Conjugate Variability of Signs of the Female Generative System of Scots Pine (Pinus sylvestris L.) in the Conditions of Magnesite Pollution

Authors

DOI:

https://doi.org/10.61326/silvaworld.v2i2.3

Keywords:

Conjugate variability, Generative system, Seed quality, Scots pine, Aerotechnogenic pollution

Abstract

In the conditions of environmental pollution by emissions of magnesite production (Combined Magnesite, Satka, Chelyabinsk region), a study of the conjugate variability of signs of the female generative system of the Scots pine (Pinus sylvestris L.) was carried out. Signs with a stable connection have been identified, as well as signs whose direction of interconnection changes under the influence of aerotechnogenic pollution. Thus, the relationship of the signs characterizing the size and mass of cones is rigidly genetically determined and is not violated in conditions of a strong level of pollution. The seed productivity of the pine stands, regardless of the growing conditions, is more closely related to the survival rates of ovules in the gametophytic period than in the period of embryonic development. However, in conditions of heavy pollution, the relationship between the survival of ovules in the 1st vegetative and embryonic periods is negative, which may indicate the effective elimination of abnormal gametophytes and the release of the stand from them in conditions of pollution. The strong weakening of trees and the low availability of mineral resources in conditions of high pH of the growing medium in the zone of heavy pollution cause an increase in the negative relationship between seed productivity and seed weight to a significant level. Also, the conditions of heavy pollution “contributed” to the development of a strategy of trees for the formation of small seeds with high quality and quality indicators, seedlings developed. Only in these growing conditions, with a decrease in seed weight, the indicators of germination energy, germination percentage, and morphometric indicators of seedlings significantly increased.

References

Abaturova, M. P., Duharev, V. A., & Ryabokon, S. M. (1997). Znachenie sostoyaniya semyapochki dlya opyleniya sosny obyknovennoj. Lesovedenie, 1, 64-69. (In Russian)

Anikeev, D. R., Babushkina, L. G., & Zueva, G. V. (2000). Sostoyanie reproduktivnoj sistemy sosny obyknovennoj pri aerotekhnogennom zagryaznenii. Ural. Gos. Lesotekhn. Akad. (In Russian)

Batygin, N. F. (1986). Ontogenez vysshih rastenij. Agropromizdat. (In Russian)

Berg, R. L. (1959). Ekologicheskaya interpretaciya korrelyacionnyh. Vestnik Leningr. Un-ta, Ser. Biol., 2(9), 142-152. (In Russian)

Bezel, V. S., Pozolotina, V. N., Belskij, E. A., & Zhujkova, T. V. (2001). Izmenchivost' populyacionnyh parametrov: Adaptaciya k toksicheskim faktoram sredy. Ekologiya, 6, 447-453. (In Russian)

Chetverikov, S. S. (1926). O nekotoryh momentah evolyucionnogo processa s tochki zreniya sovremennoj genetiki. Zhurnal eksperimental'noj biologii, Ser. A. T., 2(4), 3-54. (In Russian)

Chropenova, M., Greguskova, E. K., Karaskovaa, P., Pribylova, P., Kukucka, P., Barakovaa, D., & Cupr, P. (2016). Pine needles and pollen grains of Pinus mugo (Turra.) - A biomonitoring tool in high mountain habitats identifying environmental contamination. Ecological Indicators, 66, 132-142. https://doi.org/10.1016/j.ecolind.2016.01.004

Fedorkov, A. L. (2007). Adaptation of coniferous species to the boreal climate of northern Europe. Lesovedenie, 3, 46-51.

GOST. (1998). Semena derev'ev i kustarnikov. Metody opredeleniya vskhozhesti (13056.6-97). Mezhgosudarstvennyj Sovet po Standartizacii, Metrologii i Sertifikacii. (In Russian)

Halafyan, A. A. (2007). Statistica 6. Statisticheskij Analiz Dannyh. (In Russian)

Hisamoto, Y., & Goto, S. (2017). Genetic control of altitudinal variation on female reproduction in Abies sachalinensis revealed by a crossing experiment. Journal of Forest Research, 22(3), 195-198. https://doi.org/10.1080/13416979.2017.1304863

Kalashnik, N. A., Yasovieva, S. М., & Presnukhina, L. P. (2008). Pine trees pollen abnormalities under the conditions of industrial pollution in the South Ural. Forest Science, 2, 33-40.

Korshikov, I. I., Lapteva, H. V., & Belonozhko, Y. A. (2015). Quality of pollen and cytogenetic changes of Scotch pine as indicators of the impact of the technogenically polluted environment of Krivoy Rog. Contemporary Problems of Ecology, 8(2), 250-255. https://doi.org/10.1134/S1995425515020109

Kuzmina, N. A., & Menshchikov, S. L. (2015). Vliyanie aerotekhnogennyh vybrosov magnezitovogo proizvodstva na himicheskij sostav snegovoj vody i pochvy v dinamike. Izvestiya Orenburgskogo Gosudarstvennogo Agrarnogo Universiteta, 6(56), 192-196. (In Russian)

Kuzmina, N. A., Menshchikov, S. L., Mahneva, S. G., Zavyalov, K. E., & Mohnachev, P. E. (2016). Uroven' zagryazneniya snega i pochvy v zonah porazheniya lesnoj rastitel'nosti pod vozdejstviem vybrosov magnezitovogo proizvodstva. Lesa Rossii i Hozyajstvo v Nih, 4(59), 49-55. (In Russian)

Lyanguzova, I. V. (2011). Effect of industrial air pollution on wild plant seed germination and seedling growth. Russian Journal of Plant Physiology, 58(6), 991-998. https://doi.org/10.1134/S1021443711060136

Mahneva S. G., Babushkina L. G., & Zueva G. V. (2003). Sostoyanie muzhskoj generativnoj sfery sosny obyknovennoj pri tekhnogennom zagryaznenii sredy. UGLTA, Izd-vo Ural. Un-ta. (In Russian)

Makhniova, S. G. (2016). Quality pollen of scotch pine under the conditions of technogenic pollution Reft power plant. The Forests of Russia and the Economy in Them, 4(59), 55-62.

Makhniova, S. G., Kuzmina, N. A., & Menshikov, S. L. (2017). Quality of Scotch pine pollen depending on the aerotechnogenic pollution level with emissions from Reftinskiy GRES power plant. Journal of Geoscience and Environment Protection, 5, 99-117. https://doi.org/10.4236/gep.2017.54009

Makhniova, S., Mohnachev, P., & Ayan, S. (2019). Seed germination and seedling growth of Scots pine in technogenically polluted soils as container media. Environmental Monitoring and Assessment, 191(2), 113. https://doi.org/10.1007/s10661-019-7249-y

Mamaev, S. A. (1973). Formy vnutrividovoj izmenchivosti drevesnyh rastenij. Nauka. (In Russian)

Menshchikov, S. L. (1985). Issledovanie ekologicheskih osobennostej rosta i obos-novanie agrotekhniki sozdaniya kultur hvojnyh porod v usloviyah magnezitovyh zapylenij. Dissertaciya Kand. S.-h. Nauk. (In Russian)

Menshchikov, S. L., Kuzmina, N. A., & Mohnachev, P. E. (2012). Vozdejstvie atmosfernyh vybrosov magnezitovogo proizvodstva na pochvy i snegovoj pokrov. Izvestiya Orenburgskogo Gosudarstvennogo Agrarnogo Universiteta, 5(37), 221-223. (In Russian)

Menshikov, S., Kuzmina, N., Ayan, S., & Özel, H. B. (2019). Effects of mining, thermal, industrial plants on forests land and rehabilitation practices in Ural Region in Russia. Fresenius Environmental Bulletin, 28(2A), 1511-1521.

Menshchikov, S. L., Kuzmina, N. A., & Mohnachev, P. E. (2020). Akkumulyaciya metallov v hvoe sosny obyknovennoj (Pinus sylvéstris L.), v pochve i snegovoj vode v usloviyah tekhnogennogo zagryazneniya. Lesnoj vestnik. Forestry Bulletin, 24(3), 94-102. (In Russian)

Mohnachev, P. E., Makhniova, S. G., Menschikov, S. L., Zavyalov, K. E., Kuzmina, N. A., & Potapenko, A. M. (2016). Sowing qualities of seeds Scotch pine in the emissions anthropogenic magnesite production. The Forests of Russia and the Economy in Them, 4(59), 42-48.

Pukkala, T., Hakkanen, T., & Nikkanen, T. (2010). Prediction model for the annual seed crop of Norway spruce and Scotch pine in Finland. Silva Fennica, 44(4), 629-642.

Reshetova, S. A., Solodukhina, M. A., & Yurgenson, G. A. (2015). The interrelation between pollen abnormalities and polymorphism and the increased contents of toxic elements in flowers and flower buds in Aconogonon angustifolium (Pall.) Hara. and Papaver nudicaule L. Russian Journal of Ecology, 46, 36-42. https://doi.org/10.1134/s1067413615010142

Romanovskij, M. G., & Hromova, L. V. (1992). Obrazovanie semyan pri samoopylenii sosny obyknovennoj. Lesovedenie, 5, 3-9. (In Russian)

Romanovskij, M. G. (1997). Formirovanie urozhaya semyan sosny v norme i pri mutagennom zagryaznenii. Nauka. (In Russian)

Srodnyh, T. B. (1986). Obosnovanie agrotekhniki sozdaniya kul'tur berezy borodavchatoj v usloviyah magnezitovyh zapylenij na Yuzhnom Urale. Avtoref. Dis. Kand. Biol. Nauk. (In Russian)

Tihonova, I. V. (2005). Morfologicheskie priznaki pyl'cy v svyazi s sostoyaniem derev'ev sosny v suhoj stepi. Lesovedenie, 1, 63-69. (In Russian)

Tretyakova, I. N., & Noskova, N. E. (2004). Scotch pine pollen under the conditions of ecological stress. Ecology, 1, 26-34. https://doi.org/10.1023/B:RUSE.0000011105.90297.07

Udval, B., Gerelbaatar, S., Dashzeveg, T., & Lobanov, A. I. (2020). Seed quality of Larix sibirica Ledeb. depending on the distance between forest areas and pollution sources around Ulaanbaatar City of Mongolia. Lesnoy Zhurnal (Russian Forestry Journal), 4, 23-35. https://doi.org/10.37482/0536-1036-2021-4-23-35

Vasilevskaya, N. V., & Petrova, N. V. (2014). Pollen morphological variability Pinus sylvestris L. under the conditions of city (case study Monchegorsk City). Bulletin of Petrazavodsk State University, 4, 7-12.

Velisevich, S. N. (2017). Pollen quality of Pinus sibirica Du Tour (Pinaceae) mountain populations in arid and humid regions of Altai. Journal of Siberian Federal University Biology, 10(3), 301-311.

Yablokov, A. V. (1978). Populyacionnaya biologiya. Uchebn. posobie dlya biol. spec. vuzov. Vyssh. Shk. (In Russian)

Zavyalov, K. E., Menshchikov, S. L., Mohnachev, P. E., & Kuzmina, N. A. (2016). Ocenka povrezhdeniya opytnyh kul'tur (Pinus sylvestris L., Betula pendula Roth, Larix sukaczewii D.) v usloviyah zagryazneniya kombinatom “Magnezit” na yuzhnom Urale. Lesa Rossii i Hozyajstvo v Nih, 4(59), 35-41. (In Russian)

Zavyalov, K., Menshikov, S., Mohnachev, P., Kuzmina, N., Potapenko, A., & Ayan, S. (2018). Response of Scots pine (Pinus sylvestris L.), Sukachyov's larch (Larix sukaczewii Dylis), and silver birch (Betula pendula Roth) to magnesite dust in Satkinsky industrial hub. Forestry Ideas, 24(1), 23-36.

Zhivotovskij, L. A. (1984). Integraciya poligennyh sistem v populyaciyah. Problemy analiza kompleksa priznakov. Nauka. (In Russian)

Zhujkova, T. V., & Bezel, V. S. (2009). Adaptaciya rastitel'nyh sistem k himicheskomu stressu: Populyacionnyj aspect. Vestnik Udmurtskogo Universiteta, 1, 31-41. (In Russian)

Downloads

Published

30-09-2023

Issue

Section

Research Articles