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Titlebook: DNA-Based Markers in Plants; Ronald L. Phillips,Indra K. Vasil Book 2001Latest edition Springer Science+Business Media Dordrecht 2001 Arab

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書(shū)目名稱(chēng)DNA-Based Markers in Plants
編輯Ronald L. Phillips,Indra K. Vasil
視頻videohttp://file.papertrans.cn/261/260221/260221.mp4
叢書(shū)名稱(chēng)Advances in Cellular and Molecular Biology of Plants
圖書(shū)封面Titlebook: DNA-Based Markers in Plants;  Ronald L. Phillips,Indra K. Vasil Book 2001Latest edition Springer Science+Business Media Dordrecht 2001 Arab
描述The double helix architecture of DNA was elucidated in 1953. Twenty years later, in 1973, the discovery of restriction enzymes helped to create recombinant DNA mol- ecules in vitro. The implications of these powerful and novel methods of molecular biol- ogy, and their potential in the genetic manipulation and improvement of microbes, plants and animals, became increasingly evident, and led to the birth of modern biotechnology. The first transgenic plants in which a bacterial gene had been stably integrated were produced in 1983, and by 1993 transgenic plants had been produced in all major crop species, including the cereals and the legumes. These remarkable achievements have resulted in the production of crops that are resistant to potent but environmentally safe herbicides, or to viral pathogens and insect pests. In other instances genes have been introduced that delay fruit ripening, or increase starch content, or cause male sterility. Most of these manipulations are based on the introduction of a single gene - generally of bacterial origin - that regulates an important monogenic trait, into the crop of choice. Many of the engineered crops are now under field trials and are expec
出版日期Book 2001Latest edition
關(guān)鍵詞Arabidopsis thaliana; Bur; Chromosom; DNA; PCR; bean; burr; evolution; genes; wheat
版次2
doihttps://doi.org/10.1007/978-94-015-9815-6
isbn_softcover978-90-481-5672-6
isbn_ebook978-94-015-9815-6Series ISSN 1381-1932
issn_series 1381-1932
copyrightSpringer Science+Business Media Dordrecht 2001
The information of publication is updating

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Managing Conceptual Design Objectsnt improvement since the rediscovery of Mendel’s principles has involved both art and science, the contributions of science will undoubtedly assume a much greater role as new technology becomes more widely used and as additional gains in agricultural productivity are required at an ever-increasing pace.
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V. Deinichenko,G. Bikesheva,A. Borisoviploid cottons has suggested that polyploidy has created novel opportunities for evolution. Development and application of a comprehensive set of DNA markers, and other molecular tools has created new avenues for investigating the genetic control of fiber development, and other questions in cotton genetics and evolution.
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https://doi.org/10.1007/978-3-030-78292-4 to Puccinia sorghi) had been placed to chromosome arm by deletion analysis, but no biochemically defined loci were yet identified. Accretion of sixty years of data on the 1935 foundation is reflected in the genetic linkage maps in Mutants of Maize (Neuffer et al. 1997).
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Krzysztof Cichocki,Tomasz Szapirove DNA (Pruitt and Meyerowitz 1986). The availability of a complete physical map of the . genome will greatly simplify the cloning of any gene based solely on its mutant phenotype and genetic map location. For the map to be of any utility it is necessary to align the physical map with the classical genetic linkage map via an RFLP map.
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