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Seed Biology and Technology

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Plant Biology and Biotechnology

Abstract

Seeds play a pivotal role in agriculture, serving as the means to propagate plants from one generation to the next, as food for humans and animals and as an important commodity in the global economy. Seed biology and technology is central to our civilisation. Mechanisation of agriculture and adoption of biotechnology are two of the pillars for advancement of seed science in recent years. Understanding the reproductive behaviour and dissecting the function of a flowering plant opened unlimited avenues for a successful seed production with development of new varieties/cultivars and hybrids leading to increased productivity. Application of biotechnology in seed science is undoubtedly emerging as a promising technology to modify the composition of seeds to improve nutrition status, therapeutic value, pre- and postharvest tolerance to biotic and abiotic stresses, etc. More and more stringent seed laws and bills, acts and rights, rules and regulations, legislation and registration matters brought quality seeds into seed supply chain for profitable marketing. This chapter provides a review and serves as a ready reckoner for various aspects of seed science from the beginning to the end.

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References

  • Agrawal PK, Dadlani M (1995) Techniques in seed science and technology, 2nd edn. South Asian Publishers, New Delhi, pp 109–113, International Book Company Absecon Highlands

    Google Scholar 

  • Bewley JD, Black M (1994) Seeds: physiology of development and germination, 2nd edn. Plenum Press, New York

    Book  Google Scholar 

  • Bhanuprakash K, Yogeesha HS, Arun MN (2010) Physiological and biochemical changes in relation to seed quality in ageing bell pepper seeds. Indian J Agric Sci 80(9):10–13

    Google Scholar 

  • Black M, Bewley JD, Halmer P (2006) The encyclopedia of seeds: science, technology and uses. CAB International, Wallingford

    Google Scholar 

  • Bonner FT, Vozzo JA, Elam WW, Land SB Jr (1994) Tree seed technology, training course. Instructors manual. Southern Forest Exp. Station, U.S. Dept. Agric, New Orleans. General Technical Report SO-106

    Google Scholar 

  • Brahmi P, Saxena S, Dhillon BS (2003) The protection of plant varieties and farmers rights act of India. Curr Sci 86(3):392–398

    Google Scholar 

  • Copeland LO, McDonald MB (2001) Principles of seed science and technology, 4th edn. Kluwer Academic Publishers, Boston

    Book  Google Scholar 

  • Dongre A, Parkhi V (2005) Identification of cotton hybrids through the combination of PCR based RAPD, ISSR, and microsatellite markers. J Plant Biochem Biotechnol 14:53–55

    Article  CAS  Google Scholar 

  • Ellis RH, Hong TD, Roberts EH (1990) An intermediate category of seed storage behaviour. J Exp Bot 41:1167–1174

    Article  Google Scholar 

  • Farent JM, Pammenter NW, Berjak P (1988) Recalcitrance – a current assessment. Seed Sci Technol 16:155–166

    Google Scholar 

  • Finch-Savage WE, Leubner-Metzger G (2006) Seed dormancy and the control of germination. New Phytol 171:501–523

    Article  CAS  PubMed  Google Scholar 

  • Fufa H, Baenziger PS, Beecher BS, Dweikat I, Graybosch RA, Esk Ridge KM (2005) Comparison of phenotypic and molecular marker based classification of hard red winter wheat cultivars. Euphytica 145:133–146

    Article  CAS  Google Scholar 

  • Gadwal VR (2003) The Indian seed industry: its history, current status and future. Curr Sci 84(3):399–406

    Google Scholar 

  • Garg A, Singh AK, Prabhu KV, Mohapatra T, Tyagi NK, Nandakumar N, Singh R, Zaman FU (2006) Utility of a fertility restorer gene linked marker for testing genetic purity of hybrid seeds in rice (Oryza sativa L.). Seed Sci Technol 34:9–18

    Article  Google Scholar 

  • Harrington JF (1972) Seed storage and longevity. In: Kozlowski TT (ed) Seed Biol 3:145–245

    Google Scholar 

  • Harris D (2006) Development and testing of “on-farm” seed priming. Adv Agron 90:129–178

    Article  Google Scholar 

  • Hartmann HT, Kester DE, Davies FT, Geneve RL (2002) Plant propagation: principles and practices, 7th edn. Prentice Hall, New Delhi Englewood Cliffs

    Google Scholar 

  • Hilhorst H, Toorop PE (1997) Review on dormancy, germinability, and germination in crop and weed seeds. Adv Agron 61:111–165

    Article  Google Scholar 

  • http://Agricoop.nic.in/seedpolicy.htm

  • http://Agritech.tnau.ac.in/seed/Seed_seedtesting.html

  • http://seednet.gov.in/material/IndianSeedSector.htm#Seed. Certification System in India

  • Liu L-W, Wang Y, Gong Y-Q, Zhao T-M, Liu G, Li X-Y, Fan-Min Y (2007) Assessment of genetic purity of tomato (Lycopersicon esculentum L.) hybrid using molecular markers. Sci Hortic 115:7–12

    Article  CAS  Google Scholar 

  • Ma L, Chen B, Gao G, Xu K, Li X (2006) Detection of DNA methylation changes during seed germination in rapeseed (Brassica napus). Chin Sci Bull 51(2):182–190

    Article  Google Scholar 

  • Pallavi HM, Gowda R, Vishwanath K, Shadakshari YG, Bhanuprakash K (2011) Identification of SSR markers for hybridity and seed genetic purity testing in sunflower (Helianthus annuus L.). Seed Sci Technol 39:259–264

    Article  Google Scholar 

  • Ramamoorthy K, Sivasubramaniam K, Kannan A (eds) (2006) Seed legislation in India. Agrobios, Jodhpur

    Google Scholar 

  • Roberts EH (1973) Predicting storage life of seeds. Seed Sci Technol 1:499–514

    Google Scholar 

  • Schaefer C (1991) Storage of tree seeds in Kenya, recommendations and problems. In: Proceedings 1st National Tree Seed Workshop, 1–5 Jul 1991, Nairobi, pp 99–113. Kenya Forestry Seed Centre/Kenya Forestry Research Institute

    Google Scholar 

  • Sundaram RM, Naveen kB, Biradar SK, Balachandran SM, Mishra B, Ilyas AM, Virakatamath BC, Yasuhiri M, Masato T, Massahi H (2006) An SSR based linkage map of Capsicum annum. Mol Breed 18:157–169

    Article  Google Scholar 

  • Wang BSP (1975) Tree and shrub seeds. In: Bradnock WT (ed) Advances in research and technology of seeds, part 1: 34–43. PUDOC, Wageningen. www.seedbiology.de/dormancy.asp

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Acknowledgments

The author are grateful to Prof Bir Bahadur, Prof KV Krishnamurthy and Dr. Leela Sahijram for their help in various ways and constructive guidance and criticism in the writing of their review.

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Correspondence to K. Bhanuprakash .

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Bhanuprakash, K., Umesha (2015). Seed Biology and Technology. In: Bahadur, B., Venkat Rajam, M., Sahijram, L., Krishnamurthy, K. (eds) Plant Biology and Biotechnology. Springer, New Delhi. https://doi.org/10.1007/978-81-322-2286-6_19

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