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Titlebook: Somaclonal Variation and Induced Mutations in Crop Improvement; S. M. Jain,D. S. Brar,B. S. Ahloowalia Book 1998 Springer Science+Business

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書目名稱Somaclonal Variation and Induced Mutations in Crop Improvement
編輯S. M. Jain,D. S. Brar,B. S. Ahloowalia
視頻videohttp://file.papertrans.cn/872/871831/871831.mp4
叢書名稱Current Plant Science and Biotechnology in Agriculture
圖書封面Titlebook: Somaclonal Variation and Induced Mutations in Crop Improvement;  S. M. Jain,D. S. Brar,B. S. Ahloowalia Book 1998 Springer Science+Business
描述Genetic variability is an important parameter for plant breeders in any con- ventional crop improvement programme. Very often the desired variation is un- available in the right combination, or simply does not exist at all. However, plant breeders have successfully recombined the desired genes from cultivated crop gerrnplasm and related wild species by sexual hybridization, and have been able to develop new cultivars with desirable agronomie traits, such as high yield, disease, pest, and drought resistance. So far, conventional breeding methods have managed to feed the world‘s ever-growing population. Continued population growth, no further scope of expanding arable land, soil degradation, environ- mental pollution and global warrning are causes of concern to plant biologists and planners. Plant breeders are under continuous pressure to improve and develop new cultivars for sustainable food production. However, it takes several years to develop a new cultivar. Therefore, they have to look for new technologies, which could be combined with conventional methods to create more genetic variability, and reduce the time in developing new cultivars, with early-maturity, and improved yield
出版日期Book 1998
關(guān)鍵詞Embryo; Expression; Fruit; Mutant; Mutation; chromosome; gene expression; genes; genetics; molecular aspects;
版次1
doihttps://doi.org/10.1007/978-94-015-9125-6
isbn_softcover978-90-481-4956-8
isbn_ebook978-94-015-9125-6Series ISSN 0924-1949
issn_series 0924-1949
copyrightSpringer Science+Business Media Dordrecht 1998
The information of publication is updating

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Field Performance of Banana Micropropagules and Somaclones997). . genetic improvement by conventional hybridization is, however, complex and difficult as it is burdened with obstacles typical of polyploid, vegetatively propagated crops, among which the trisomie pattern of gene inheritance, low seed fertility, and slow propagation are most conspicuous. Henc
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Techniques and Mutagenesis for the Improvement of Vegetatively Propagated Plants, pineapple, apple, and pear are propagated from vegetative parts, and are not amenable to improvement in the same manner as sexually propagated plants. Many of these plants are complex polyploids, take several years to flower and fruit, some are self-incompatible. In others, such as banana and plan
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Mutation Breeding in Cereals and Legumesere is no doubt about the potential which mutation breeding offers for crop improvement. The attributes which are reported to have been improved by mutation breeding include a wide range of characters, including tolerance to biotic and abiotic stresses, duration of flowering and maturity, and other
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