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GENETIC CONTROL OF FERTILITY RESTORATION IN CMS LINES OF FLAX (LINUM USITATISSIMUM)

https://doi.org/10.30901/2227-8834-2017-1-68-81

Abstract

Three flax lines: gc-204 (with opened flowers, curved stamen filaments, sterile anthers, forming few seeds by selfpollination), gc-208 and gc-188 (fertile ones, sterility occurs only when hybridized with other lines) were used as CMS sources. These lines can be involved in heterosis breeding. Genes controlling male fertility restoration RFO8, RFO9 were identified. Recessive alleles of the genes restoring fertility rft3-2, rft3-3, rft3-6, rft3-7, rft5-2, rft6, rft7 and dominant RFT4-3 determine tubular shape of sterile flowers, and are undesirable for breeding because the probability of cross pollination decreases. Other recessive (alternative) alleles of pollen fertility restoration genes rfo6, rfo6-2, rfo6-3, rfo7 do not affect the corolla’s shape.

About the Author

E. A. Porokhovinova
Federal Research Center the N.I.Vavilov All-Russian Institute of Plant Genetic Resources (VIR)
Russian Federation


References

1. Анащенко А. В. Мужская стерильность у подсолнечника (Helianthus annuus L.) // Автореф. дисс. ... канд. биол. наук, Л: 1968, 24 с

2. Анисимова И. Н., Гаврилова В. А. Структурно-функциональное разнообразие генов, супрессирующих фенотип цитоплазматической мужской стерильности у растений // Тр. по прикл. бот., ген. и сел. 2012. Т. 170. С. 3-16

3. Баранова Е. Г., Иваницкий К. И., Сучков В. И. Формирование генофонда источников цитоплазматической мужской стерильности табака // Apriori серия: естественные и технические науки. 2015. № 2. C. 1-18

4. Bateson W. M A., Gairdner A. E. Male-sterility in flax, subject to two types of segregation // Genetics, 1921, vol. 11, pp. 269-275

5. Chen W., Yu X.-H., Zhang X. et all. Zhang Male Sterile 2 encodes a plastid-localized fatty acyl carrier protein reductase required for pollen exine development in Arabidopsis // Plant physiology, 2011, vol. 157, pp. 842-853

6. Comstock V. E. Possibility of hybrid flax production // 35th Annual Flax Institute of the USA, Minneapolis, 1965, pp. 24-25

7. Comstock V. E., Ford J. H. Association of seed color with viability of stored flax seed // 38th Annual Flax Institute of the USA, 1968, Minneapolis, pp. 20-22

8. Comstock V. E. Natural crossing onto male - sterile flax and association of male sterility with seed color // 40th Annual flax Institute of the USA, Minneapolis: 1970, pp. 8-9

9. Даниленко Н. Г., Давыденко О. Г. Миры геномов органелл. Минск, 2003. 498 с

10. Dubey D. K., Singh S. P. Mechanism of pollen abortion in three male sterile lines of flax (Linum usitatissimum L.) // Crop science, 1965, vol. 5, pp. 121-124.

11. Dubey D. K., Singh S. P. Use of cytoplasmic male sterility for production of hybrid seeds in flax (Linum usitatissimum L.) // Crop science, 1966, vol. 6, pp. 125-127

12. Gairdner A. Male sterility in flax II A case of reciprocal crosses differing in F2 // Journal of genetics, 1929, vol. 21, pp.117-124

13. Hanson M. R., Bentolila S. Interactions of mitochondrial and nuclear genes that affect male gametophyte development // The Plant Cell, 2004, vol. 16, pp. 154-169. DOI: 10.1105/tpc.015966

14. Hui Z., Bateer S., Xiao-yun J., Zi-qin L., Qiang L. Study on genes related to male sterility in dominant genic male sterile flax // Proceedings of the 63rd flax institute of the United States. Fargo, North Dakota: Flax Institute of the United States, 2010, pp. 112-122 (abstract)

15. Kumar S., Jordan M. C., Datla R., Cloutier S. The LuWD40-1 gene encoding WD repeat protein regulates growth and pollen viability in flax (Linum usitatissimum L.). PLoS ONE. 2013. vol. 8, no. 7, pp. 1-10. DOI: 10.1371/journal.pone.0069124

16. Kumar S. Male sterility in vegetables // In: Olericulture - fundamental of vegetable production, 2013, vol. 1, pp. 431-439

17. Kumar S., Singh S. P. Inheritance of male-sterility in some introduced varieties of linseed (Linum usitatissimum L.) // Indian Journal agricultural science, 1970, vol. 40, no. 2, pp. 184-191

18. Kumar S., Singh S. P. Inheritance of partial male -fertility in linseed (Linum usitatissimum L.) // Indian Journal agricultural science, 1972, vol. 42, no. 1, pp. 34-38

19. Марченков А. Н. Использование материалов коллекции ВИР при изучении ЦМС у льна долгунца // Тр. по прикл. бот., ген. и сел. 1979. Т. 64. Вып. 2. С. 74-78

20. Наследов А. Д. Математические методы психологического исследования. Анализ и интерпретация данных. СПб.: Речь, 2012. 392 с

21. Rhoades M. M. Cytoplasmic inheritance of male sterility in Zea mais // Science, 1931, no. 1891, pp. 340-341

22. Рыкова Р. П. Источники цитоплазматической мужской стерильности льна // Тр. по прикл. бот., ген. и сел. 1979. Т. 64. Вып. 2. С. 52-58

23. Сорочинская М. А., Галкин Ф. М. Исходный материал и результаты селекции по льну масличному во ВНИИМК // Бюлл. ВНИИР им. Н.И. Вавилова. 1977. Вып. 69. С. 30-34

24. StatSoft, Inc. Electronic Statistics Textbook. Tulsa, OK: StatSoft. 2013 URL. http://www.statsoft. com/textbook


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For citations:


Porokhovinova E.A. GENETIC CONTROL OF FERTILITY RESTORATION IN CMS LINES OF FLAX (LINUM USITATISSIMUM). Proceedings on applied botany, genetics and breeding. 2017;178(1):68-81. (In Russ.) https://doi.org/10.30901/2227-8834-2017-1-68-81

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ISSN 2227-8834 (Print)
ISSN 2619-0982 (Online)