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2011 | 14 | 3 |

Tytuł artykułu

The effect of simulated drought on HVA1 and SRG6 gene expression in spring barley

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Wydawca

-

Rocznik

Tom

14

Numer

3

Opis fizyczny

http://www.ejpau.media.pl/volume14/issue3/art-04.html

Twórcy

autor
  • Department of Biotechnology of Animal Reproduction, National Research Institute of Animal Production, Krakowska 1, 32-083 Balice, Poland
autor
autor
autor

Bibliografia

  • 1. Battaglia M., Olvera-Carrillo Y., Garciarrubio A., Campos F., Covarrubias A., 2008. The enigmatic LEA proteins and other hydrophilins. Plant Physiology 148: 6–24.
  • 2. Bray E.A., 1993. Molecular Responses to Water Deficit. Plant Physiology 103: 1035–1040.
  • 3. Cattivelli L., Rizza F., Badeck F., Mazzucotelli E., Mastrangelo A., Francia E., Mare`a C., Tondelli A., Stanca A., 2008. Drought tolerance improvement in crop plants: An integrated view from breeding to genomics. Field Crops Research 105: 1–14.
  • 4. Close T.J., 1996. Dehydrins: Emergence of biochemical role of a family of plant dehydration proteins. Physiologia Plantarum 97: 795–803.
  • 5. Close T.J., 1997. Dehydrins: A commonalty In the response of plants to dehydration and low temperature. Physiologia Plantarum 100: 291–296.
  • 6. Comadran J., Russell J.R., van Eeuwijk F.A., Ceccarelli S., Grando S., Baum M., Stanca A.M., Pecchioni N., Mastrangelo A.M., Akar T., Al-Yassin A., Benbelkacem A., Choumane W., Ouabbou H., Dahan R., Bort J., Araus J-L., Pswarayi A., Romagosa I., Hackett C.A., Thomas W.T.B., 2008. Mapping adaptation of barley to droughted environments. Euphytica 161: 35–45.
  • 7. Dure L III., 1993. Structural motifs in Lea proteins inPlant Responses to Cellular Dehydration during Environmental Stress. Current Topics in Plant Physiology, Vol 10. American Society of Plant Physiologists 91–103.
  • 8. Fu D., Huang B., Xiao Y., Muthukrishnan S., Liang G.H., 2007. Overexpression of barley hva1 gene in creeping bentgrass for improving drought tolerance. Plant Cell Reports 26: 467–477.
  • 9. Maqbool S.B., Zhong H., El-Maghraby Y., Ahmad A., Chai B., Wang W., Sabzikar R., Sticklen M.B., 2002. Competence of oat (Avena sativa L.) shoot apical meristems for integrative transformation, inherited expression, and osmotic tolerance of transgenic lines containing hva1. Theoretical and Applied Genetics 105: 201–208.
  • 10. Mundy J., Chua N. H., 1988 Abscisic acid and water-stress induce the expression of a novel rice gene. EMBO J. 7,2279-2286.
  • 11. Oraby H.F, Ransom C.B, Kravchenko A.N, Sticklen M.B., 2005. Barley HVA1 Gene Confers Salt Tolerance in R3 Transgenic Oat. Crop Science 45: 2218–2227.
  • 12. Rapacz M., Koœcielniak J., Jurczyk B., Adamska A., Wójcik M., 2010. Different patterns of physiological and molecular response to drought in seedlings of malt- and feed-type barleys (Hordeum vulgare). Journal of Agronomy and Crop Science, doi:10.1111
  • 13. Sivamani E., Bahieldin A., Wraith J.M., Al-Niemi T., Dyer W.E., Ho T-H.D., Qu R., 2000. Improved biomass productivity and water use efficiency under water deficit conditions in transgenic wheat constitutively expressing the barley HVA1 gene. Plant Science 155: 1–9.
  • 14. Tong S., Ni Z., Peng H., Dong G., Sun Q., 2007. Ectopic overexpression of wheat TaSrg6 gene confers water stress tolerance in Arabidopsis. Plant Sci. 103: 1079–1086.
  • 15. Xiao B., Huang Y., Tang N., Xiong L., 2007. Over-expression of a LEA gene in rice improves drought resistance under the field conditions. Theoretical and Applied Genetics 115: 35–46.
  • 16. Xu D., Duan X., Wang B., Hong B., Ho T., Wu R., 1996. Expression of a late Embryogenesis Abundant Protein Cene, HVA1, from Barley Confers Tolerance to Water Deficit and Salt Stress in Transgenic Rice. Plant Physiology 110: 249–257.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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