EXPRESSION LEVEL OF FLOWERING TIME GENES (CONZ1, GIGZ1A, GIGZ1B, FKF1A, FKF1B) IN SEEDLINGS UNDER LONG DAY CONDITIONS DIFFERENTIATES EARLY AND LATE ZEA MAYS L.

Мұқаба

Дәйексөз келтіру

Толық мәтін

Ашық рұқсат Ашық рұқсат
Рұқсат жабық Рұқсат берілді
Рұқсат жабық Тек жазылушылар үшін

Аннотация

Twenty inbred lines of maize Zea mays L. were characterized by the duration of phenophases, including the timing of flowering and ripeness. The expression of key genes for initiation of flowering, CONZ1, GIGZ1a, GIGZ1b, ZmFKF1a, and ZmFKF1b, was studied in seedlings of six maize lines with different ripeness periods under long photoperiod conditions. A significantly lower level of transcripts of all five genes was found in early ripening lines in comparison with late ripening accessions. A similar expression of the paralogous GIGZ1a and GIGZ1b genes was shown, as well as a significant predominance of ZmFKF1a expression in comparison with its paralogous gene ZmFKF1b.

Авторлар туралы

D. Arkhestova

Institute of Bioengineering, Federal Research Center “Fundamentals of Biotechnology” of the Russian Academy of Sciences; Institute of Agriculture, Branch of Kabardino-Balkarian Scientific Center of the Russian Academy of Sciences

Email: shchennikova@yandex.ru
Russian Federation, Moscow; Russian Federation, Nalchik

O. Anisimova

Institute of Bioengineering, Federal Research Center “Fundamentals of Biotechnology” of the Russian Academy of Sciences

Email: shchennikova@yandex.ru
Russian Federation, Moscow

E. Kochieva

Institute of Bioengineering, Federal Research Center “Fundamentals of Biotechnology” of the Russian Academy of Sciences

Email: shchennikova@yandex.ru
Russian Federation, Moscow

A. Shchennikova

Institute of Bioengineering, Federal Research Center “Fundamentals of Biotechnology” of the Russian Academy of Sciences

Хат алмасуға жауапты Автор.
Email: shchennikova@yandex.ru
Russian Federation, Moscow

Әдебиет тізімі

  1. Miller T.A., Muslin E.H., Dorweiler J.E. // Planta. 2008. V. 227 (6). P. 1377–1388.
  2. Liu L., Wu Y., Liao Z., et al. // Heredity (Edinb). 2018. V. 120 (4). P. 310–328.
  3. Sawa M., Nusinow D.A., Kay S.A., et al. // Science. 2007. V. 318. P. 261–265.
  4. Kami C., Lorrain S., Hornitschek P., et al. // Curr. Top. Dev. Biol. 2010. V. 91. P. 29–66.
  5. Mishra P., Panigrahi K.C. // Front. Plant Sci. 2015. V. 6. P. 8.
  6. Ronald J., McCarthy K., Davis S.J. // Mol. Plant. 2020. V. 13 (3). P. 357–359.
  7. Ke Q., Kim H.S., Wang Z., et al. // Plant Biotechnol. J. 2017. V. 15 (3). P. 331–343.
  8. Kim W.Y., Fujiwara S., Suh S.S., et al. // Nature. 2007. V. 449. P. 356–360.
  9. Matsuoka Y., Vigouroux Y., Goodman M.M., et al. // Proc. Natl. Acad. Sci. USA. 2002. V. 99 (9). P. 6080–6084.
  10. Chen Q., Zhong H., Fan X.W., et al. // Plant, Cell & Environment. 2015. V. 38 (8). P. 1479–1489.
  11. Bendix C., Mendoza J.M., Stanley D.N., et al. // Plant Cell Environ. 2013. V. 36 (7). P. 1379–1390.
  12. Li Z., Gao F., Liu Y., et al. // Plant Sci. 2023. V. 332. P. 111701.
  13. Rubio V., Deng X.W. // Science. 2007. V. 318 (5848). P. 206–207.

Қосымша файлдар

Қосымша файлдар
Әрекет
1. JATS XML
2.

Жүктеу (259KB)

© Д.Х. Архестова, О.К. Анисимова, Е.З. Кочиева, А.В. Щенникова, 2023

Осы сайт cookie-файлдарды пайдаланады

Біздің сайтты пайдалануды жалғастыра отырып, сіз сайттың дұрыс жұмыс істеуін қамтамасыз ететін cookie файлдарын өңдеуге келісім бересіз.< / br>< / br>cookie файлдары туралы< / a>