Genetic transformation of an elite commercial wheat variety through Agrobacterium tumefaciens

Paper Details

Research Paper 01/01/2016
Views (803)
current_issue_feature_image
publication_file

Genetic transformation of an elite commercial wheat variety through Agrobacterium tumefaciens

Muhammad Ali, Muhammad Tahir, Shahid Hameed
Int. J. Biosci. 8(1), 17-24, January 2016.
Copyright Statement: Copyright 2016; The Author(s).
License: CC BY-NC 4.0

Abstract

Wheat (Triticum aestivum L.) is the leading food grain crop of Pakistan that contributes 2.7 percent to the GDP. However, the crop is significantly affected by Barley yellow dwarf virus (BYDV). To combat with, introduction of virus-derived gene(s), through genetic engineering, is a powerful tool to confer resistance. Wheat is considered recalcitrant to be transformed genetically. The success regarding genetic transformation is almost limited to the cv. Bobwhite. Bobwhite, however, is not an isogenic line and may be used as a transgenic crossing material. Crossing for a transgenic trait from Bobwhite may be complicated by a linkage drag. Alternatively, targeting elite variety for transformation will be more economical. Considering transformation of an elite variety “Sehar-2006” via Agrobacterium tumefaciens (LBA4404), optimization of protocol harboring binary plasmid construct (pING71/BYDV-CP19) with nptII marker gene has been discussed.

Achon MA, Serrano L, Ratti C, Rubies-Autonell C. 2006. First detection of wheat dwarf virus in barley in Spain associated with an outbreak of Barley Yellow Dwarf. Plant Disease 90, 970-970. http://dx.doi.org/10.1094/PD-90-0970A.

Ali M, Hameed S, Tahir M. 2014.  Luteovirus: insights into pathogenicity. Archives of Virology 159, 2853-2860. http://dx.doi.org/10.1007/s00705-014-2172-6.

Ali M, Tahir M, Hameed S, Ashraf M. 2013. Coat protein based molecular characterization of Barley yellow dwarf virus isolates identified on oat plants in Pakistan. Acta Virol 57, 383-5. http://dx.doi.org/ 10.4149/av_2013_03_383.

Atchison J, Head L, Gates A. 2010. Wheat as food, wheat as industrial substance; comparative geographies of transformation and mobility. Geoforum 41, 236-246. http://dx.doi.org/ 10.1016/j.geoforum.2009.09.006.

Ding L, Li S, Gao J, Wang Y, Yang G, He G. 2009. Optimization of Agrobacterium-mediated transformation conditions in mature embryos of elite wheat. Molecular Biology Reports 36, 29-36. DOI: http://dx.doi.org/10.1007/s11033-007-9148-5.

Domier LL. 2009. Barley Yellow Dwarf Viruses. In Desk Encyclopedia of Plant and Fungal Virology, B. W. J. Mahy and M. H. V. V. Regenmortel, eds. (Elsevier), 279-285 P.

Dupré P, Henry M, Posadas G, Pellegrineschi A, Trottet M, Jacquot E. 2002. Genetically engineered wheat for Barley yellow dwarf virus resistance. Barley Yellow Dwarf Disease: Recent Advances and Future Strategies, 27.

Gurel S, Gurel E, Kaur R, Wong J, Meng L, Tan HQ, Lemaux PG. 2009. Efficient, reproducible Agrobacterium-mediated transformation of sorghum using heat treatment of immature embryos. Plant Cell Rep 28, 429-44. http://dx.doi.org/10.1007/s00299-008-0655-1.

Hussain M, Rafiq M, Akhtar L, Tariq A, Ahmad S, Aslam M, Nadeem M, Zubair M. 2013. Release of high yielding wheat variety AaS-2011 resistant to stem rust (UG-99) in Pakistan. The Journal of Animal and Plant Sciences 23, 1115-1124

Janakiraman V, Steinau M, McCoy SB, Trick HN. 2002. Recent advances in wheat transformation. In Vitro Cellular & Developmental Biology. Plant 38, 404-414. http://dx.doi.org/ 10.2307/23321149.

Jones HD. 2015. Wheat Biotechnology: Current Status and Future Prospects. In Recent Advancements in Gene Expression and Enabling Technologies in Crop Plants (Springer), pp. 263-290. http://dx.doi.org/10.1007/978-1-4939-2202-4.

Jones HD, Doherty A, Wu H. 2005. Review of methodologies and a protocol for the Agrobacterium-mediated transformation of wheat. Plant Methods 1, 229-232.

Khurana P, Chauhan H, Desai SA. 2009. Wheat. In  Compendium  of  Transgenic  Crop  Plants  (John Wiley & Sons, Ltd). http://dx.doi.org/10.1002/9781405181099.k0103.

Kundu J, Jarošová J, Gadiou S, Cervená G. 2009. Discrimination of three BYDV species by one-step RT-PCR-RFLP and sequence based methods in cereal plants from the Czech Republic. Cereal Research Communications 37, 541-550.

Liu F, Wang X, Liu Y, Xie J, Gray S, Zhou G, Gao B. 2007.  A  Chinese  isolate  of  barley  yellow dwarf virus-PAV represents a third distinct species within the PAV serotype. Archives of Virology 152, 1365-1373. http://dx.doi.org/10.1007/s00705-007-0947-8.

Moghaieb    RE,    El-Arabi   NI,    Momtaz    OA, Youssef SS, Soliman MH. 2010. Genetic transformation of mature embryos of bread (T.aestivum) and pasta  (T. durum) wheat  genotypes. GM Crops 1, 87-93. http://dx.doi.org/10.4161/gmcr.1.2.11172.

Pellegrineschi A, Noguera LM, Skovmand B, Brito RM, Velazquez L, Salgado MM, Hernandez R, Warburton M, Hoisington D. 2002. Identification of highly transformable wheat genotypes for mass production of fertile transgenic plants. Genome 45, 421-430.

Pérez-Piñeiro P, Gago J, Landín M, Gallego PP. 2012. Agrobacterium-mediated transformation of wheat: general overview and new approaches to model and identify the key factors involved. Transgenic Plants-Advances and Limitations. Rijeka, Croatia: Intech Open Access Publisher, 3-26.

Robertson NL, French R, Gray SM. 1991. Use of group-specific primers and the polymerase chain reaction for the detection and identification of luteoviruses. Journal of General Virology 72, 1473-1477.

Singh S, Tan H, Singh J. 2012. Mutagenesis of barley malting quality QTLs with Ds transposons. Functional & Integrative Genomics 12, 131-141. http://dx.doi.org/10.1007/s10142-011-0258-8.

Trzmiel K. 2006. Barley yellow dwarf virus-MAV (BYDV-MAV) and Barley yellow dwarf virus-PAV (BYDV-PAV) on maize in Poland. Phytopathologia Polonica, 53-56.

Varshney A, Altpeter F. 2002. Stable transformation and tissue culture response in current European winter wheats (Triticum aestivum L.). Molecular breeding 8, 295-309. http://dx.doi.org/10.1023/A:1015240901016.

Wang X, Zhou G. 2003. Identification of a protein associated with circulative transmission of Barley yellow dwarf virus from cereal aphids, Schizaphis graminum and Sitobion avenae. Chinese Science Bulletin 48, 2083-2087.

Warburton M, Skovmand B, Mujeeb-Kazi A. 2002. The molecular genetic characterization of the ‘Bobwhite’ bread wheat family using AFLPs and the effect of the T1BL. 1RS translocation. Theoretical and Applied Genetics 104, 868-873.

Weeks JT, Anderson OD, Blechl AE. 1993. Rapid production of multiple independent lines of fertile transgenic wheat (Triticum aestivum). Plant Physiology 102, 1077-1084.

Wu B, Blanchard-Letort A, Liu Y, Zhou G, Wang X, Elena SF. 2011. Dynamics of molecular evolution and phylogeography of Barley yellow dwarf virus-PAV. PloS One 6, e16896. http://dx.doi.org/10.1371/journal.pone.0016896.

Zhao  X-Q,  Nie  X-L,  Xiao  X-G.  2013.  Over- expression  of  a  tobacco  nitrate  reductase  gene  in wheat (Triticum aestivum L.) increases seed protein content        and weight without augmenting nitrogen supplying. PloS one. http://dx.doi.org/10.1371/journal.pone.0074678.

Related Articles

Yield performance assessment of different mustard cultivars under field conditions

Md. Khan Jahan Ali, Md. Moshiur Rahman, Kamrun Nahar, Sharmin Ara Jannat, Mst. Khadija Khatun, Sushan Chowhan, Md. Habibur Rahman, Int. J. Biosci. 27(2), 277-282, August 2025.

Species composition of xylomicobiota of some woody plants distributed in Azerbaijan

K. F. Bakhshaliyeva, V. Y. Hasanova, N. R. Namazov, B. N. Aliyeva, S. C. Garayeva, S. E. Nagiyeva, P. Z. Muradov, Int. J. Biosci. 27(2), 267-276, August 2025.

Perception of producers and processors on sorghum diversity in the context of climate change in center and Northern Benin

Parfait Segla Alohoutade1,2,3, Alphonse Sako Avocefohoun*1,2,3, Sènan Vodouhe2, Mohamed Kanazoe1,2,3, Nicodème Chabi1, Lamine Said Baba-Moussa3, Int. J. Biosci. 27(2), 256-266, August 2025.

Implications of aberrant glycosylation on age-related disease progression

Tahmid Ahmad Patwary, Mukramur Rahman, Md. Nafis Fuad Prottoy, Sayad Md. Didarul Alam, Int. J. Biosci. 27(2), 243-255, August 2025.

Epizootic status and eradication of parasitic diseases in brown bears transferred to the rehabilitation center in Azerbaijan

Siala İ. Rustamova, Aygun A. Azizova, Gular R. Mammadova, Ramin S. Mammadov, Int. J. Biosci. 27(2), 236-242, August 2025.

Cytotoxic and apoptotic effects of Annona squamosa (Atis) crude leaf extract against A549 (Human Lung Adenocarcinoma) cell line

Ashton U. Lim, Noricel U. Garcia, Alkauzar H. Tantong, Int. J. Biosci. 27(2), 226-235, August 2025.

Perceptions of stakeholders towards sheep and goat dairy products in Benin

Yvette Adje, Philippe Sessou, Aretas Tonouhewa, Paulin Azokpota, Lamine Baba-Moussa, Souaïbou Farougou, Int. J. Biosci. 27(2), 211-225, August 2025.

Medicinal plants sold in Daloa markets: Traditional knowledge and Public health issues

Kouakou Yao Bertin, Kouakou Assoman Serge Alain, Kouame Yao Anicet Gervais, Malan Djah François, Bakayoko Adama, Int. J. Biosci. 27(2), 200-210, August 2025.