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Titlebook: Cell and Tissue Culture in Forestry; General Principles a J. M. Bonga,Don J. Durzan Book 1987 Springer Science+Business Media Dordrecht 198

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书目名称Cell and Tissue Culture in Forestry
副标题General Principles a
编辑J. M. Bonga,Don J. Durzan
视频video
丛书名称Forestry Sciences
图书封面Titlebook: Cell and Tissue Culture in Forestry; General Principles a J. M. Bonga,Don J. Durzan Book 1987 Springer Science+Business Media Dordrecht 198
描述Since the first edition of our book "Tissue Culture in Fores­ try" in 1982 we have witnessed remarkable advances in cell and tissue culture technologies with woody perennials. In addition to forest biologists in government, industry, and universities, we now have molecular biologists, genetic engineers, and biochemists using cell and tissue cultures of woody species routinely. There­ fore, the time has come for an update of the earlier edition. In our present effort to cover new developments we have expanded to three volumes: 1. General principles and Biotechnology 2. Specific Principles and Methods: Growth and Development 3. Case Histories: Gymnosperms, Angiosperms and Palms The scientific barriers to progress in tree improvement are not so much lack of foreign gene expression in plants but our current inabili ty to regenerate plants in true-to-type fashion on a mas­ sive and economic scale. To achieve this in the form of an appro­ pr iate biotechnology, cell and tissue culture will increasing ly require a better understanding of basic principles in chemistry and physics that determine structural and functional relationships among molecules and macromolecules (proteins, RNA, DNA)
出版日期Book 1987
关键词Woody plant; biotechnology; environment; forest trees; genetic engineering; metabolism; temperature
版次1
doihttps://doi.org/10.1007/978-94-017-0994-1
isbn_softcover978-90-481-8300-5
isbn_ebook978-94-017-0994-1Series ISSN 0924-5480 Series E-ISSN 1875-1334
issn_series 0924-5480
copyrightSpringer Science+Business Media Dordrecht 1987
The information of publication is updating

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Juvenility and Maturityristics (21); bark characteristics, (52); leaf shape and thickness, phyllotaxis, plastochron, thorniness, and shoot orientation (16, 64); branch number and branching pattern (39); tracheid width (52) and length (61); shoot growth vigor (25, 28, 72) and other physiological characteristics such as sea
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Somaclonal Variationugarcane (23, 28), and potato (42). Recent studies on tomato (19), rice (41, 52), and wheat (30) have revealed that variant characteristics expressed in the . plants are transmitted to the progenies of sexually propagated crops. The recovery of single gene mutations in tomato (19) and wheat (30) hav
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All girls shall leave the Reservesnificance(33). The growing tendency to allocate reject lands to forestry(109) justifies substantial research effort on the physiological, biochemical and genetic effects of these elements on forest tree species. It is one aim of this chapter to provide some guidance on the use of tissue culture systems for studies of defined micro-nutrient stress.
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Introduction: More than my own mother to mend quantitative interaction of two or more growth regulators are of common occurrence. Finally, a growth regulator that elicits a positive response in a given tissue at a given concentration may inhibit the same physiological response when used at higher concentrations.
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https://doi.org/10.1057/9780230514263ncreased interest in these species due to economic and academic considerations and improved technologies for genetic analysis at the cellular and molecular levels, this situation will probably change soon.
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