm (Phoenix dactylifera L.): effect of chelated iron sources. Journal of Genetic Engineering and Biotechnology Research, 19: 83. https://doi.org/10.1186/s43141-021-00177-4. Search in Google Scholar

Al-Mayahi, A.M.W., 2022a. The effect of polyamines and silver thiosulphate on micropropagation of date palm followed by genetic stability assessment. World Journal of Micro-biology and Biotechnology, 38: 124. https://doi.org/10.1007/s11274-022-03305-5. Search in Google Scholar

Al-Mayahi, A.M.W., 2022b. In vitro propagation and assessment of genetic stability in date palm as affected by chitosan and thidiazuron combinations. Journal of Genetic Engineering and Biotechnology, 20: 165. https://doi.org/10.1186/s43141-022-00447-9. Search in Google Scholar

Al-Mayahi, A.M.W., Ali, A.H., 2021. Effects of different types of gelling agents on in vitro organogenesis and some physicochemical properties of date palm buds, Showathy cv. Folia Oecologica, 48 (1): 110–117. https://doi.org/10.2478/foecol-2021-0012. Search in Google Scholar

Al-Mayahi, A.M.W., Ali, A.H., Shareef, H.J., 2018. Influence of cold pretreatment on shoot regeneration from callus in date palm (Phoenix dactylifera L.) cv. Barhee. Journal of Genetic Engineering and Biotechnology Research, 16: 607–612. https://doi.org/10.1016/j.jgeb.2018.07.002. Search in Google Scholar

Al-Mayahi, A.M.W., Jafar, O.N., Mohsen, K.A., 2020. Effect of glutathione (GSH) on date palm (Phoenix dactylifera L.) micropropagation. Folia Oecologica, 47 (1): 64–69. https://doi.org/10.2478/foecol-2020-0008. Search in Google Scholar

Asami, T., Nakagaw, Y., 2018. Preface to the special issue: brief review of plant hormones and their utilization in agriculture. Pesticide Science, 43:154–158. DOI: 10.1584/jpestics.M18-02 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. https://doi.org/10.1007/BF00018060. Search in Google Scholar

Bhalang, D., Prabhuling, G, Hipparagi, K., Raghavendra, S., Prakash, D.P., Babu, A.G., 2018. Analysis of the genetic stability of banana tissue culture propagated plant-lets cv. Ney Poovan (AB) using morphological and molecular markers. International Journal of Current Micro-biology and Applied Sciences, 7 (1): 1007–1018. https://doi.org/10.20546/ijcmas.2018.701.121. Search in Google Scholar

Bidabadi, S.S, Meon, S., Wahab, Z., Mahmood, M., 2010. Study of genetic and phenotypic variability among somaclones induced by BAP and TDZ in micropropagated shoot tips of banana (Musa spp.) using RAPD markers. Journal of Agricultural Science, 2: 49–60. Search in Google Scholar

Black, C.A., 1968. Methods of Sei analysis part 1. Physical properties. Am. Soc. Agron. Inc. Publisher, Madison Wisconsin, USA pollen and flowers of five male cultivars of Iraqi date palm (Phoenix dactylifera L.). Date Palm Journal, 2 (2):111–207. Search in Google Scholar

Borsai O., Harta, M., Szabo, K., Kelemen, C.D., Andrecan, F.A., Codrea, M.M., Claapa, D., 2020. Evaluation of genetic fidelity of in vitro-propagated blackberry plants using RAPD and SRAP molecular markers. Horticultural Science, 47: 21–27. https://doi.org/10.17221/20/2019-HORTSCI. Search in Google Scholar

Chand, S., Singh, A.K., 2004. In vitro shoot regeneration from cotyledonary node explants of amultipurpose leguminous tree, Pterocarpus marsupium roxb. In Vitro Cellular and Developmental Biology - Plant, 40: 167–170. Search in Google Scholar

Chaudhary, D.S., Kajla, A., Poonia, B., Brar, S., Duhan, J.S., 2015. Molecular assessment of genetic stability using ISSR and RAPD markers in commercial banana cultivar cv. Robusta. Indian Journal of Biotechnology. 14 (3): 420–424. Search in Google Scholar

Chudasama, R.S., Thaker, V., 2007. Free and conjugated IAA and PAA in developing seeds of two varieties of pigeon pea (Cajanus cajan). General and Applied Plant Physiology, 33: 41–57. Search in Google Scholar

Cresser, M.S., Parsons, J.W., 1979. Sulphuric perchloric acid digestion of plant material for the determination of nitrogen, phosphours, potassium, calcium and magnesium. Analytica Chimica Acta, 109: 43–436. Search in Google Scholar

DehestanI-Ardakani, M., Kamali, K., Rezaie, S., 2017. The effect of some plant growthregulators (PGRs), coconut milk and casein hydrolysate on somatic embryogenesis of Stevia (Stevia rebaudiana) as an anti-diabetic medicinal plant. Electronic Journal of Biology, 13 (4): 343–347. Search in Google Scholar

Filippov, M., Miroshnichenko, D., Vernikovskaya, D., Dolgovl, S., 2006. The effect of auxins, time exposure to auxin and genotypes on somatic embryogenesis from mature embryos of wheat. Plant Cell, Tissue and Organ Culture, 84: 213–222. Search in Google Scholar

Gantait, S., El-Dawayati, M.M., Panigrahi, J., Labrooy, C., Verma, S.K., 2018. The retrospect and prospect of the applications of biotechnology in Phoenix dactylifera L. Applied Microbiology and Biotechnology, 102: 8229–8259. https://doi.org/10.1007/s00253-018-9232-x. Search in Google Scholar

Ibrahim, M.A, Waheed, A.M., Al-Taha, H., Al-Taha, H., 2013. Plantlet regeneration from root segments of Date palm tree (Phoenix dactylifera L. cv. Barhee) producing by in vitro culture. Advances in Agriculture and Botanics-International Journal of the Bioflux Society, 5 (1): 45–50. Search in Google Scholar

Indra, P, Krishnaveni, S., 2009. Effect of hormones, explants and genotypes in in vitro culturing of sorghum. Journal of Biochemical Technology, 1 (4): 96–103. 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

Khaleda, L., Al-Forkan, M., 2006. Stimulatory effects of casein hydrolysate and proline in in vitro callus induction and plant regeneration from five deepwater rice (Oryza sativa L.). Biotechnology, 5 (3): 379–384. DOI: 10.3923/biotech.2006.379.384. Search in Google Scholar

Khatab, I.A., Youssef, M.S., 2018. Micropropagation and assessment of genetic stability of Musa sp. cv. Williams using RAPD and SRAP markers. Egyptian Journal of Botany, 58 (3): 371–380. DOI: 10.21608/ejbo.2018.3199.1161. Search in Google Scholar

Khierallah, H.S.M., Hussein, Nahla, H., 2013. The role of coconut water and casein hydrolysate in somatic embryogenesis of date palm and genetic stability detection using RAPD markers. Research in Biotechnology, 4 (3): 20–28. Search in Google Scholar

Lee, Y. P., Takahashi, T., 1966 An improved colorimetric determination of amino acids with the use of ninhydrine. Analytical Biochemistry, 14 (1): 71–77. https://doi.org/10.1016/0003-2697(66)90057-1. Search in Google Scholar

Mano, Y. Nemoto, K., 2012. The pathway of auxin biosyn-thesis in plants. Journal of Experimental Botany, 63: 2853–2872. https://doi.org/10.1093/jxb/ers091. Search in Google Scholar

Murashige, T., Skoog, F., 1962. A revised medium for rapid growth and bioassay of tobacco tissue cultures. Physiologia Plantarum, 18: 100–127. Search 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. Search in Google Scholar

Mustafa, N.S., Taha, R.A., Hassan, S.A.M., Zaid N.S.M., Mustafa, E.A., 2013. Overcoming phenolic accumulation of date palm in vitro cultures using α-tochopherol and cold pre-treatment. Middle-East Journal of Scientific Research, 15 (3): 344–350. Search in Google Scholar

Nagar, P.K., Sood, S., 2006. Changes in endogenous auxins during winter dormancy in tea (Camellia sinensis L.) O. Kuntz. Acta Physiologiae Plantarum, 28 (2): 165–169. Search in Google Scholar

Nei, M., 1978. Estimation of average heterozygosity and genetic distance from a small number of individuals. Genetics, 89: 583–590. Search in Google Scholar

Phillips, G.C., Garda, M., 2019. Plant tissue culture media and practices: an overview. In Vitro Cellular and Developmental Biology - Plant, 55 (3): 242–257. https://doi.org/10.1007/s11627-019-09983-5. Search in Google Scholar

Piatcza, E., Kuzma, L, Sitarek, P., Wysokinska, H., 2015. Shoot organogenesis, molecular analysis and secondary metabolite production of micropropagated Rehmannia glutinosa Libosch. Plant Cell, Tissue and Organ Culture, 120: 539–549. https://doi.org/10.1007/s11240-014-0620-3. Search in Google Scholar

Prakash, L., Middha, S.K., Mohanty, S.K., Swamy, M.K., 2016. Micropropagation and validation of genetic and biochemical fidelity among regenerants of Nothapodytes nimmoniana (Graham) Mabb. employing ISSR markers and HPLC. 3 Biotechnology, 6: 1–9. https://doi.org/10.1007/s13205-016-0490-y. Search in Google Scholar

Przetakiewicz, A., Orczyk, W., Nadolska-Orczyk, A., 2003. The effect of auxin on plant regeneration of wheat, barley and triticale. Plant Cell, Tissue and Organ Culture, 73: 245–256. https://doi.org/10.1023/A:1023030511800. Search in Google Scholar

Rogers, S.O., Bendich, A.J., 1985. Extraction of DNA from milligram amounts of fresh, herbarium and mummified plant tissues. Plant Molecular Biology, 5: 69–76. https://doi.org/10.1007/BF00020088. Search in Google Scholar

Saad-Allah, K.M., Youssef, M.S., 2018. Phytochemical and genetic characterization of five quinoa (Chenopodium quinoa Willd.) genotypes introduced to Egypt. Physiology and Molecular Biology of Plants, 24: 617–629. Search in Google Scholar

Safarpour, M., Sinniah, U.R., Subramaniam, S., Swamy, M.K., 2017. A novel technique for Musa acuminata Colla ‘Grand Naine’ (AAA) micropropagation through transverse sectioning of the shoot apex. In Vitro Cellular and Developmental Biology - Plant, 53 (3): 226–238. https://doi.org/10.1007/s11627-017-9809-6. Search in Google Scholar

Santos, M. A., Camara, T., Rodriguez, P., Claparols, I., Dan Torne, J.M., 1996. Influence of exogenous proline on embryogenic and organogenic maize callus subjected to salt stress. Plant Cell, Tissue and Organ Culture, 49: 59–65. https://doi.org/10.1007/BF02318966. Search in Google Scholar

Shahsavari, E., 2010. Evaluation and optimizations of media on the tissue culture system of upland rice. International Journal of Agriculture and Biology, 12: 537–540. Search in Google Scholar

Shehata, W.F., Aldaej, M.I., Altuki, S.M., Ghazzawy, H.S., 2014. Effect of ammonium nitrate on antioxidant production of date palm (Phoenix dactylifera L.) in vitro. Biotechnology, 13 (3): 116–125. DOI: 10.3923/biotech. 2014.116.125. Search in Google Scholar

Singleton, V. L., Rossi, J. A., 1965. Colorimetry of total phenolics with phosphormolybdic-phosphotungstic acid reagents. American Journal of Enology and Viticulture, 16 (3): 144–158. Search in Google Scholar

Srivashtav, V.S., Kapadia, C.V., Mahatma, M.K., Jha, S.K., Jha, S., Ahmed, T., 2013. Genetic diversity analysis of date palm (Phoenix dactylifera L.) in the Kutch region of India using RAPD and ISSR markers. Emirates Journal of Food and Agriculture, 25 (11): 907–915. DOI: http://dx.doi.org/10.9755/ejfa.v25i11.14325. Search in Google Scholar

Sundberg, B., Tuominen, H., Anthony, L.C.H., 1994. Effects of the indole-3-acetic acid (IAA)transport inhibitors N-1-Naphthylphthalamic acid and morphactin on endogenous IAA dynamics in relation to compression wood formation in 1-year old Pinus sylvestris (L.) shoots. Plant Physiology, 106: 469–476. DOI: 10.1104/pp.106.2.469. Search in Google Scholar

Trifonova, A., Madsen, S., Olesen, A., 2001. Agrobacterium mediated transgene delivery and integration into barley under a range of in vitro culture conditions. Plant Science, 161, 871–880. https://doi.org/10.1016/S0168-9452(01)00479-4. Search in Google Scholar

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