Arid
DOI10.1016/j.plaphy.2013.09.016
Regulation of flavanone 3-hydroxylase gene involved in the flavonoid biosynthesis pathway in response to UV-B radiation and drought stress in the desert plant, Reaumuria soongorica
Liu, Meiling1,2; Li, Xinrong1; Liu, Yubing1; Cao, Bo1,2
通讯作者Liu, Yubing
来源期刊PLANT PHYSIOLOGY AND BIOCHEMISTRY
ISSN0981-9428
出版年2013
卷号73页码:161-167
英文摘要

Flavonoid are known to have various functions in growth, development, reproduction, and also involved in diverse stress responses in plants. However, little is known about the roles of the key enzymes in the flavonoid biosynthetic pathway in response to environmental stress, such as UV-B radiation and drought. To understand this problem, we investigated the participation of flavanone 3-hydroxylase gene (F3H), a key enzyme in flavonoid biosynthetic pathway under UV-B radiation and drought stress in the desert plant Reaumuria soongorica. A novel cDNA sequence, named as RsF3H, was isolated from R. soongorica. The deduced amino acids showed high identities to other F3Hs. A phylogenetic analysis indicated that RSF3H appeared to be most homologous to F3H from Malus domestica (MdF3H). RsF3H protein structure contained all five conserved motifs for 2-oxoglutarate-dependent dioxygenases (2-ODDs) and an Arg-X-Ser motif, all of which were also found in other F3Hs. Quantitative real-time RT-PCR analysis showed that there was a rapid increase in gene expression of R5F3H under stress. Both UV-B radiation and drought stress induced an increase in RsF3H enzyme activity and the accumulation of the products in the flavonoid biosynthetic pathway (total flavonoid and anthocyanin). The antioxidant ability (inhibition of lipid oxidation) of total flavonoid was enhanced during this study. The results suggested that one explanation of the stress tolerance of R. soongorica may be a combination of an increase in RsF3H gene expression, RsF3H enzyme activity and the anti-oxidative ability of the metabolic end products in the flavonoid biosynthetic pathway in response to UV-B radiation and drought. (C) 2013 Elsevier Masson SAS. All rights reserved.


英文关键词UV-B Drought RsF3H Flavonoid biosynthetic pathway Reaumuria soongorica
类型Article
语种英语
国家Peoples R China
收录类别SCI-E
WOS记录号WOS:000329007000021
WOS关键词FLOWER COLOR ; CHLOROPHYLL FLUORESCENCE ; PHENOLIC-COMPOUNDS ; RICE GENOTYPES ; EXPRESSION ; ACCUMULATION ; SUPPRESSION ; TOLERANCE ; IRRADIATION ; DEFENSE
WOS类目Plant Sciences
WOS研究方向Plant Sciences
来源机构中国科学院西北生态环境资源研究院
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/179307
作者单位1.Chinese Acad Sci, Shapotou Desert Res & Expt Stn, Cold & Arid Reg Environm & Engn Res Inst, Lanzhou 730000, Peoples R China;
2.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
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GB/T 7714
Liu, Meiling,Li, Xinrong,Liu, Yubing,et al. Regulation of flavanone 3-hydroxylase gene involved in the flavonoid biosynthesis pathway in response to UV-B radiation and drought stress in the desert plant, Reaumuria soongorica[J]. 中国科学院西北生态环境资源研究院,2013,73:161-167.
APA Liu, Meiling,Li, Xinrong,Liu, Yubing,&Cao, Bo.(2013).Regulation of flavanone 3-hydroxylase gene involved in the flavonoid biosynthesis pathway in response to UV-B radiation and drought stress in the desert plant, Reaumuria soongorica.PLANT PHYSIOLOGY AND BIOCHEMISTRY,73,161-167.
MLA Liu, Meiling,et al."Regulation of flavanone 3-hydroxylase gene involved in the flavonoid biosynthesis pathway in response to UV-B radiation and drought stress in the desert plant, Reaumuria soongorica".PLANT PHYSIOLOGY AND BIOCHEMISTRY 73(2013):161-167.
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