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A new method for early prediction of Turkish red pine (Pinus brutia Ten.) germination percentage Cover

A new method for early prediction of Turkish red pine (Pinus brutia Ten.) germination percentage

Open Access
|Mar 2023

References

  1. Alvarado, V., Bradford, K. J., 2002: A hydrothermal time model explains the cardinal temperatures for seed germination. Plant, Cell and Environment, 25:1061– 1069.
  2. Andersen, G. L., Krzywinski, K., Gjessing, H. K., Pierce, R. H., 2016: Seed viability and germination success of Acacia tortilis along land-use and aridity gradients in the Eastern Sahara. Ecology and Evolution, 6:256–266.
  3. Aydin, A. C., 2016: Biomass Studies on Taurus Cedar (Cedrus libani A. Rich.). (Doctoral dissertation, Süleyman Demirel University, Isparta, Turkey).Beal, S. L., 2005: Conditioning on certain random events associated with statistical variability in PK/PD. Journal of Pharmacokinetics and Pharmacodynamics, 32:213–243.
  4. Bewley, J. D., Black, M., 1994: Seeds; physiology of development and germination. New York, Plenum, 367 p.
  5. Bonner, F. T., 1991: Leachate conductivity: a rapid nondestructive test for pine seed quality. Tree Planter’s Notes, 42:41–44.
  6. Brown, R. F., Mayer, D. G., 1988: Representing cumulative germination. 2. The use of the Weibull function and other empirically derived curves. Annals of Botany, 61:127–138.
  7. Çalikoğlu, M., 2013: Kizilçam (Pinus brutia Ten.)’da tohum sizintisinin iletkenliğini ölçerek çimlenme yüzdesinin tahmini. Project report, General Directorate of Forestry, Antalya, Turkey.
  8. Çalişkan, S., Makineci, E., 2015: Effects of carbon and nitrogen content on seed germination of calabrian pine (Pinus brutia) populations. Bosque, 36:435– 443.
  9. Czabator, F. J., 1962: Germination value: an index combining speed and completeness of pine seed germination. Forest Science, 8:386–396.
  10. Dahal, P., Bradford, K. J., 1994: Hydrothermal time analysis of tomato seed germination at suboptimal temperature and reduced water potential. Seed Science Research, 4:71–80.
  11. Diavanshir, K., Pourbeik, H., 1976: Germination value a new formula. Silvae Genetica, 25:79–83.
  12. Ercanli, Ì., Güvendi, E., Güney, D., Günlü, A., Altun, L., 2008: Sinop Yöresi Sahilçami (Pinus pinaster Ait.) ağaçlandirmalarina ilişkin tek ve çift girişli ağaç hacim tablolarinin düzenlenmesi. Kastamonu Üniversitesi Orman Fakültesi Dergisi, 8:14–25.
  13. Ercanli, Ì., 2010: Trabzon ve giresun orman bölge müdürlükleri sinirlari içerisinde yer alan doğu ladini (Picea orientalis [L.] Link)-sariçam (Pinus sylvestris L.) karişik meşcerelerine ilişkin büyüme modelleri. (Doctoral dissertation, Karadeniz Technical University, Trabzon, Turkey).
  14. Ercanli, Ì ., Kahriman, A. 2015: The evaluation of different forest structural indices to predict the stand aboveground biomass of even-aged scotch pine (Pinus sylvestris L.) forests in kunduz, Northern Turkey. Environmental Monitoring and Assessment, 187:90.
  15. Galan, J. M .G., Prada, C., Martínez-Calvo, C., Lahoz- Beltrá, R., 2015: A Gompertz regression model for fern spores germination. In Anales del Jardín Botánico de Madrid, 72:e15.
  16. Hann, D. W., 1995: A key to the literature presenting site-index and dominant-height-growth curves and equations for species in the Pacific Northwest and California. Research Contribution No. 7, Forest Research Laboratory, Oregon State University, Corvallis, USA, 26 p.
  17. Hussain, S., Zheng, M., Khan, F., Khaliq, A., Fahad, S., Peng, S. et al., 2015: Benefits of rice seed priming are offset permanently by prolonged storage and the storage conditions. Sci Rep 5:8101.
  18. Joosen, R. V., Kodde, J., Willems, L. A., Ligterink, W., van der Plas, L. H., Hilhorst, H. W., 2010: Germina- tor: a software package for high-throughput scoring and curve fitting of Arabidopsis seed germination. The Plant Journal, 62:148–159.
  19. Kalipsiz, A., 1999: Dendrometri. Istanbul Üniversitesi Orman Fakültesi Yayinlari, 354 p.
  20. Lehle, F. R., Putnam, A. R., 1982: Quantification of Allelopathic Potential of Sorghum Residues by Novel Indexing of Richards Function Fitted to Cumulative Cress Seed Germination Curves. Plant Physiology, 69:1212–1216.
  21. Meyer, S. E., Debaene-Gill, S. B., Allen, P. S., 2000: Using hydrothermal time concepts to model seed germination response to temperature, dormancy loss, and priming effects in Elymus elymoides. Seed Science Research, 10:213–223.
  22. Ochuodho, J. O., Modi, A. T., 2006: Statistical evaluation of the germination of Cleome gynandra L. seeds. South African Journal of Plant and Soil, 23:310–315.
  23. Özçelik, R., Karaer, K., 2016: Eğirdir Yöresi doğal kizilçam ve karaçam meşcereleri için ticari hacim denklemlerinin geliştirilmesi. Journal of the Faculty of Forestry Istanbul University, 66:59–74.
  24. Pretzsch, H., 2009: Forest dynamics, growth, and yield. In: Forest Dynamics, Growth and Yield. Berlin, Heidelberg, 664 p.
  25. Ranal, M. A., Santana, D. G. D., 2006: How and why to measure the germination process? Brazilian Journal of Botany, 29:1–11.
  26. Ranal, M. A., Santana, D. G. D., Ferreira, W. R., Mendes- Rodrigues, C., 2009: Calculating germination measurements and organizing spreadsheets. Brazilian Journal of Botany, 328:49–855.
  27. Reed, D. D., Green, E. J ., 1984: Compatible stem taper and volume ratio equations. Forest Science, 30:977– 990.
  28. Shafii, B., Price, W. J., Swensen, J. B., Murray, G. A., 1991: Nonlinear estimation of growth curve models for germination data analysis. Proceedings of 1991 Kansas State University Conference on Applied Statistics in Agriculture. Manhattan, KS: Kansas State University.
  29. Shah Newaz, M., Millat-e-Mustafa, M., 2004: Growth and yield prediction models for Acacia mangium grown in the plantations of the central region of Bangladesh. New Forests, 27:81–88.
  30. Sorensen, A., Lauridsen, E. B., Thomsen, K., 1996: Electrical conductivity test. Technical Note, 45:1–19. Danida Forest Seed Centre, Denmark.
  31. Stoeckeler, J. H., Slabaugh, P. E. 1965: Conifer nursery practice in the prairie-plains. US Department of Agriculture Handbook 279, Washington, D.C.
  32. Thomson, A. J., El-Kassaby, Y. A., 1993: Interpretation of seed-germination parameters. New Forests, 7:123– 132.
  33. Tilki, F., Çalikoğlu, M., 1998: Tohum gücü ve orman ağaci türlerinde test edilmesi. Istanbul Üniversitesi Orman Fakültesi Dergisi, 48:67–80.
  34. Torres, M., Frutos, G., 1989: Analysis of germination curves of aged fennel seeds by mathematical models. Environmental and Experimental Botany, 29:409–415.
  35. Torres, M., Frutos, G., 1990: Logistic function analysis of germination behaviour of aged fennel seeds. Environmental and Experimental Botany, 30:383–390.
  36. Weisberg, S., 2005: Applied linear regression. 528). John Wiley & Sons.
  37. Yavuz, H., 1999: Taşköprü yöresinde karaçam için hacim fonksiyonlari ve hacim tablolari. Turkish Journal of Agriculture and Forestry, 23:1181–1188.
  38. ISTA, 1996: International Rules For Seed Testing. Seed Science and Technology (Supplement). 24:241–335.
  39. SigmaPlot, 2006: SigmaPlot version 10. Scientific Software Solutions Internationals, San Jose, CA.
DOI: https://doi.org/10.2478/forj-2022-0017 | Journal eISSN: 2454-0358 | Journal ISSN: 2454-034X
Language: English
Page range: 38 - 48
Published on: Mar 10, 2023
Published by: National Forest Centre and Czech University of Life Sciences in Prague, Faculty of Forestry and Wood Sciences
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2023 Ali Cem Aydin, Alper Ahmet Özbey, Mehmet Çalikoğlu, published by National Forest Centre and Czech University of Life Sciences in Prague, Faculty of Forestry and Wood Sciences
This work is licensed under the Creative Commons Attribution 4.0 License.