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Titlebook: Genetic Manipulation of Woody Plants; James W. Hanover,Daniel E. Keathley,Gregory Kuny Book 1988 Plenum Press, New York 1988 Woody plant.b

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发表于 2025-3-21 16:27:46 | 显示全部楼层 |阅读模式
书目名称Genetic Manipulation of Woody Plants
编辑James W. Hanover,Daniel E. Keathley,Gregory Kuny
视频video
丛书名称Basic Life Sciences
图书封面Titlebook: Genetic Manipulation of Woody Plants;  James W. Hanover,Daniel E. Keathley,Gregory Kuny Book 1988 Plenum Press, New York 1988 Woody plant.b
描述This Volume contains the papers presented by twenty-eight invited speakers at the symposium entitled, "Genetic Manipulation of Woody Plants," held at Michigan State University, East Lansing, Michigan, from June 21-25, 1987. Also included are abstracts of contributed poster papers presented during the meeting. That the molecular biology of woody plants is a rapidly expanding field is attested to by the large attendance and high level of enthusiasm generated at the conference. Leading scientists from throughout the world discussed challenging problems and presented new insights into the devel­ opment of in vitro culture systems, techniques for DNA analysis and manipulation, gene vector systems, and experimental systems that will lead to a clearer understanding of gene expression and regulation for woody plant species. The presence at the conference of both invited speakers and other scientists who work with nonwoody plant species also added depth to the discussions and applicability of the information presented at the conference. The editors want to commend the speakers for their well-organized and informative talks, and feel particularly indebted to the late Dr. Alexander Hollaender
出版日期Book 1988
关键词Woody plant; biology; evolution; genetics; morphogenesis; mutant; Wood Science and Technology
版次1
doihttps://doi.org/10.1007/978-1-4613-1661-9
isbn_softcover978-1-4612-8922-7
isbn_ebook978-1-4613-1661-9
copyrightPlenum Press, New York 1988
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Gene Transfer in Forest Trees, even in the herbaceous crops. Because of long generation cycles, this method would be impractical in forest trees. Recent advances in biotechnology have made it possible to attempt gene transfer in the forest tree species involving vector systems. In vivo and in vitro genetic transformation will b
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In Vitro Manipulation of Slash Pine (,)s economic importance to the southeastern United States, and has been the subject of intensive tree improvement efforts. The species is amenable to standard cotyledonary micropropagation techniques and to protoplast isolation and culture (as yet only to first-division stage) . Suspension cultures ha
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Potential Application of Haploid Cultures of Tree Speciespossible time; (c) to establish gene maps; and (d) to produce somatic hybrids through protoplast fusion. During each of the last three summers we have obtained embryogenic haploid callus from megagametophytes of .. Key factors in establishing these cultures are collection date, and 2,4-D and glutami
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Tissue Culture of Conifers Using Loblolly Pine as a Model of tissue-culture plantlets, and the development of in vitro trait selection methods. Abbreviated protocols are outlined for the following: (a) organogenesis of adventitious shoots and roots; (b) shoot micropropagation via fascicular and axillary shoots obtained from juvenile, adolescent, and matur
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Use of Leaf Petioles of , , to Study Regulation of Adventitious Root Initiationitro cultured, debladed petioles of juvenile and mature leaves, and the other involves approach grafting of detached leaves to form cuttings composed of the four reciprocal combinations of juvenile and mature petioles with juvenile and mature lamina. The results of experiments with these systems lea
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Nodule Culture: A Developmental Pathway with High Potential for Regeneration, Automated Micropropaga minimum, three cell types (meristematic cells, plastid-dense parenchyma, and vascular elements) and two cell layers (epidermal and internal cortex/vascular) can be distinguished in nodules of poplar. Although nodules have been randomly observed by many researchers working with a myriad of plant spe
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