Effects of seed vigor on growth and grain yield of maize
Kazem Ghassemi-Golezani
golezani@gmail.comDepartment of Plant Eco-Physiology, Faculty of Agriculture, University of Tabriz, 5166614766, Tabriz, Iran (Iran, Islamic Republic of)
Bahareh Dalil
Department of Agriculture, Payame Noor University, 19395-3697, Tehran, Iran (Iran, Islamic Republic of)
Abstrakt
Reduction in seed vigor is a consequence of seed aging which may influence field performance of crops. Thus, a field study was conducted as RCB design with 6 replicates to evaluate the effects of seed vigor on maize (cv. Ksc 301) growth and yield. A sub-sample of maize seeds was kept as control and two other sub-samples were artificially aged for 9 and 12 days. So, three seed lots (V1, V2 and V3), with different vigor were provided and sown in the field. Mean emergence time significantly increased, but mean emergence percentage decreased as seed vigor increased. The lowest leaf area index (LAI), dry matter accumulation (DMA) and crop growth rate (CGR) were obtained for plants from the lowest vigor seed lot (V3). At the later stages of growth, the highest relative growth rate (RGR) was recorded for V1 plants, followed by V2 and V3 plants. Poor stand establishment and growth of plants from V2 and V3 seed lots led to yield loss by 23.7 % and 41.5 %, respectively. These results showed that production and cultivation of high vigor seeds are necessary to ensure satisfactory field performance of maize.
Instytucje finansujące
Bibliografia
Ahad MA. 1986. Growth analysis of rice bean (Vigna umbellata Thunb.) under different management prac-tices and their agronomic appraisal. PhD Diss in Agro.
Google Scholar
Atkin OK, Botman B, Lambers H. 1996. The causes of inherently slow growth in alpine plants: an analysis based on the underlying carbon economies of alpine and lowland poa species. Fun Ecol. 10: 698-707.
Google Scholar
Biabani A, Katozi M, Mollashahi M, Gharavi Bahlake A, Haji Gholi Khani, A. 2011. Correlation and rela-tionships between seed yield and other characteristics in chickpea (Cicer arietinum L.) cultivars under deterioration. African J Agri Res. 6: 1359-1362.
Google Scholar
Brand DG. 1991. The establishment of boreal and sub-boreal conifer plantations: an integrated analysis of environmental conditions and seedling growth. Forensic Sci Int. 37: 68-100.
Google Scholar
Ellis RH. 1992. Seed and seedling vigor in relation to crop growth and yield. Plant Growth Reg. 11: 249-255.
Google Scholar
Ellis RH, Roberts EH. 1980. Towards rational basis for testing seed quality. In: Seed production (Hebblethwaite PD. Ed.), Butterworths, London, p. 605-635.
Google Scholar
FAO. 2013. Food and agriculture organization of the United Nations. Rome, Italy.
Google Scholar
Ghassemi-Golezani K. 1992. Effects of seed quality on cereal yields. PhD Thesis, University of Reading (UK).
Google Scholar
Ghassemi-Golezani K, Dalil B, Moghaddam M, Raey Y. 2011. Field performance of differentially deterio-rated seed lots of maize (Zea mays) under different irrigation treatments. Not Bot Horti Agrobo. 39: 160-163.
Google Scholar
Ghassemi-Golezani K, Khomari S, Dalil B, Hosseinzadeh-Mahootchy A, Chadordooz Jeddi A. 2010. Effects of seed aging on field performance of winter oilseed rape. J Food Agric Environ. 8: 175-178.
Google Scholar
Ghassemi-Golezani K, Ghanehpoor S, Dabbagh Mohammadi-Nasab A. 2009. Effects of water limitation on growth and grain filling of faba bean cultivars. J Food Agric Environ. 7: 442-447.
Google Scholar
Ghosh PK, Majumder MK, Banerjee SP. 2013. Growth analysis studies and their possible use in selection work in safflower (Carthamus tinctorius L.). Int J Farming Allied Sci. 2: 38-41.
Google Scholar
Ghosh DC, Singh BP. 1998. Crop growth modeling for wetland rice management. Environ Ecol. 16: 446-449.
Google Scholar
Gupta NK, Gupta S. 2005. Plant Physiology. Oxford and IBH Publishing, Delhi, 580 p.
Google Scholar
Inge J, Fleck S, Nackaerts K, Muys B, Coppin P, Weiss M, Baret F. 2004. Review of methods for in situ leaf area index determination. Agric Forest Meteor. 121: 19-35.
Google Scholar
International Seed Testing Association. 2010. International rules for seed testing. Seed Vigour Testing. Chap-ter 15: 1-20.
Google Scholar
Kapoor N, Arya A, Siddiqui MA, Amir A, Kumar H. 2010. Seed deterioration in chickpea (Cicer arietinum L.) under accelerated aging. Asian J Plant Sci. 9: 158-162.
Google Scholar
Laurie CC, Chasalow SD, Ledeaux JR, Mc Carrolla R, Bush D, Hange B, Lai C, Clark D, Rocheford TR, Dudley JW. 2004. The genetic architecture of response to long-term artificial selection for oil concentra-tion in the maize kernel. Genetics 168: 2141–2155.
Google Scholar
Mc Donald MB. 1999. Seed deterioration: Physiology, repair and assessment. Seed Sci Technol. 27: 177-273.
Google Scholar
Mondal MMA, Fakir MSA, Nurul Islam M, Samad MA. 2011. Physiology of seed yield in mungbean: growth and dry matter production. Bangladesh J Bot. 40: 133-138.
Google Scholar
Mooney HA. 1972. Carbon balance of plants. Annual Rev Eco Syst. 3: 315-346.
Google Scholar
Pederson P, Lauer JG. 2004. Soybean growth and development in various management systems and planting dates. Crop Sci. 44: 508-515.
Google Scholar
Powell A. 2009. What is seed quality and how to measure it? In: Second World Seed Conference; 8-10 Sep-tember; Rome, Italy. Food and Agriculture Organization (FAO), pp. 142-149.
Google Scholar
Ramachandran Nair PK. 1993. General principles of plant productivity. In: An introduction to agroforestry (Ramachandran Nair PK. Ed.). Klgwer Academic Publishers, Florida, 499 p.
Google Scholar
Roberts EH, Osei-Bonsu K. 1988. Seed and seedling vigor. In: World crops: cool season food legumes (Summerfield RJ. Ed.). Kluwer Academic Publishers, London, pp. 897-910.
Google Scholar
Saha RR, Sultana W. 2008. Influence of seed ageing on growth and yield of soybean. Bangladesh J Bot. 37: 21-26.
Google Scholar
Shipley B. 2006. Net assimilation rate, specific leaf area and leaf mass ratio: which is most closely correlated with relative growth rate? A meta-analysis. Fun Ecol. 20: 565-574.
Google Scholar
Soltani E, Ghaleshi S, Kamkar B, Akramghaderi F. 2009. The effect of seed aging on seedling growth as affected by environmental factors in wheat. Res J Environ Sci. 3: 184-192.
Google Scholar
Steduto P, Hsiao TC, Fereres E, Raes D. 2012. Crop yield response to water. In: Herbaceous crops (Hsiao TC. Ed.). Food and Agriculture Organization of the United Nations, 500 p.
Google Scholar
Sun YF, Liang JM, Ye J, Zhu WY. 1999. Cultivation of super-high yielding rice plants. China Rice. 5: 38-39.
Google Scholar
Tesfaye K, Walkerb S, Tsubob M. 2006. Radiation interception and radiation use efficiency of three grain legumes under water deficit conditions in a semi-arid environment. Euro J Agro. 25: 60-70.
Google Scholar
Verma SS. Verma U, Tomer RPS. 2003. Studies on seed quality parameters in deteriorating seeds in Brassica (Brassica compestris) seeds. Seed Sci Technol. 31: 389-396.
Google Scholar
Wareing PF. 1966. The physiologist's approach to tree growth. In: Physiology in forestry (V. Palmer RW. Ed.). Oxford University press, London, pp. 7-18.
Google Scholar
Webster CC, Wilson PN. 1980. Agriculture in the Tropics. Longman, London, 640 p.
Google Scholar
Wilson WJ. 1981. Analysis of growth, photosynthesis and light interception for single plant stand. Ann Bot. 48: 507-512.
Google Scholar
Zajac T, Grzesiak S, Kulig B, Polacek M. 2005. The estimation of productivity and yield of linseed (Linum usitatissimum L.) using the growth analysis. Acta Physiol Plant. 27: 549-558.
Google Scholar
Autorzy
Kazem Ghassemi-Golezanigolezani@gmail.com
Department of Plant Eco-Physiology, Faculty of Agriculture, University of Tabriz, 5166614766, Tabriz, Iran Iran, Islamic Republic of
Autorzy
Bahareh DalilDepartment of Agriculture, Payame Noor University, 19395-3697, Tehran, Iran Iran, Islamic Republic of
Statystyki
Abstract views: 246PDF downloads: 112
Licencja
Wszystkie artykuły publikowane w formie elektronicznej na mocy licencji CC BY-SA 4.0, w otwartym dostępie (open access), pełna treść licencji jest dostępna pod adresem: https://creativecommons.org/licenses/by-sa/4.0/legalcode.pl .