Some features of the growth of English oak in experimental plantations planted in different dates in Kharkiv Forest Research Station with the containerized seedlings fertilized with different types of fertilizers
ARTICLE PDF (Українська)

Keywords

Quercus robur L.
mensuration characteristics
fertilizers
soil cultivation
reforestation Quercus robur L.
таксаційні показники
добрива
обробіток ґрунту
лісовідновлення

How to Cite

Румянцев, М. Г., Даниленко, О. М., Тарнопільський , П. Б., Ющик , В. С., & Мостепанюк , А. А. (2023). Some features of the growth of English oak in experimental plantations planted in different dates in Kharkiv Forest Research Station with the containerized seedlings fertilized with different types of fertilizers. Forestry and Forest Melioration, (143), 85–93. https://doi.org/10.33220/1026-3365.143.2023.85

Abstract

Introduction

Recently, various types of fertilizers and microbial preparations have been used as growth intensifiers for the planting stock of the main forest-forming species, including English oak (Quercus robur L.). However, there is almost no data on the growth characteristics of forest plantations established with containerized seedlings that have been fertilized with various fertilizers during cultivation and microbial preparations.

The study aimed to compare mensuration characteristics of English oak in experimental plantations established with containerized seedlings, grown with the use of different types of fertilizers and microbial preparations, as well as to confirm the possibility of establishing oak forest plantations in the summer using container seedlings.

Materials and Methods

To confirm the possibility of significantly extending the spring planting period for containerized oak seedlings, including the summer period, experimental plantations were established in 2014. The study site is situated in the Derhachy Forestry in Kharkiv Forest Research Station, Kharkiv region. The oak plantations were established on an area of 3.0 hectares in spring (March 25), summer (July 10 and August 19), and autumn (October 30). To lay out the plantations, the containerized seedlings that have been fertilized with various fertilizers and biological products during cultivation were used.

Mensuration characteristics of oak seedlings in the experimental plantations have been estimated and analyzed according to the generally accepted forestry and forest mensuration methods following some regulatory materials.

Results

The oak plants had a higher survival rate in all experimental treatments compared to the control. For example, the oak survival rate was from 87% to 93% in the experimental treatments and 78% in the control. English oak trees in the 5-year-old plantations established with containerized seedlings in summer (July 10 and August 19) and autumn (October 30) were significantly inferior to the plantations created in spring (March 25) in terms of growth characteristics.

The plantations created in autumn (October 30) and fertilized with different types of fertilizers were superior to the plantations established with containerized seedlings without fertilization in all characteristics. The difference was 1–16% in diameter, 0–22% in height, and 1–48% in height increment.

The coefficients of variation in diameter and height ranged from 17% to 24%, indicating an average and increased variability of the studied variables. The coefficients of variation in height increment ranged from 26% to 38%, demonstrating increased and high variability. In general, significant variability in growth is characteristic of young stands.

Conclusions

English oak trees in most treatments of 5-year-old experimental plantations created in summer were inferior in growth to the treatments established in spring with seedlings grown in the previous year. However, oak trees in the plantations established in the summer exceeded in growth almost all plantation treatments established in the autumn by seedlings grown in the planting year.

Our results indicate the possibility of significantly extending the terms of spring planting of oak plantations with containerized planting stock and even creating plantations in the summer, provided it is treated with antitranspirants.

1 Fig., 2 Tables, 19 Refs.

https://doi.org/10.33220/1026-3365.143.2023.85
ARTICLE PDF (Українська)

References

About approval of the Instruction on design, technical acceptance, accounting and quality assessment of forestry objects. 2010. Order of the State Forestry Committee of Ukraine No 1046/18341 dated November 5, 2010. 90 p. (in Ukrainian).

Danylenko, O. M., Tarnopilskyi, P. B., Hladun, H. B. 2015. Improvement of containerized oak seedlings cultivation technology. Forestry and Forest Melioration, 126: 158–164. (in Ukrainian).

Danylenko, O. M., Tarnopilskyi, P. B., Gladun, H. B., Gupal, V. V., Volkov, P. O., Kosatyi, D. M., Samoіlov, P. V. 2016. The use of “Rokohumin” for Quercus robur L. planting material growing. Forestry and Forest Melioration, 129: 93–99. (in Ukrainian).

Dey, D. C., Kabrick, J. M., Gold, M. 2006. The role of large container seedlings in afforesting oaks in bottomlands. Gen. Tech. Rep. SRS-92. Asheville, NC: U.S. Department of Agriculture, Forest Service, Southern Research Station, p. 218–223.

Forest inventory sample plots. Establishing method. Corporate standard 02.02-37-476:2006. 2007. Valid from May 1, 2007. Kyiv, Ministry of Agrarian Policy of Ukraine, 32 p. (in Ukrainian).

Hrom, M. M. 2010. Forest mensuration. Lviv, RVV NLTU, 416 p. (in Ukrainian).

Lapach, S. N., Chubenco, A. V., Babych, P. N. 2001. Statistical methods in biomedical research using Excel. Kyiv, Morion, 408 p. (in Russian).

Mamaev, S. A. 1972. Forms of intraspecific variability of tree species. Moscow, Nauka, 283 р. (in Russian).

Rumiantsev, M. Н., Danylenko, O. M., Tarnopilskyi, P. B., Yushchyk, V. S., Mostepaniuk, A. A. 2022. Influence of plant growth stimulants on biometric indicators and weight of one-year-old seedlings of english oak with a closed root system in the South-Eastern Forest-Steppe of Ukraine. Scientific Bulletin of UNFU, 32(1): 13–19. https://doi.org/10.36930/40320102

Schweitzer, C. J. and Stanturf, J. A. 1997. From okra to oak: reforestation of abandoned agricultural fields in the Lower Mississippi Alluvial Valley. In: Meyer, D.A. (Ed.). Proceedings of the 25th annual hardwood symposium. Memphis, TN, National Hardwood Lumber Association, p. 131–138.

Stanturf, J. A., Schweitzer, C. ., Gardiner, E. S. 1998. Afforestation of marginal agricultural land in the Lower Mississippi River Alluvial Valley, U.S.A. Silva Fennica, 32(3): 281–287.

Tarnopilskyi, P. B., Danylenko, O. M., Gupal, V. V., Mostepanuk, A. A., Gladun, G. B. 2016. English oak forest plantations creationg experience with the use of containerized seedlings in forest enterprise “Kharkivska forest research station”. Forestry and Forest Melioration, 128: 89–99 (in Ukrainian).

To improve technologies for creating forest plantations in large fires and growing planting material of major forest species. 2014. Report on research work on the topic № 16 (final). [Ugarov, V. M., Ed.]. Kharkiv, URIFFM, 416 p. (in Ukrainian).

Tovstukha, А. V., Ignatenko, V. A., Tarnopilskyі, P. B., Sotnikova, A. V. 2017. Experience of renewal of oak forests of Sumy region using various plating material of English oak (Quercus robur L.). Bulletin of Sumy NAU, 9: 92–101 (in Ukrainian).

Uharov, V. M. Manoilo, V. O., Fatieiev, V. V., Danylenko, O. M. 2012. Biometric parameters of Quercus robur L. seedlings with closed root system, depending on the mode of cultivation. Forestry and Forest Melioration, 121: 129–133 (in Ukrainian).

Vysotska, N. Yu., Danylenko, O. M., Rumiantsev, M. Н., Tarnopilskyi, P. B., Yushchyk, V. S., Mostepaniuk, A. A., Reho, M. Z. 2022. Influence of multi-nutrient fertilizers on the growth, state and weight of one-year-old English oak seedlings in Kharkiv Forest Research Station. Forestry and Forest Melioration, 141: 88–94. https://doi.org/10.33220/1026-3365.141.2022.88

Wilson, E. R., Vitols, K. C., Park, A. 2007. Root characteristics and growth potential of container and bare-root seedlings of red oak (Quercus rubra L.) in Ontario, Canada. New Forests, 34: 163–176. https://doi.org/10.1007/s11056-007-9046-7

Woolery, P. O. and Jacobs, D. F. 2014. Planting stock type and seasonality of simulated browsing affect regeneration establishment of Quercus rubra. Canadian Journal of Forest Research, 44: 732–739. https://doi.org/10.1139/cjfr-2013-049

Yavorovskyі, P. P. аnd Segeda, Yu. Yu. 2016. The future use of container planting stock of English oak (Quercus robur L.) for the creation of forest plantations. Scientific Bulletin of UNFU, 26(3): 222–226 (in Ukrainian).

Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.