Agrobacterium Mediated Genetic Transformation Of Ground Nut (Arachis Hypogaea L.) Cultivar Icgv-15311 Embryo Axis Explants For Defensin Gene Against Fungal Resistance

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Swapna Mittapalli
Thriveni Dumpeti
Gade Pavan Kumar
Sadhu Suman Kalyan
Potta Jyothi
Rajender Vadluri

Abstract

Genetic transformation of Ground nut (Arachis hypogaea L.) was attempted using plasmid vector pCAMBIA '3365' Present with in Agrobacterium tumifaciens strain LBA4404  with CaMV35sp (Cauliflower mosaic virus 35s RNA Promoter). A total of 323 Embryo axis, Half cut embryo, Cotyledonary nodes were employed in independent co cultivation events, of which 13 putative transgenic plants were established in Invitro conditions. The transgenic shoots obtained were initially confirmed for the introduced reporter gene by GUS histochemical assay and later by the PCR analysis. The transformed shoots were checked for the transcription of the gene by RT-PCR analysis. Southern blot analysis was carried out to confirm the stable integration of the foreign DNA

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Swapna Mittapalli, Thriveni Dumpeti, Gade Pavan Kumar, Sadhu Suman Kalyan, Potta Jyothi, & Rajender Vadluri. (2023). Agrobacterium Mediated Genetic Transformation Of Ground Nut (Arachis Hypogaea L.) Cultivar Icgv-15311 Embryo Axis Explants For Defensin Gene Against Fungal Resistance. Journal of Advanced Zoology, 44(S5), 2430–2434. https://doi.org/10.53555/jaz.v44iS5.3180
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Author Biographies

Swapna Mittapalli

Department of Biotechnology, Chaitanya ( Deemed to be University), Kishanpura, Hanumakonda – 506009

Thriveni Dumpeti

Department of Biotechnology, Chaitanya ( Deemed to be University), Kishanpura, Hanumakonda – 506009

Gade Pavan Kumar

Department of Biotechnology, Chaitanya ( Deemed to be University), Kishanpura, Hanumakonda – 506009.

Sadhu Suman Kalyan

Department of Microbiology, Kakatiya University, Hanumakonda-506009.

Potta Jyothi

Department of Microbiology, Chaitanya ( Deemed to be University), Kishanpura, Hanumakonda – 506009.

Rajender Vadluri

Department of Biotechnology, Chaitanya ( Deemed to be University), Kishanpura, Hanumakonda – 506009.

References

Abdullah, Shah D , Abbas, Madhukar M (2010) Stable integration and expression of a plant defining in Tomato confers resistance to Fusarium wilt Disease, Genetically modified crops,1-5;344-350.

Abdalla AA, El-Howeity MA, Desoky AH (2009) Response of peanut crop cultivated in newly reclaimed soil to inoculation with plant growth- promoting Rhizobacteria. Minufiya J Agric Res 34:2281–2304.

Anuradha T, Jami SK, Datla RS Kirthi PB (2006)Genetic transformation of pea nut(Arachis hypogaea L.) using cotyledonary node as explants and a promoterless gus;;nptII fusion vector. Bio science 31:1-12.

Ahmad N., Khan, M.R.Shah, S.H.,Zia , M.A., Hussain, I., Muhammad ,A., & Ali, G.M.(2020).An efficient and reproducible tissue culture procedure for callus Induction and multiple shoots regeneration in ground nut (Arachis hypogaea L.).J ANIM. Plant sci., 30 (6):1540-1547.

Badawi F.S.F. Desoky A.H, Biomy A.M.M. (2011) Peanut plant growth and yield as influenced by co-cultivatioon with Bradirhizobium and some rhizo micro organisms under sandy loam soil conditions. Ann.Agri.sci. 56 (1) 17-25.

Deng Xiang Yang,Zhi Ming Wei,Transgenic pea plants obtained by particle cell research(2001)11(2):156-160.

Duncan DB (1955) Multiple ranges and multiple F test. In Biometrics 11:1–24

Dwivedi SL, Gurtu S, Chandra S, Yuejin W, Nigam SN (2001) Assessment of genetic diversity among selected groundnut germplasm. I. RAPD analysis. Plant Breeding 120:345–349

Eapen.S. and l.George(1994) Agrobacterium tumifaceince mediated gene transfer in pea nut(A.H.L) Plant cell Rep.13:582-586

Ebrahim S, Usha K, Singh B 2015 Pathogenesis related (P R ) proteins in plant defence mechanism.In science against microbial pathogens;Mendes villas A,Farma text,pp;1043-1045.

Graham PH,Vance cp (2003) Legumes importance and constraints to creator use.plant physiol 131:872-877.

Gouda S., Kerry R.G., Das G.,Shin H.S, Patra J.K. (2017)Revitalization of plant growth promoting rhizobacteria for sustainable development in agriculture. Microbiol.131-140.

Herselman L (2003) Genetic variation among Southern African cultivated peanut (A. hypogaea L.) genotypes as revealed by AFLP analysis. Euphytica 133:319–327

Hopkins MS, Casa AM, Wang T, Mitchell SE, Dean RE, Kochert GD, Kresovich S (1999) Discovery and characterization of polymorphic simple sequence repeats (SSRs) in peanut. Crop Sci 39:1243–1247

Mallikarjuna N, Senthil S, Jadhav ,saxena K,Upadhyaya HD (2011) Development of synthetic Ground nut (Arachis hypogaea L) to broaden the genetic base of cultivated ground nut.Gen res crop evol 58;889-907.

Palanivel.s & N.Jayabalan(2002) Direct multiple shoot induction from Different Mature seed explants of Ground nut (Arachis hypogaea.,L.)131(2):127-135.

Rajender V, Thupurani MK, (2016) Regeneration capacities of Tephrosia purpurea-a medicinally important plant Int. J. Rec. Sci Res, 2016, 7, (9):13410-13413.

Tiwari.S.,Tuli.R.(2009) Multiple shoot regeneration in seed derived immature leaflet explants of peanut(Arachis hypogaea L.) Science Horticulture.,21;223-227.

Trivedi.R.(2014) Effect of different factors during in vitro growth and multiplication in ground nut variety JL -24 Proc.of Nat .Acad.sci.Biological sciences,86(1);131-137.. Thomma BPHJ, Cammue BPA,Thevissen K(2002) Plant Defensins.Planta 216;193-202.

Venkatachalam,P.,Subramaniyampillai A.,& Jayabalan,N.(1996) In vitro callus culture and plant regeneration from different explants of ground nut(Arachis hypogaeaL.).Jpn.J.Breed.,46 (4):315-318.

Perumal venkatachalam,N Nateshan Geetha &.Narayana swami pillai,Jayabalan (1998) Influence of plant growth regulators on plant regeneration from epicotyls and hypocotyls cultures of two ground nut(Arachis hypogaea.,L.) Cultivars. Journal of plant Biology,41,1-8.

Uddin MN,Rahman MA,Taveekun J,Rasul MG.(2019) Renewable energy in Bangladesh, status and prospects, Energy procedia.160:655-661.

Varshney RK, Mohan SM, Gaur PM (2013) Achievements and prospects of genomics-assisted breeding in three legume crops of the semi arid tropics. Biotechnol 31(8); 1120-1134.

Verma.D, Huystee.R.B. (1969),Cellular differentiation and peroxidise isozymes in cell culture of pea nut cotyledon.Can.J.Biol.,48:429-431.

Westman AL, Kresovich S (1997) Use of molecular markers techniques for description of plant genetic variation. In: Callow JA, Ford-Lloyd BV, Newbury HJ (eds) Plant Genetic Resources: Conservation and Use. CAB International, Wallingford, UK, pp 9–48Perumal

Venkatachalam,N Nateshan Geetha &.Narayana swami pillai, Jayabalan (1998) Influence of plant growth regulators on plant regeneration from epicotyls and hypocotyls cultures of two ground nut(Arachis hypogaea.,L.) Cultivars. Journal of plant Biology,41,1-8.

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