S., Shinde C. and Nishtha, . and J., Salunke A. and V., Deshmukh V. (2023) Speed Breeding: One of the Rapid Generation Advancement Approaches. Current Journal of Applied Science and Technology, 42 (48). pp. 63-69. ISSN 2457-1024
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Abstract
Speed breeding is a cutting-edge breeding method with the potential to revolutionize the agricultural industry. Speed breeding significantly reduces the time it takes for crops to mature, enabling the production of several generations each year. This is accomplished by adjusting environmental conditions like temperature, light quality, and photoperiod duration. Researchers and breeders can create new crop varieties with desired features more quickly thanks to this faster breeding procedure. Compared to conventional breeding techniques, speed breeding has a number of benefits. It makes it simpler to generate improved cultivars with higher yield, disease resistance, and other desirable qualities since it enables the swift evaluation and selection of plant attributes. Speed breeding speeds up the breeding process, allowing scientists to adapt to shifting environmental factors and developing agricultural problems more quickly. While speed breeding offers tremendous potential, there are also limitations and challenges associated with its implementation. Factors such as plant species, specific traits, and optimal growth conditions need to be carefully considered. This system involves manipulation of growing conditions by different ways, here three of the methods are described. As the population of world is increasing day by day so to overcome the risk of global food security and to cope with such future problems, such rapid crop improvement approaches need to be implemented. Speed breeding approach is an old concept but its implementation in the field of breeding has not been exploited to a greater extent. However, ongoing advancements in technology and further research is likely to overcome these challenges, making speed breeding an increasingly valuable tool for crop improvement in the future.
Item Type: | Article |
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Subjects: | Academic Digital Library > Multidisciplinary |
Depositing User: | Unnamed user with email info@academicdigitallibrary.org |
Date Deposited: | 03 Jan 2024 04:02 |
Last Modified: | 03 Jan 2024 04:02 |
URI: | http://publications.article4sub.com/id/eprint/3091 |