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2014 | 158 | 10 |

Tytuł artykułu

Czy kriokonserwacja jest bezpieczna? Określenie potencjalnych zmian w tkankach roślinnych poddanych kriogenicznemu przechowywaniu

Treść / Zawartość

Warianty tytułu

EN
Cryopreservation - is it safe? Possible changes in cryostored plant genetic resources

Języki publikacji

PL

Abstrakty

EN
Cryopreservation (storage in liquid nitrogen, –196°C) is a technique that ensures safe, long−term conservation of plant species with recalcitrant seeds, vegetatively propagated species and biotechnology products such as somatic embryos, cell lines and genetically transformed material. The aim of cryostorage is to keep plant tissue in a safe way, which does not cause changes during storage at neither phenotypic, cytological and histological, biochemical, genetic nor epigenetic level. Therefore, before cryostorage will be applied for long−term preservation it should be thoroughly assess if it does not cause any injuries in plant material.

Wydawca

-

Czasopismo

Rocznik

Tom

158

Numer

10

Opis fizyczny

s.795-800,bibliogr.

Twórcy

autor
  • Pracownia Biologii Nasion, Instytut Dendrologii Polskiej Akademii Nauk, ul.Parkowa 5, 62-035 Kórnik
autor
  • Pracownia Biologii Nasion, Instytut Dendrologii Polskiej Akademii Nauk, ul.Parkowa 5, 62-035 Kórnik
autor
  • Pracownia Biologii Nasion, Instytut Dendrologii Polskiej Akademii Nauk, ul.Parkowa 5, 62-035 Kórnik
autor
  • Pracownia Biologii Nasion, Instytut Dendrologii Polskiej Akademii Nauk, ul.Parkowa 5, 62-035 Kórnik

Bibliografia

  • Ahuja S., Mandal B. B., Dixit S., Srivastavab P. S. 2002. Molecular, phenotypic and biosynthetic stability in Dioscorea floribunda plants derived from cryopreserved shoot tips. Plant Science 163: 971−977.
  • Bajaj Y. P. S. 1977. Initiation of shoots and callus from potato−tuber sprouts and axillary buds frozen at −196°C. Crop Improvement 4: 48−53.
  • Bayliss M. W. 1980. Chromosomal variation in plant tissues in culture. International Review of Cytology 11: 113−143.
  • Chmielarz P., Michalak M., Pałucka M., Wasileńczyk U. 2011. Successful cryopreservation of Quercus robur plumules. Plant Cell Reports 30: 1405−1414.
  • Cote F. X., Goue O., Domergue R., Panis B., Jenny C. 2000. In−field behavior of banana plants (Musa AA sp.) obtained after regeneration of cryopreserved embryogenic cell suspensions. CryoLetters 21: 19−24.
  • Dussert S., Chabrillangr N., Engelmann F., Anthony F., Hamon S. 1997. Cryopreservation of coffee (Coffea arabica L.) seeds: Importance of the precooling temperature. CryoLetters 18: 269−276.
  • Eksomtramage T., Paulet F., Noyer J. L., Feldmann P., Glaszmann J. C. 1992. Utility of isozymes in sugarcane breeding. Sugarcane 3: 14−21.
  • Fernandes P., Rodriguez E., Pinto G., Roldán−Ruiz I., De Loose M., Santos C. 2008. Cryopreservation of Quercus suber somatic embryos by encapsulation−dehydration and evaluation of genetic stability. Tree Physiology 28: 1841−1850.
  • Fukai S., Goi M., Tanaka M. 1994. The chimeric structure of the apical dome of chrysanthemum (Dendranthema grandiflorum (Ramat.) Kitam.) is affected by cryopreservation. Science Horticulturae 57: 347−351.
  • Gonzalez−Arnao M. T., Urra C., Engelmann F., Ortiz R., de la Fe C. 1999. Cryopreservation of encapsulated sugarcane apices: effect of storage temperature and storage duration. CryoLetters 20: 347−352.
  • Hao Y. J., Liu Q. L., Deng X. X. 2001. Effect of cryopreservation on apple genetic resources at morphological, chromosomal, and molecular levels. Cryobiology 43: 46−53.
  • Hao Y. J., You C. X., Deng X. X. 2002. Effects of cryopreservation on developmental competency, cytological and molecular stability of citrus callus. CryoLetters 23: 27−35.
  • Harding K. 2004. Genetic integrity of cryopreserved plant cells: a review. CryoLetters 25: 3−22.
  • Harding K., Marzalin M., Krishnapillay B., Nashatul Zaimah N. A., Notmah M. N., Benson E. E. 2000. Molecular stability assessments of trees regenerated from cryopreserved mahogany (Swietenia macrophylla) seed germplasm using non−radioactive techniques to examine the chromatin structure and DNA methyalation status of the ribosomal RNA genes. Journal of Tropical Forest Science 12: 149−163.
  • Harding K., Müller J., Timmermann H., Lorenz M., Day J. G., Friedl T. 2011. Encapsulation dehydration colligative cryoprotective strategies and amplified fragment length polymorphism markers to verify the identity
  • and genetic stability of euglenoids following cryopreservation. CryoLetters 31: 460−472.
  • Hazubska−Przybył T., Chmielarz P., Michalak M., Dering M., Bojarczuk K. 2013. Survival and genetic stability of Picea abies embryogenic cultures after cryopreservation using a pregrowth−dehydration method. Plant Cell Tissue and Organ Culture 113: 303−313.
  • Helliot B., Madur D., Dirlewanger E., de Boucaud M. T. 2002. Evaluation of genetic stability in cryopreserved Prunus. In Vitro Cellular Developmental Biology – Plant 38: 493−500.
  • Hitmi A., Barthomeuf C., Sallanon H. 1999. Cryopreservation of Chrysanthemum cinerariaefolium shoot tips. Effects of pretreatment conditions and retention of biosynthetic capacity. CryoLetters 20: 109−120.
  • Kaity A., Ashmore S. E., Drew R. A., Dulloo M. E. 2008. Assessment of genetic and epigenetic changes following cryopreservation in papaya. Plant Cell Reports 27: 1529−1539.
  • Kovacs E. I. 1985. Regulation of karyotype stability in tobacco tissue cultures of normal and tumors genotypes. Theoretical Applied Genetics 70: 548−554.
  • Larkin P. J., Scowcroft W. R. 1981. Somaclonal variation – a novel source of variability from cell cultures for plant improvement. Theoretical and Applied Genetics 60: 197−214.
  • Law J. A., Jacobsen S. E. 2009. Dynamic DNA Methylation. Science 323: 1568−1569.
  • Martín C., Cervera M. T., González−Benito M. E. 2011. Genetic stability analysis of chrysanthemum (Chrysanthemum × morifolium Ramat) after different stages of an encapsulation−dehydration cryopreservation protocol. Journal of Plant Physiology 168: 158−166.
  • Michalak M., Barciszewska M. Z., Barciszewski J., Plitta B. P., Chmielarz P. 2013a. Global Changes in DNA Methylation in Seeds and Seedlings of Pyrus communis after Seed Desiccation and Storage. PLoS ONE 8: e70693.
  • Michalak M., Plitta B. P., Chmielarz P. 2013b. Desiccation sensitivity and successful cryopreservation of oil seeds of European hazelnut (Corylus avellana). Annals of Applied Biology 163: 351−358.
  • Myszka H., Bednarczyk D., Najder M., Kaca W. 2003. Synthesis and induction of apoptosis in B cell chronic leukemia by diosgenyl 2−amino−2−deoxy−beta−D−glucopyranoside hydrochloride and its derivatives. Carbohydrate Research 338: 133−141.
  • Panis B., Piette B., André E., Van den Houwe I., Swennen R. 2011. Droplet vitrification: The first generic cryopreservation protocol for organized plant tissues? Acta Horticularae 908: 157−162.
  • Paulet F., Engelmann F., Glaszmann J. C. 1993. Cryopreservation of apices of in vitro plantlets of sugarcane (Saccharum sp. hybrids) using encapsulation/dehydration. Plant Cell Reports 12: 525−529.
  • Pedro E. L., Arroyo−Garcia R., Reed B. M., Revilla M. A. 2008. Genetic and epigenetic stability of cryopreserved and cold−stored hops (Humulus lupulus L.). Cryobiology 57: 234−241.
  • Plitta B. P., Michalak M., Kotlarski S., Chmielarz P. 2013. Kriogeniczne przechowywanie nasion. Sylwan 157 (10): 723−729.
  • Plitta B. P., Michalak M., Naskręt−Barciszewska M. Z., Barciszewski J., Chmielarz P. 2014. DNA methylation of Quercus robur L. plumules following cryo−pretreatment and cryopreservation. Plant Cell Tissue and Organ Culture 117: 31−37.
  • Rumińska−Lema L. 2005. Czy chryzantemy są chimerami? Owoce Warzywa Kwiaty 9: 46−47.
  • Sánchez C., Martínez M. T., Vidal N., San−José M. C., Valladares S., Vieitez A. M. 2008. Preservation of Quercus robur germplasm by cryostorage of embryogenic cultures derived from mature trees and RAPD analysis of genetic stability. CryoLetters 29: 493−504.
  • Sisunandar, Rival A., Turquay P., Samosir Y., Adkins S.W. 2010. Cryopreservation of coconut (Cocos nucifera L.) zygotic embryos does not induce morphological, cytological or molecular changes in recovered seedlings. Planta 232: 435−447.
  • Wu Y., Zhao Y., Engelmann F., Zhou M. 2001. Cryopreservation of kiwi shoot tips. CryoLetters 22: 277−284.
  • Yang W. R., Zhang Q. X., Pan H. T., Sun M. 2010. In vitro regeneration of Lilium tsingtauense Gilg. and analysis of genetic variability in micropropagated plants using RAPD and ISSR techniques. Propagation Ornamental Plants 10: 59−66.
  • Zemach A., McDaniel I. E., Silva P., Zilberman D. 2010. Genome−wide evolutionary analysis of eukaryotic DNA methylation. Science 328: 916−919.

Typ dokumentu

Bibliografia

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