Flotation techniques to improve viability of Juniperus polycarpos seed lots

Abolfazl Daneshvar , Mulualem Tigabu , Asaddollah Karimidoost , Per Christer Odén

Journal of Forestry Research ›› 2016, Vol. 28 ›› Issue (2) : 231 -239.

PDF
Journal of Forestry Research ›› 2016, Vol. 28 ›› Issue (2) : 231 -239. DOI: 10.1007/s11676-016-0306-2
Original Paper

Flotation techniques to improve viability of Juniperus polycarpos seed lots

Author information +
History +
PDF

Abstract

The germination of freshly collected Juniperus polycarpos (K. Koch) seeds is very low and attributed to the large proportion of nonviable seeds in the seed lots. Thus, the aim of this study was to improve seed lot quality by removing nonviable seeds using two flotation techniques: incubation-drying-separation (IDS) and modified specific gravity (MSG) separation. We examined different IDS conditions (the specific incubation time, subsequent drying time and sorting media) for effectively sorting out nonviable seeds; and tested the feasibility of modified SG separation, which involved soaking seeds in water for a certain period before sorting in different concentrations of sucrose solution. Viable seeds were expected to absorb and metabolically bind more water during soaking than dead seeds could, and hence be sorted effectively depending on the viscosity of the sucrose solution. The viability of the seeds that floated or sank was determined in a topographical tetrazolium chloride (TTC) test. For the IDS trial, 7 days incubation followed by 9 h of drying and sedimentation in pure water or 200 g·L−1 sucrose solution identified, respectively, 75 and 82 % of the seeds as viable (sunken) seeds. For the MSG trail, 77 % viable seeds were recovered in the sunken fraction when seeds were soaked for 48 h then immediately sorted in 600 g·L−1 sucrose solution. In both cases, the loss of viable seeds in the discarded floating fraction was only 4 %. The results demonstrate that both IDS and MSG separation techniques substantially improved seed lot viability, but MSG separation is simple and needs no modern seed handling facility, and its efficacy relies on seed mass (due to the initial soaking) and the specific density and viscosity of the flotation medium.

Keywords

Incubation-drying-separation (IDS) / Iran / Juniperus polycarpos / Specific gravity (SG) separation / Seed viability / Seed sorting system

Cite this article

Download citation ▾
Abolfazl Daneshvar, Mulualem Tigabu, Asaddollah Karimidoost, Per Christer Odén. Flotation techniques to improve viability of Juniperus polycarpos seed lots. Journal of Forestry Research, 2016, 28(2): 231-239 DOI:10.1007/s11676-016-0306-2

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Adams RH. Junipers of the World: the genus Juniperus, 2014 4 Bloomington: Trafford Publishing.

[2]

Ahani H, Jalilvand H, Hosseini-Nasr SM, Soltani KH, Ghazi MR, Mohammadzadeh H. Reproduction of Juniperus polycarpos in Khorasan Razavi, Iran. For Sci Pract, 2013, 15: 231-237.

[3]

Akkol EK, Guvenc A, Yesilada E. A comparative study on the antinociceptive and anti-inflammatory activities of five Juniperus taxa. J Ethnopharmacol, 2009, 125: 330-336.

[4]

Baskin CC, Baskin JM. Seeds: ecology, biogeography, and evolution of dormancy and germination, 1998, San Diego: Academic Press.

[5]

Daneshvar A, Tigabu M, Karimidoost A, Farhadi M, Oden PC. Growth characteristics and reproductive output of dwarf mistletoeinfected Juniperus polycarpos in Iran. J For Res, 2014, 25: 827-834.

[6]

Demelash L, Tigabu M, Oden PC. Separation of empty and dead-filled seeds from a seed lot of Pinus patula with IDS technique. Seed Sci Technol, 2002, 30: 677-681.

[7]

Demelash L, Tigabu M, Odén PC. Enhancing germinability of Schinus molle L. seed lot from Ethiopia with specific gravity and IDS techniques. New For, 2003, 26: 33-41.

[8]

Djavanshir K. Problem of regeneration of Juniperus polycarpos C. Koch in the forest of Iran. Silvae Genet, 1974, 23: 106-108.

[9]

Downie B, Wang BSP. Upgrading germinability and vigour of jack pine, lodgepole pine, and white spruce by the IDS technique. Can J For Res, 1992, 22: 1124-1131.

[10]

Falleri E, Pacella R. Applying the IDS method to remove empty seeds in Platanus × acerifolia. Can J For Res, 1997, 27: 1311-1315.

[11]

Farjon A. A monograph of Cupressaceae and Sciadopitys, 2005, Kew: Royal Botanic Gardens Press.

[12]

Gutterman Y. Fenner M. Maternal effects on seeds during development. Seeds: the ecology of regeneration in plant communities, 2000 2 Wallingford: CABI Publishing 59 84

[13]

Himanen K, Nygren M. Seed soak-sorting prior to sowing affects the size and quality of 1.5-year-old containerized Picea abies seedlings. Silva Fennica, 2015 49 3 14

[14]

International Seed Testing Association. International Rules for Seed Testing, 2010, Bassersdorf: International Seed Testing Association.

[15]

Kharazipour AR, Schöpper C, Muller C. Review of forests, wood products and wood biotechnology of Iran and Germany—Part II, 2008, Göttingen: Universitätsverlag Göttingen.

[16]

Khoushnevis M, Korouri SAA, Teimouri M, Matinizadeh M, Rahmani A, Shirvany A. The effect of different treatments on rooting of Juniperus excelsa cutting. Iran J For Poplar Res, 2008, 16: 158-167.

[17]

Korouri SAA, Khoushnevis M, Matinizadeh M. Comprehensive studies of Juniperus species in Iran, 2012, Tehran: Forest Range and Watershed Management Organization (In Persian with English Abstract)

[18]

Mamo N, Mihretu M, Fekadu M, Tigabu M, Teketay D. Variation in seed and germination characteristics among Juniperus procera populations in Ethiopia. For Ecol Manag, 2006, 225: 320-327.

[19]

Okasaka M, Takaishi Y, Kashiwada Y, Kodzhimatov OK, Ashurmetov O, Lin AJ, Consentino LM, Lee K-H. Terpenoids from Juniperus polycarpos var. seravschanica. Phytochemistry, 2006, 67: 2635-2640.

[20]

Pasquini NM, Defosse GE, Del Long O. Upgrading germinability of Ponderosa pine seeds from Patagonia, Argentina by adjusting pre-chilling periods and applying the IDS technique. New For, 2008, 36: 93-102.

[21]

Poulsen KM. Application of the IDS-method to Pinus caribaea seed. Seed Sci Technol, 1995, 23: 269-275.

[22]

Simak M. Bortsortering av matat-do¨tt fro¨ ur ett fro¨parti (Removal of filled-dead seeds from a seed bulk). Sver Skogsvårdsförb Tidskr, 1981, 5: 31-36.

[23]

Simak M. A method for the removal of filled-dead seeds from a sample of Pinus contorta. Seed Sci Technol, 1984, 12: 767-775.

[24]

Sivakumar V, Anandalakshmi R, Warrier RR, Singh BG, Tigabu M, Odén PC. Petroleum flotation technique upgrades the germinability of Casuarina equisetifolia seed lots. New For, 2007, 34: 281-291.

[25]

Slobodník B, Gutternberger H. Ovule, megaspores and female gametophyte formation in Larix decidua Mill. (Pinaceae). Acta Biol Cracoviens Ser Bot, 2000, 42: 93-100.

[26]

Sweeney JD, El-Kassaby A, Taylor DW, Edwards DGW, Miller GE. Applying the IDS method to remove seeds infested with the seed chalcid, Megastigmus spermotrophus Wachtl, in Douglas-fir, Pseudotsuga menziesii (Mirb.) Franco. New For, 1991, 5: 327-334.

[27]

Wulff RD. Kigel J, Galili G. Environmental maternal effects on seed quality and germination. Seed development and germination, 1995, New York/Basel/Hong Kong: Marcel Dekker Inc. 491 505

[28]

Zar J. Biostatistical analysis, 1996 3 Upper Saddle River: Prentice-Hall Inc..

AI Summary AI Mindmap
PDF

150

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/