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In Vitro Culture Transformation & Molecular Markers for Crop Improvement

In Vitro Culture Transformation & Molecular Markers for Crop Improvement PDF Author: A S Islam
Publisher: CRC Press
ISBN:
Category : Science
Languages : en
Pages : 238

Book Description
The book provides latest information in a variety of subjects from pure micropropagation, conser-vation to transformation in multitude of crops. It will serve as a valuable reference book in most of the research laboratories. The chapters are derived from the Fourth International Conference held by Bangladesh Association for Plant Tissue Culture and Biotechnology.

In Vitro Culture Transformation & Molecular Markers for Crop Improvement

In Vitro Culture Transformation & Molecular Markers for Crop Improvement PDF Author: A S Islam
Publisher: CRC Press
ISBN:
Category : Science
Languages : en
Pages : 238

Book Description
The book provides latest information in a variety of subjects from pure micropropagation, conser-vation to transformation in multitude of crops. It will serve as a valuable reference book in most of the research laboratories. The chapters are derived from the Fourth International Conference held by Bangladesh Association for Plant Tissue Culture and Biotechnology.

In Vitro Application in Crop Improvement

In Vitro Application in Crop Improvement PDF Author: A Mujib
Publisher: CRC Press
ISBN: 1482280116
Category : Technology & Engineering
Languages : en
Pages : 338

Book Description
Covers research achievements in the fields of developmental biology, physiology, and pathology. Chapters discuss sericulture techniques, cocoons, dormancy and hormones, clones, the apple biting silkworm, the sable mutation, separation of male and female eggs, and genetic engineering. An appendix explains the technical terminology. Numerous illustra

Molecular Marker Technology for Crop Improvement

Molecular Marker Technology for Crop Improvement PDF Author: José Miguel Soriano
Publisher: MDPI
ISBN: 3039438638
Category : Science
Languages : en
Pages : 302

Book Description
Since the 1980s, agriculture and plant breeding have changed with the development of molecular marker technology. In recent decades, different types of molecular markers have been used for different purposes: mapping, marker-assisted selection, characterization of genetic resources, etc. These have produced effective genotyping, but the results have been costly and time-consuming due to the small number of markers that could be tested simultaneously. Recent advances in molecular marker technologies such as the development of high-throughput genotyping platforms, genotyping by sequencing, and the release of the genome sequences of major crop plants have opened new possibilities for advancing crop improvement. This Special Issue collects 16 research studies, including the application of molecular markers in 11 crop species, from the generation of linkage maps and diversity studies to the application of marker-assisted selection and genomic prediction.

Molecular Techniques in Crop Improvement

Molecular Techniques in Crop Improvement PDF Author: Shri Mohan Jain
Publisher: Springer Science & Business Media
ISBN: 9048129672
Category : Science
Languages : en
Pages : 772

Book Description
This book provides comprehensive information on the latest tools and techniques of molecular genetics and their applications in crop improvement. It thoroughly discusses advanced techniques used in molecular markers, QTL mapping, marker-assisted breeding, and molecular cytogenetics.

Molecular Marker Techniques

Molecular Marker Techniques PDF Author: Nitish Kumar
Publisher: Springer Nature
ISBN: 9819916127
Category : Technology & Engineering
Languages : en
Pages : 367

Book Description
This edited book covers the applications of molecular markers in the genetic improvement of crop plants. Recent advances in molecular marker techniques such as the development of high-throughput genotyping platforms, marker-assisted selection, and non-coding RNA-based markers have been discussed. Essential information is provided on functional markers, genotype-by-sequencing, and association mapping methodologies that can facilitate accelerated crop breeding programs for increased yield, high nutritional quality, and tolerance to a variety of abiotic and biotic stresses. This volume presents basic information on molecular marker techniques from marker location up to gene cloning. The book includes a description of technical approaches in genome analysis such as comparison of marker systems, positional cloning, and array techniques. This book is of interest to teachers, researchers, and plant breeders. The book also serves as additional reading material for undergraduate and graduate students of agriculture, horticulture, and forestry.

Biotechnologies of Crop Improvement, Volume 1

Biotechnologies of Crop Improvement, Volume 1 PDF Author: Satbir Singh Gosal
Publisher: Springer
ISBN: 3319782835
Category : Science
Languages : en
Pages : 497

Book Description
During the past 15 years, cellular and molecular approaches have emerged as valuable adjuncts to supplement and complement conventional breeding methods for a wide variety of crop plants. Biotechnology increasingly plays a role in the creation, conservation, characterization and utilization of genetic variability for germplasm enhancement. For instance, anther/microspore culture, somaclonal variation, embryo culture and somatic hybridization are being exploited for obtaining incremental improvement in the existing cultivars. In addition, genes that confer insect- and disease-resistance, abiotic stress tolerance, herbicide tolerance and quality traits have been isolated and re-introduced into otherwise sensitive or susceptible species by a variety of transgenic techniques. Together these transformative methodologies grant access to a greater repertoire of genetic diversity as the gene(s) may come from viruses, bacteria, fungi, insects, animals, human beings, unrelated plants or even be artificially derived. Remarkable achievements have been made in the production, characterization, field evaluation and commercialization of transgenic crop varieties worldwide. Likewise, significant advances have been made towards increasing crop yields, improving nutritional quality, enabling crops to be raised under adverse conditions and developing resistance to pests and diseases for sustaining global food and nutritional security. The overarching purpose of this 3-volume work is to summarize the history of crop improvement from a technological perspective but to do so with a forward outlook on further advancement and adaptability to a changing world. Our carefully chosen “case studies of important plant crops” intend to serve a diverse spectrum of audience looking for the right tools to tackle complicated local and global issues.

Chemistry , Biochemistry and Ayurveda of Indian Medicinal Plants

Chemistry , Biochemistry and Ayurveda of Indian Medicinal Plants PDF Author: Prof. I.P. Tripathi
Publisher: International E Publication
ISBN: 8183520049
Category : Medical
Languages : en
Pages : 248

Book Description
This book aims to discuss and practices all the issues pertaining to medicinal plants research, documentation, utilization. conservation activities, standardization, quality control, tissue culture, biotechnology, biochemistry, phytochemistry and chemical characterization taking place in various Universities, Institutions, Colleges and their impact on medicinal plants.

Somaclonal Variation and Induced Mutations in Crop Improvement

Somaclonal Variation and Induced Mutations in Crop Improvement PDF Author: S.M. Jain
Publisher: Springer Science & Business Media
ISBN: 9401591253
Category : Science
Languages : en
Pages : 615

Book Description
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. The first report on induced mutation of a gene by HJ. Muller in 1927 was a major mi1estone in enhancing variation, and also indicated the potential applica tions of mutagenesis in plant improvement. Radiation sources, such as X-rays, gamma rays and fast neutrons, and chemical mutagens (e. g. , ethyl methane sulphonate) have been widely used to induce mutations.

Recent Advances in Plant in vitro Culture

Recent Advances in Plant in vitro Culture PDF Author: Annarita Leva
Publisher: BoD – Books on Demand
ISBN: 9535107879
Category : Technology & Engineering
Languages : en
Pages : 224

Book Description
The purpose of this book is to provide the advances in plant in vitro culture as related to perennial fruit crops and medicinal plants. Basic principles and new techniques, now available, are presented in detail. The book will be of use to researchers, teachers in biotechnology and for individuals interested to the commercial application of plant in vitro culture.

Salt Stress in Plants

Salt Stress in Plants PDF Author: Parvaiz Ahmad
Publisher: Springer Science & Business Media
ISBN: 1461461081
Category : Science
Languages : en
Pages : 509

Book Description
Environmental conditions and changes, irrespective of source, cause a variety of stresses, one of the most prevalent of which is salt stress. Excess amount of salt in the soil adversely affects plant growth and development, and impairs production. Nearly 20% of the world’s cultivated area and nearly half of the world’s irrigated lands are affected by salinity. Processes such as seed germination, seedling growth and vigour, vegetative growth, flowering and fruit set are adversely affected by high salt concentration, ultimately causing diminished economic yield and also quality of produce. Most plants cannot tolerate salt-stress. High salt concentrations decrease the osmotic potential of soil solution, creating a water stress in plants and severe ion toxicity. The interactions of salts with mineral nutrition may result in nutrient imbalances and deficiencies. The consequence of all these can ultimately lead to plant death as a result of growth arrest and molecular damage. To achieve salt-tolerance, the foremost task is either to prevent or alleviate the damage, or to re-establish homeostatic conditions in the new stressful environment. Barring a few exceptions, the conventional breeding techniques have been unsuccessful in transferring the salt-tolerance trait to the target species. A host of genes encoding different structural and regulatory proteins have been used over the past 5–6 years for the development of a range of abiotic stress-tolerant plants. It has been shown that using regulatory genes is a more effective approach for developing stress-tolerant plants. Thus, understanding the molecular basis will be helpful in developing selection strategies for improving salinity tolerance. This book will shed light on the effect of salt stress on plants development, proteomics, genomics, genetic engineering, and plant adaptations, among other topics. The book will cover around 25 chapters with contributors from all over the world. ​​