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Transgenic barley: A prospective tool for biotechnology and agriculture

期刊

BIOTECHNOLOGY ADVANCES
卷 32, 期 1, 页码 137-157

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.biotechadv.2013.09.011

关键词

Barley; Transgenesis; Stress tolerance; Pathogen resistance; Molecular pharming; Yield improvement

资金

  1. Centre of the Region Hana for Biotechnological and Agricultural Research [ED0007/01/01]
  2. Ministry of Education Youth and Sports, Czech Republic [KONTAKT II LH13062]
  3. Grant Agency of the Academy of Science, Czech Republic [IAA601370901]
  4. Operational Program Education for Competitiveness - European Social Fund [CZ.1.07/23.00/20.0165]

向作者/读者索取更多资源

Barley (Hordeum vulgare L) is one of the founder crops of agriculture, and today it is the fourth most important cereal grain worldwide. Barley is used as malt in brewing and distilling industry, as an additive for animal feed, and as a component of various food and bread for human consumption. Progress in stable genetic transformation of barley ensures a potential for improvement of its agronomic performance or use of barley in various biotechnological and industrial applications. Recently, barley grain has been successfully used in molecular farming as a promising bioreactor adapted for production of human therapeutic proteins or animal vaccines. In addition to development of reliable transformation technologies, an extensive amount of various barley genetic resources and tools such as sequence data, microarrays, genetic maps, and databases has been generated. Current status on barley transformation technologies including gene transfer techniques, targets, and progeny stabilization, recent trials for improvement of agricultural traits and performance of barley, especially in relation to increased biotic and abiotic stress tolerance, and potential use of barley grain as a protein production platform have been reviewed in this study. Overall, barley represents a promising tool for both agricultural and biotechnological transgenic approaches, and is considered an ancient but rediscovered crop as a model industrial platform for molecular farming. (C) 2013 Elsevier Inc. All rights reserved.

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