Intra-population variability of oil content and fatty acid composition in modern hemp cultivars

Авторы

  • І. М. Laiko Institute of Bast Crops of NAAS, Ukraine
  • L. N. Kobyzeva Plant Production Institute named after V.Ya. Yuriev of NAAS, Ukraine
  • S. V. Mishchenko Institute of Bast Crops of NAAS, Ukraine
  • H. I. Kyrychenko Institute of Bast Crops of NAAS, Ukraine

DOI:

https://doi.org/10.30835/2413-7510.2022.260990

Ключевые слова:

breeding, cultivar, inbreeding, oil content, fatty acid composition

Аннотация

Purpose and objectives. To identify new promising material with high seed productivity, oil content and optimal fatty acid composition

Results and discussion. It was found that the variability ranges of the oil content and seed weight increased under the influence of selections. Use of distant genotypes in hybridization contributed to the generation of high-oil lines, which later become donors of this trait. High oil content was recorded in hybrids derived from crossing cultivars and self-pollinated lines of the Central European eco-geographical type with cultivars and self-pollinated lines of the southern type. In this case, cultivar-line and line-cultivar hybrids (oil content of 36−39%), rather than inter-line ones, turned out to be the most successful results.

Family-group selection is a basis for increasing and further stabilizing the oil content in seeds. The oil content was revealed to gradually increase during the breeding for increased oil content. It was found that the population variability of the seed oil content was from 33.99% to 46.98%.

Continuous breeding selection gradually widens the expression range of the “oil content” trait from medium to maximum. In order to increase the practical value of cultivars via breeding techniques the seed productivity was also increased. The cultivars of different genetic origins, Hlesiia and Mykolaiychyk, as well as the cultivars of hybrid origin, Artemida and Harmoniia, were considered the most promising ones. In Mykolaichyk populations, the oil content gradually increased and stabilized at a level of 33, 35, or 37.8% without changes in the fatty acid composition of oil.

The selections stabilized the oil content in cultivar populations. This proves the high efficiency of the developed breeding methods to create cultivars with high seed productivity and of targeted selection to increase the oil content in hemp seeds. Thus, the importance of a cultivar combining high seed yield and high oil output rises. The modern cultivars were ranked in order of decreasing oil levels in seeds as follows: Mykolaichyk, Artemida, Harmoniia, Hlesiia.

Oil of all cultivars had an optimal ratio of omega-3 to omega 6 fatty acids of 1:3.1−1:3.9 (2016−2017). In 2018−2019, the ratio of omega-6 to omega-3 fatty acids was 4.0:1− 4.8:1. The linoleic acid content ranged from 55% to 58% and the linolenic acid content – from 12.58% to 18.23%. Mykolaichyk and Artemida were noticeable for gamma-linolenic acid. These results allow us to assert that the fatty acid composition of hemp seeds is unique and immutable during the breeding for increased oil content.

Conclusions. We believe that the Central European type is a source and donor of high oil content, while the southern type – of a longer seed formation and, accordingly, of high oil accumulation.

The heterosis phenomenon resulted from combining distant genotypes in one organism was observed. In this case, cultivar-line and line-cultivar hybrids, but not inter-line hybrids, turned out to be the most successful ones (oil content of 36−39%).

The new hemp cultivars, Mykolaichyk, Artemida and Harmoniia, which combine high seed productivity with high seed oil content and unique fatty acid composition, have been created.

Библиографические ссылки

Salentijn EMJ., Zhang Q, Amaducci S et al. New developments in fiber hemp (Cannabis sativa L.) breeding. Industrial Crops and Products. 2015; 68: 32–41. https:// doi.org/10.1016/j.indcrop.2014.08.011

Myhal MD, Laiko IM, Kmets IL. The role and significance of biological studies of hemp for breeding and seed production. Lubiani iTekhnichni Kultury. 2017; 5(10): 28–51.

Serkov VA, Belousov RO, Aleksandrova MR et al. Topical trends in hemp breeding for solving current problems of the domestic economy and import substitution (review). Niva Povolozhya. 2019; 3(52): 38–47.

Burczyk H, Kowalski M, Plawuszewski M. Trends and methods in hemp breeding in Poland. Journal of Natural Fibers. 2005; 2(1): 25–33. https:// doi.org/ 10.1300/J395v02n01_03

Zwenger SR. The biotechnology of Cannabis sativa. New York, 2014. 249 p.

Brian C, Dong Z, McKay JK. Hemp genetics and genomics. Industrial hemp as a modern commodity crop. In: DW Williams, ed.. Madison, 2019. P. 94–108. https:// doi.org/10.2134/industrialhemp.c6

Faux A, Draye X, Flamand M et al. Identification of QTLs for sex expression in dioecious and momoecious hemp (Cannabis sativa L.). Euphytica. 2016; 209: 357–376. https:// doi.org/10.1007/s10681-016-1641-2

Punja ZK, Rodriguez G, Chen S. Assessing genetic diversity in Cannabis sativa using molecular approaches.Cannabis sativa L. – Botany and Biotechnology. In: S Chandra etal., eds. Cham, 2017. P. 395–418. https:// doi.org/: 10.1007/978-3-319-54564-6_19

Salentijn EMJ, Zhang Q, Amaducci S et al. New developments in fiber hemp (Cannabis sativa L.) breeding. Industrial Crops and Products. 2015; 68: 32–41. https:// doi.org/10.1016/j.indcrop.2014.08.011

Toth JA, Stack GM, Cala AR et al. Development and validation of genetic markers for sex and cannabinoid chemotype in Cannabis sativa L. GCB Bioenergy. 2020; 12(3): 213–222. https:// doi.org/10.1111/gcbb.12667

Vyrovets VH, Laiko IM, Vereshchahin IV, Tymchuk SM, Pozdniakov VV. Prospects of breeding for optimized fattyacid composition of oil in modern varieties of non-narcotic cannabis. Sel. Nasinn. 2011; 100: 247–254. https:// doi.org/

Laiko IM, Vyrovets VH, Mishchenko SV, Vereshchahin IV. Justification of the creation of self-pollinated non-narcotic hemp lines for breeding for increased oil content. Maslichnyie Kultury. 2014; 1(157–158): 27–31.

Laiko IM, Mishchenko SV. Methodological aspects of increasing the seed productivity of hemp (Cannabis sativa L.) based on the phenotypic characteristics of inflorescences. Vestnik Altayskogo GosudarstvennogoAgrarnogo Universiteta. 2013; 7(105): 51–55.

Vyrovets VH, Laiko IM, Kabanets VM. Achievements and prospects of hemp breeding forincreased seed productivity. Lubiani iTekhnichni Kultury. 2012; 2(7): 13–27.

Vyrovets VH, Vereshchahin IV. Promising starting material in the breeding of non-narcotic hempfor increased oil content. Vestnik AltayskogoGosudarstvennogoAgrarnogo Universiteta. 2014; 1(111): 19–23.

Загрузки

Опубликован

2022-07-08

Выпуск

Раздел

МЕТОДЫ И РЕЗУЛЬТАТЫ СЕЛЕКЦИИ