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Efficient transformation of Actinidia arguta by reducing the strength of basal salts in the medium to alleviate callus browning

  • Han, Meili (The New Zealand Institute for Plant and Food Research Limited) ;
  • Gleave, Andrew P. (The New Zealand Institute for Plant and Food Research Limited) ;
  • Wang, Tianchi (The New Zealand Institute for Plant and Food Research Limited)
  • Received : 2009.11.03
  • Accepted : 2010.01.15
  • Published : 2010.06.30

Abstract

An efficient transformation system for high-throughput functional genomic studies of kiwifruit has been developed to overcome the problem of necrosis in Actinidia arguta explants. The system uses Agrobacterium tumefaciens strain EHA105 harbouring the binary vector pART27-10 to inoculate leaf strips. The vector contains neomycin phosphotransferase (nptII) and ${\beta}$-glucuronidase (GUS) (uidA) genes. A range of light intensities and different strengths of Murashige and Skoog (MS) basal salt media was used to overcome the problem of browning and/or necrosis of explants and calli. Callus browning was significantly reduced, resulting in regenerated adventitious shoots when the MS basal salt concentration in the culture medium was reduced to half-strength at low light intensity ($3.4\;{\mu}mol\;m^{-2}\;s^{-1}$) conditions. Inoculated leaf strips produced putative transformed shoots of Actinidia arguta on half-MS basal salt medium supplemented with 3.0 $mg\;l^{-1}$ zeatin, 0.5 $mg\;l^{-1}$ 6-benzyladenine, 0.05 $mg\;l^{-1}$ naphthalene acetic acid, 150 $mg\;l^{-1}$ kanamycin and 300 $mg\;l^{-1}$ $Timentin^{(R)}$. All regenerated plantlets were deemed putativ transgenic by histochemical GUS assay and polymerase chain-reaction analysis.

Keywords

References

  1. Adams RM II, Koenigsberg SS, Langhans RW (1979) In vitro propagation of the butterwort Pinguicula moranensis H.B.K. HortScience 14:701-702
  2. Crowhurst RN, Gleave AP, MacRae EA, Ampomah-Dwamena C et al (2008) Analysis of expressed sequence tags from Actinidia: applications of a cross species EST database for gene discovery in the areas of flavor, health, color and ripening. BMC Genomics 9:351-376 https://doi.org/10.1186/1471-2164-9-351
  3. Daigen M, Kawakami O, Nagasawa Y (2000) Efficient anther culture method of the japonica rice cultivar Koshihikari. Breed Sci 50:197-202 https://doi.org/10.1270/jsbbs.50.197
  4. Ferguson AR (1984) Kiwifruit: a botanical review. Hortic Rev 6:1-64
  5. Fraser LG, Kent J, Harvey CF (1995) Transformation studies of Actinidia chinensis Planch. N Z J Crop Hortic 23:407-413 https://doi.org/10.1080/01140671.1995.9513917
  6. Godwin I, Todd G, Ford-Lloyd B, Newbury HJ (1991) The effects of acetosyringone and pH on Agrobacterium-mediated transformation vary according to plant species. Plant Cell Rep 9:671-675 https://doi.org/10.1007/BF00235354
  7. Hood EE, Gelvin SB, Melchers LS, Hoekema A (1993) New Agrobacterium helper plasmids for gene transfer to plants. Transgenic Res 2:208-218 https://doi.org/10.1007/BF01977351
  8. Hoshi Y, Kondo M, Mori S, Adachi Y, Nakano M, Kobayashi H (2004) Production of transgenic lily plants by Agrobacteriummediated transformation. Plant Cell Rep 22:359-364 https://doi.org/10.1007/s00299-003-0700-z
  9. James DJ, Passey AJ, Barbara DJ, Bevan M (1989) Genetic transformation of apple (Malus pumila Mill.) using a disarmed Ti-binary vector. Plant Cell Rep 7:658-661
  10. Janssen BJ, Gardner RC (1993) The use of transient GUS expression to develop an Agrobacterium-mediated gene transfer system for kiwifruit. Plant Cell Rep 13:28-31
  11. Kaneyoshi J, Kobayashi S, Nakamura Y, Shigemoto N, Doi Y (1994) A simple and efficient gene transfer system of trifoliate orange (Poncirus trifoliata Raf.). Plant Cell Rep 13:541-545
  12. Linsmaier EM, Skoog F (1965) Organic growth factor requirements of tobacco tissue cultures. Physiol Plant 18:100-127 https://doi.org/10.1111/j.1399-3054.1965.tb06874.x
  13. MacRae EA (2007) Can biotechnology help kiwifruit breeders? Acta Hortic 753:129-138
  14. Matich AJ, Young H, Allen JM, Wang MY, Fielder S, McNeilage MA, MacRae EA (2003) Actinidia arguta: volatile compounds in fruit and flowers. Phytochemistry 63:285-301 https://doi.org/10.1016/S0031-9422(03)00142-0
  15. Matsuta N, Iketani H, Hayashi T (1990) Effect of acetosyringone on kiwifruit transformation. Jpn J Breed 40:184-185
  16. Murashige T, Skoog F (1962) A revised medium for rapid assays with tobacco tissue cultures. Physiol Plant 15:473-497 https://doi.org/10.1111/j.1399-3054.1962.tb08052.x
  17. Preece JE, Compton ME (1991) Problems with explant exudation in micropropagation. In: Bajaj YPS (ed) Biotechnology in agriculture and forestry. High-tech and micropropagation I, vol 17. Springer, Berlin, pp 169-189
  18. Uematsu C, Murase M, Ichikawa H, Imamura J (1991) Agrobacterium- mediated transformation and regeneration of kiwi fruit. Plant Cell Rep 10:286-290
  19. Wang T, Lin-Wang K (2007) High throughput transformation of Actinidia: a platform for kiwifruit functional genomics and molecular breeding. Transgenic Plant J 1:173-184
  20. Wang T, Ran Y, Atkinson RG, Gleave AP, Cohen D (2006) Transformation of Actinidia eriantha: a potential species for functional genomics studies in Actinidia. Plant Cell Rep 25:425-431 https://doi.org/10.1007/s00299-005-0080-7
  21. Wang T, Atkinson RG, Janssen BJ (2007) The choice of Agrobacterium strain for transformation of kiwifruit. Acta Hortic 753:227-232
  22. Wei X, Gou X, Yuan T, Russell SD (2006) A highly efficient in vitro plant regeneration system and Agrobacterium-mediated transformation in Plumbago zeylanica. Plant Cell Rep 25:513-521 https://doi.org/10.1007/s00299-006-0114-9
  23. Williams MH, Boyd LM, McNeilage MA, MacRae EA, Ferguson AR, Beatson RA, Martin PJ (2003) Development and commercialization of 'baby kiwi' (Actinidia arguta Planch). Acta Hortic 610:81-86
  24. Yao JL, Wu JH, Gleave AP, Morris BAM (1996) Transformation of citrus embryogenic cells using particle bombardment and production of transgenic embryos. Plant Sci 113:175-183 https://doi.org/10.1016/0168-9452(95)04292-X

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