Skip to main content
Log in

Effects of environmental factors on wood formation in Scots pine stems

  • Published:
Trees Aims and scope Submit manuscript

Summary

To find the optimal conditions for growth and development of tracheid walls in Scots pine stems the effects of temperature and precipitation on xylem cell production by the cambium, radial cell expansion and secondary wall thickening have been studied. The observations were carried out on 10 specially chosen 50 to 60-year-old trees, growing in central Siberia, over 2 seasons. The data on the number of cells in differentiation zones and mature xylem along radial rows of tracheids, radial and tangential sizes of tracheids and their lumens were used for calculating cambial activity, the rates and durations of cell development in the zones, and both the thickness and cross sectional areas of tracheid walls. The mean day, mean maximal diurnal and mean minimal nocturnal temperatures have been shown by correlation and regression analyses to affect differentially separate stages of cytogenesis. The temperature influenced the initial division the side of xylem and radial cell expansion mainly in May–June, while the influence of precipitation increased in July–August. Throughout all seasons it was the temperature that had the main influence on the biomass accumulation in cell walls. Optimal values of temperature and precipitation for cell production by cambium, radial cell expansion and secondary wall thickening have been calculated. The data are discussed in connection with productivity and quality of wood.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  • Antonova GF, Shebeko VV (1981 a) Formation of xylem in conifers. 1. Formation of annual wood increment in Larix sibirica shoots. Lesovedenie 4: 36–43

    Google Scholar 

  • Antonova GF, Shebeko VV (1981 b) Applying cresyl violet in studying wood formation. Chem Wood 4: 102–105

    Google Scholar 

  • Antonova GF, Shebeko VV (1986) Influence of environment on the secondary wall development of Scots pine tracheids. Lesovedenie 2: 72–76

    Google Scholar 

  • Antonova GF, Stasova VV (1990) Biomass accumulation in the tracheid walls of the wood annual rings. Lesovedenie 3: 49–57

    Google Scholar 

  • Antonova GF, Maljutina ES, Shebeko VV (1981) Formation of xylem in conifers. II. Seasonal dynamics of processes determining formation of annual wood rings. Lesovedenie 5: 10–17

    Google Scholar 

  • Antonova GF, Shebeko VV, Maljutina ES (1983) Seasonal dynamics of cambial activity and tracheid differentiation in Scots pine stem. Chem Wood (USSR) 1: 16–22

    Google Scholar 

  • Cirule DE, Chrol JS, Cinite AA, Vitols OJ (1987) Influence of Scots pine wood age on structure of cellulose. In: Chudinov BS et al (eds) Modern problems of wood science. All-Union Conference. Institute of Forest and Wood SB AS USSR, Krasnoyarsk, p 41

    Google Scholar 

  • Cregg BM, Dougherty PM, Hennessey TC (1988) Growth and wood quality of young loblolly pine trees in relation to stand density and climatic factors. Can J For Res 18: 851–858

    Google Scholar 

  • Denne MP (1971) Temperature and tracheid development in Pinus sylvestris seedlings. J Exp Bot 22: 362–370

    Google Scholar 

  • Denne MP (1974) Effect of light intensity on tracheid dimensions in Picea sitchensis. Ann Bot 38: 337–345

    Google Scholar 

  • Denne MP (1976) Effect of environmental change on wood production and wood structure in Picea sitchensis seedlings. Ann Bot 40: 1017–1028

    Google Scholar 

  • Denne MP, Smith CJ (1971) Daylength effects on growth, tracheid development and photosynthesis in seedlings of Picea sitchensis and Pinus sylvestris. J Exp Bot 22: 347–361

    Google Scholar 

  • Ford ED, Robard AW, Piney MD (1978) Influence of environmental factors on cell production and differentiation in the early wood of Picea sitchensis. Ann Bot 42: 683–692

    Google Scholar 

  • Grozdits GA, Ifju G (1984) Differentiation of tracheid in developing secondary xylem of Tsuga canadensis (L.) Carr. Changes in morphology and cell wall structure. Wood Fiber Sci 16: 20–36

    Google Scholar 

  • Kramer PJ (1964) The role of water in wood formation. In: Zimmermann MH (ed) The formation of wood in forest trees. Academic Press, New York, pp 519–532

    Google Scholar 

  • Kursanov AL (1976) Assimilate transport in plants. Nauka, Moskow

    Google Scholar 

  • Larson PR (1960) A physiological consideration of the springwood-summerwood transition in red pine. For Sci 6: 110–122

    Google Scholar 

  • Larson PR (1964) Some indirect effects of environment on wood formation. In: Zimmermann MH (ed) The formation of wood in forest trees. Academic Press, New York, pp 345–365

    Google Scholar 

  • Larson PR (1967) Effects of temperature on the growth and wood formation of ten Pinus resinosa sources. Silvae Genet 16: 58–65

    Google Scholar 

  • Mahmood A (1971) Numbers of initial cell division as a measure of activity in the early cambial growth pattern in Pinus. Pak J For 21: 27–42

    Google Scholar 

  • Murmanis L, Sachs JB (1969) Seasonal development of secondary xylem in Pinus strobus L. Wood Sci Technol 3: 177–193

    Google Scholar 

  • Nečesaný V (1971) Effect of some environmental factors on the cell wall structure. Holzforschung 25: 4–8

    Google Scholar 

  • Newman JC (1956) Pattern in meristems of vascular plants. I. Cell partition in living apices and in the cambial zone in relation to the concept of initial cells and apical cells. Phytomorphology 6: 1–19

    Google Scholar 

  • Richardson SD (1964) The external environment and tracheid size in conifers. In: Zimmermann MH (ed) The formation of wood in forest trees. Academic Press, New York, pp 367–388

    Google Scholar 

  • Shcherbatjuk AS, Yan'kova LS, Rusakova LV (1990) Ecologo-physiological characteristics of gas exchange in conifers. Lesovedenie 4: 3–10

    Google Scholar 

  • Whitmore FW, Zahner R (1966) Development of the xylem rings in stems of young red pine trees. For Sci 12: 198–210

    Google Scholar 

  • Wilson BF, Wodzicki TJ, Zahner R (1966) Differentiation of cambial derivatives. Proposed terminology. For Sci 22: 438–440

    Google Scholar 

  • Wodzicki TJ (1960) Investigation on the kind of Larix polonica Rac. wood formed under various photoperiodic condition. Acta Soc Bot Pol 29: 713–730

    Google Scholar 

  • Wodzicki TJ (1964) Photoperiodic control of natural growth substances and wood formation in larch (Larix decidua D.C.) J Exp Bot 15: 584–599

    Google Scholar 

  • Wodzicki TJ (1971) Mechanism of xylem differentiation in Pinus silvestris L. J Exp Bot 22: 671–687

    Google Scholar 

  • Zahner R (1963) Internal moisture stress and wood formation in conifers. For Prod J 13: 240–247

    Google Scholar 

  • Zahner R, Lotan JE, Baughman WD (1964) Earlywood-latewood features of red pine grown under simulated drought and irrigation. For Sci 10: 361–370

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Antonova, G.F., Stasova, V.V. Effects of environmental factors on wood formation in Scots pine stems. Trees 7, 214–219 (1993). https://doi.org/10.1007/BF00202076

Download citation

  • Received:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF00202076

Key words

Navigation