Ушбу тезисда Far-Red Elongated Hypocotyl 3 (FHY3) ва Far-Red Impaired
Response 1 (FAR1) генларининг ўсимликлар ҳаётидаги абиотик ва биотик омиллардаги
роли ва уларнинг таъсирида ўсимликларда кечадиган биокимёвий жараёнлар ҳамда
фенотипик жиҳатдан ўзгарувчанликларни келтириб чиқиши ҳақида қисқача баён
этилган.
Ушбу тезисда Far-Red Elongated Hypocotyl 3 (FHY3) ва Far-Red Impaired
Response 1 (FAR1) генларининг ўсимликлар ҳаётидаги абиотик ва биотик омиллардаги
роли ва уларнинг таъсирида ўсимликларда кечадиган биокимёвий жараёнлар ҳамда
фенотипик жиҳатдан ўзгарувчанликларни келтириб чиқиши ҳақида қисқача баён
этилган.
In this work, the role of Far-Red Elongated Hypocotyl 3 (FHY3) and Far-Red
Impaired Response 1 (FAR1) genes response to the abiotic and biotic factors and their biochemical
processes in plants as well as the phenotypic aspects of the phenomenon have been briefly described.
Данная работа о роли генов Far-Red Elongated Hypocotyl 3 (FHY3) и
Far-Red Impaired Response 1 (FAR1) для растений при воздействии абиотических и
биотических факторов, а также о проходящих под их влиянием биохимических процессов,
и о некоторых фенотипических изменения у растений.
№ | Имя автора | Должность | Наименование организации |
---|---|---|---|
1 | Usmanov D.E. | ||
2 | Buriev Z.T. | ||
3 | Abdukarimov S.S. | ||
4 | Sobirov B.M. | ||
5 | Mukhtorov A.T. |
№ | Название ссылки |
---|---|
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2 | Gao, Y., Liu, H., An, C., Shi, Y., Liu, X., Yuan, W., Zhang, B., Yang, J., Yu, C., Gao, H. (2013) Arabidopsis FRS4/CPD25 and FHY3/CPD45 work cooperatively to promote the expression of the chloroplast division gene ARC5 and chloroplast division. Plant J., 75, 795–807. |
3 | Stirnberg, P., Zhao, S., Williamson, L., Ward, S., Leyser, O. (2012) FHY3 promotes shoot branching and stress tolerance in Arabidopsis in an AXR1-dependent manner. The Plant Journal, 71, 907-20. |
4 | Tang, W., Ji, Q., Huang, Y., Jiang, Z., Bao, M., Wang, H., Lin, R. (2013) FAR-RED ELONGATED HYPOCOTYL3 and FAR-RED IMPAIRED RESPONSE1 transcription factors integrate light and abscisic acid signaling in Arabidopsis. Plant Physiol., 163(2), 857-66 |
5 | Li, G., Siddiqui, H., Teng, H., Lin, R., Wan, X, Li, J., Lau, O., Ouyang, X., Dai, M., Wan, J., Devlin, P.F., Deng, X.W., Wang, H. (2011) Coordinated transcriptional regulation underlying the circadian clock in Arabidopsis. Nature Cell Biology, 13, 616-41. |
6 | Wang, H. and Wang, H. (2015) Multifaceted roles of FHY3 and FAR1 in light signaling and beyond.Trends Plant Sci. 20(7), 453-61. |
7 | Ma, L., Tian, T., Lin, R., Deng, X.W., Wang, H., Li, G. (2016) Arabidopsis FHY3 and FAR1 Regulate Light-Induced myo-Inositol Biosynthesis and Oxidative Stress Responses by Transcriptional Activation of MIPS1. Mol Plant, 9(4), 541-57. |
8 | Zhang, C., Xie, Q., Anderson, R.G., Ng, G., Seitz, N.C., Peterson, T., et al. (2013) Crosstalk between the Circadian Clock and Innate Immunity in Arabidopsis. PLoS Pathogens, 9(6), e1003370. |
9 | Shim, J.S. and Imaizumi, T. (2015) Circadian Clock and Photoperiodic Response in Arabidopsis: From Seasonal Flowering to Redox Homeostasis. Biochemistry 54(2), 157-70. |
10 | Ouyang, X., Li, J., Li, G., Li, B., Chen, B., Shen, H., et al. (2011) Genome-wide binding site analysis of FAR-RED ELONGATED HYPOCOTYL3 reveals its novel function in Arabidopsis development. Plant Cell, 23, 2514-35 |
11 | Neff, M.M., Neff, J.D., Chory, J., Peppe, A.E. (1998) dCAPS, a simple technique for the genetic analysis of singlenucleotide polymorphisms: experimental applications in Arabidopsis thaliana genetics. The Plant Journal, 14(3), 387-92. |