In conditions of radioactive contamination, one of the criteria for the state of the female reproductive sphere of woody plants is their ability to form seeds, the biological qualities of which are assessed by germination and weight. The research was carried out on the territory of the Southern Non-Black Earth Region of Russia in the plantings of the Krasnogorsk district forestry of the Bryansk region and the Educational and Experimental Forestry Enterprise of the Federal State Budgetary Educational Institution of Higher Education "BGITU". The exposure dose rate was measured at a height of 1 m from the ground surface and on the soil with a DRG - 01T dose meter with an accuracy of 1.0 µR/ h, annually at constant reference points (at least 5 on each sample area) in a five-fold repeti-tion. Seed germination was carried out on a growing apparatus. When processing experimental data, the main statis-tical indicators for each variation series were calculated: the arithmetic mean with error, the mean square deviation, the coefficient of variation, and the accuracy of the experiment. Chronic ionizing radiation causes an increase in the length, width, and weight of Scots pine (Pinus sylvestris L.) cones. As the level of ionizing radiation increases, the seed weight of Scots pine (P. sylvestris L.) decreases. The germination rate of Scots pine (P. sylvestris L.) seeds from plantations with chronic ionizing radiation is quite high (more than 65%). Among ungerminated seeds, nonvi-able seeds with endosperm and embryo predominate. With an increase in the level of ionizing radiation, the total number of empty and embryoless seeds naturally increases.
Pinus sylvestris L., ionizing radiation, seeds, cones
1. Bitarishvili S.V., Geras'kin S.A., Shesterikova E.M., Prazyan A.A. Vliyanie hronicheskogo obluche-niya na fitogormonal'nyy status sosen Chernobyl'skoy zony otchuzhdeniya. Radiaciya i risk (Byulleten' Nacional'nogo radiacionno-epidemiologicheskogo registra). 2022; 31; 4: 64-72. DOI: https://doi.org/10.21870/0131-3878-2022-31-4-64-72
2. Degtyareva A.P. Izmenenie polnozernistosti semyan sosny obyknovennoy v zavisimosti ot obschego zhiznennogo sostoyaniya dereva. Zametki uchenogo. 2021; 8: 467-470. Rezhim dostupa: https://elibrary.ru/item.asp?id=46461906
3. Degtyareva A.P. Sosna obyknovennaya v izmenyayuschihsya klimaticheskih usloviyah Central'nogo Cher-nozem'ya. Byulleten' Gosudarstvennogo Nikitskogo botanicheskogo sada. 2022; 144: 14-18. Rezhim dostupa: https://elibrary.ru/item.asp?id=49750965
4. Degtyareva A.P. Vliyanie ekologicheskoy obstanovki na semennuyu produktivnost' Pinus sylvestris L. v stepnoy zone Central'no-Chernozemnogo rayona Rossii // Nauchno-agronomicheskiy zhurnal. 2023; 2(121): 46-50. DOI: https://doi.org/10.34736/FNC.2023.121.2.008.46-50
5. Drozhzhina V.N. Izmenenie parametrov generativnyh organov Pinus sylvestris L. v usloviyah tehno-gennogo zagryazneniya // Sovremennaya nauka: aktual'nye problemy teorii i praktiki. Seriya: Estestvennye i Tehnicheskie Nauki. 2023; 04/2: 13-18. DOI: https://doi.org/10.37882/2223–2966.2023.04–2.08
6. Kisternyy G.A. Sostoyanie zhenskoy generativnoy sfery sosny obyknovennoy v deystvuyuschem ocha-ge kornevoy gubki (Heterobasidion annosum (Fr.) Bref.) / G.A. Kisternyy // Lesotehnicheskiy zhurnal. 2022; 12; 4 (48): 31–46. DOI: https://doi.org/10.34220/issn.2222-7962/2022.4/3
7. Kuznecova N.F., Klushevskaya E.S. Smena zhiznennogo sostoyaniya kak sposob vyzhivaniya Pinus sylvestris L. na tehnogenno zagryaznennoy territorii // Principy ekologii. 2020; 2: 40–47. Rezhim dostupa: https://elibrary.ru/item.asp?id=44527120
8. Kuznecova N.F. Vliyanie tehnogennogo zagryazneniya i zasuhi na generativnuyu sferu lesostepnyh populyaciy Pinus sylvestris L. Hvoynye boreal'noy zony. 2022; XL; 6: 502-508. DOI: https://doi.org/10.53374/1993-0135-2022-6-502-508
9. Kuznecova N.F. Generativnaya sfera sosny obyknovennoy kak indikator klimaticheski determi-nirovannoy smeny zhiznennyh sostoyaniy populyaciy. Lesovedenie. 2023; 3: 244-254. DOI: https://doi.org/10.31857/S0024114823030063
10. Mihaylova M.I. O luchshih geoekotipah sosny obyknovennoy (Pinus sylvestris L.) dlya iskusstven-nogo lesovosstanovleniya / M.I. Mihaylova, M.P. Chernyshov, S.V. Rebko // Lesotehnicheskiy zhurnal. 2023; 13; 4(52): 58–71. DOI: https://doi.org/10.34220/issn.2222-7962/2021.4/4
11. Nakvasina E.N., Prozherina N.A., Chuprov A.V. Formirovanie shishek sosny obyknovennoy (Pinus sylvestris L.) v usloviyah izmeneniya klimata. Lesnoy vestnik. 2023; 27; 4: 36-46. DOI: https://doi.org/10.18698/2542-1468-2023-4-36-46
12. Novikova T.P. Vliyanie klimaticheskogo indeksa graduso-dney na vitalitet 3-letnih seyancev sos-ny obyknovennoy iz sortirovannyh po spektrometricheskim svoystvam semyan / T.P. Novikova, V.I. Maly-sheva, E.P. Petrischev // Lesotehnicheskiy zhurnal. 2022; 12; 1(45): 110–118. DOI: https://doi.org/10.34220/issn.2222-7962/2022.1/9
13. Serdyukova A.P. Ocenka obschego sostoyaniya i semennoy produktivnosti Pinus sylvestris L. v raznyh klimaticheskih zonah Voronezhskoy oblasti. Mezhdunarodnyy zhurnal gumanitarnyh i estestvennyh nauk. 2019; 2: 10-12. Rezhim dostupa: https://elibrary.ru/item.asp?id=41146360
14. Serdyukova A.P. Sostoyanie generativnoy sfery sosny obyknovennoy v usloviyah zasuhi i antro-pogennoy nagruzki stepnoy zony Voronezhskoy oblasti. Global and Regional Research. 2020; 2; 4: 163-168. Rezhim dostupa: https://elibrary.ru/item.asp?id=44574676
15. Smirnov A.I., Orlov F.S., Vasil'ev S.B., Aksenov P.A., Nikitin V.F. Obrabotka nekondicionnyh semyan sosny Banksa (Pinus banksiana Lamb.) i sosny obyknovennoy (Pinus sylvestris L.) nizkochastotnym elektromagnitnym polem // Lesnoy vestnik / Forestry Bulletin. 2020; 24; 5: 59–65. DOI: https://doi.org/10.18698/2542-1468-2020-5-59-65
16. Tarhanov S.N., Pinaevskaya E.A., Aganina Yu.E. Osobennosti adaptacii raznyh form sosny obyk-novennoy v usloviyah dlitel'nogo izbytochnogo uvlazhneniya pochv // Izv. vuzov. Lesn. zhurn. 2021. 2: 30–44. DOI: https://doi.org/10.37482/0536-1036- 2021-2-30-44
17. Teoriya veroyatnostey i matematicheskaya statistika : uchebno-metodicheskoe posobie / sost. N. L. Margolina, K. E. Shiryaev. – Kostroma : Kostromskoy gosudarstvennyy universitet. 2022; 124. Rezhim do-stupa: https://elibrary.ru/item.asp?id=50510500
18. Chuprov A.V., Nakvasina E.N., Prozherina N.A. Izmenchivost' shishek sosny obyknovennoy (Pinus sylvestris L.), proizrastayuschey v geograficheskih kul'turah Arhangel'skoy oblasti // Lesnoy vestnik / Forestry Bulletin. 2021; 25; 3: 24–33. DOI: https://doi.org/10.18698/2542-1468-2021-3-24-33
19. Yarmishko V.T., Ignat'eva O.V. Soobschestva Pinus sylvestris L. v tehnogennoy srede na Evropeyskom Severe Rossii: struktura, osobennosti rosta, sostoyanie. Sibirskiy lesnoy zhurnal. 2021; 3: 44-55. DOI: https://doi.org/10.15372/SJFS20210305
20. Besschetnova N.N., Besschetnov V.P., Babich N.A., Bryntsev V.A. Differentiation of plus trees of scots pine by xylem conditions. Russian Forestry Journal. 2023; 4(394): 9-25. DOI: https://doi.org/10.37482/0536-1036-2023-4-9-25
21. Yelkenova B.Z., Beisenova R.R., Karipbayeva N.Sh., Polevik V.V. The influence of atmospheric pollu-tion on the growth and developmetr of pine in the conditions of the Irtysh Semipalatinsk Region. Bulletin of the Karaganda university. Biology. Medicine. Geography Series. 2020; 98; 2: 73-78. DOI: https://doi.org/10.31489/2020BMG2/73-78



