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Titlebook: Improvement of Cereal Quality by Genetic Engineering; Robert J. Henry,John A. Ronalds Book 1994 Springer Science+Business Media New York 1

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書目名稱Improvement of Cereal Quality by Genetic Engineering
編輯Robert J. Henry,John A. Ronalds
視頻videohttp://file.papertrans.cn/463/462749/462749.mp4
圖書封面Titlebook: Improvement of Cereal Quality by Genetic Engineering;  Robert J. Henry,John A. Ronalds Book 1994 Springer Science+Business Media New York 1
描述If I had to nominate an area of food production in which science has played a major role in addressing product quality to meet market needs I would not pass by the intimate rela- tionship of cereaI chemistry with cereaI plant breeding programs. In Australia, cereaI chemistry and product quality labs ha ve long been associated with wheat and barley breeding programs. Grain quality characteristics have been principal factors determining registration of new cultivars. This has not been without pain in Australia. On the one hand some cultivars with promising yield and agronomic characteristics have been rejected on the basis of quality characteristics, and for a period our breeders imposed selection regimes based on yield which resulted in declining quality characteristics. In the end the market provides the critic al signals. For many years Australia held a commanding market position on the basis of a single quality image, initiaHy based on bulked wheat of fair/average quality (FAQ). Later this was improved by segregation into four broad classes* based around Australian Standard White (ASW). This is no longer a viable marketing strategy. We were probably a little slow in rec- ognising
出版日期Book 1994
關(guān)鍵詞chemistry; development; genetic engineering; genetic transformation; protein; wheat; Tree Biology
版次1
doihttps://doi.org/10.1007/978-1-4615-2441-0
isbn_softcover978-1-4613-6037-7
isbn_ebook978-1-4615-2441-0
copyrightSpringer Science+Business Media New York 1994
The information of publication is updating

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Genetic Engineering of Wheat and Barley) into the non-embryogenic cell cultures. Enzyme assays and Southern hybridization confirmed functional expression and stable integration of the chimeric genes into the wheat and barley genomes. These results demonstrated that efficient delivery and stable expression of foreign genes into wheat and
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Genetic Engineering in Rice Plantsimeric gene consisting of the promoter, 1st exon, and 1st intron of a maize polyubiquitin gene (Ubi-1) and the coding sequence of the . gene from .. This construct was transferred into rice protoplasts via electroporation. Transgenic plants grown in a greenhouse were resistant to both bialaphos and
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Transgenic Grain Sorghum (,) Plants via ,ty (nutritional, baking and brewing). We have established an .-medmted transformation protocol, based predominantly on axenic seedlings of inbred lines. After inoculation of . (LBA4404 pBI121 and AGLO pKIWI105) into wounded coleoptiles of . germinating seedlings, we have generated putative transform
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Anthocyanin Genes as Visual Markers for Wheat Transformationvity, ease of visualization, cell-autonomous expression and lack of requirement for exogenous substrates. This is particularly advantageous when using particle bombardment as a DNA delivery system, since cells expressing genes can be counted easily and unambiguously (Bowen 1992). Furthermore, the ce
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