PnF3H, a flavanone 3-hydroxylase from the Antarctic moss Pohlia nutans, confers tolerance to salt stress and ABA treatment in transgenic Arabidopsis

被引:1
|
作者
Chengcheng Li
Shenghao Liu
Xinghao Yao
Jing Wang
Tailin Wang
Zhaohui Zhang
Pengying Zhang
Kaoshan Chen
机构
[1] Shandong University,National Glycoengineering Research Center and School of Life Science
[2] State Oceanic Administration,Marine Ecology Research Center, The First Institute of Oceanography
[3] Shandong Provincial Key Laboratory of Carbohydrate Chemistry and Glycobiology,undefined
来源
Plant Growth Regulation | 2017年 / 83卷
关键词
Antarctic moss; Flavonoids; Flavanone 3-hydroxylase; Phenotype; Salt stress;
D O I
暂无
中图分类号
学科分类号
摘要
Flavonoids are widely distributed secondary metabolites in plants. However, far less research has been carried out on genes involved in the flavonoid biosynthetic pathways in bryophytes. Here, a novel flavanone 3-hydroxylase gene (PnF3H) was cloned from Antarctic moss Pohlia nutans. Subcellular localization revealed that PnF3H were mainly distributed to cytosol. The expression of PnF3H was rapidly induced by salt, UV-B, cold and drought stresses as well as by exogenously applied abscisic acid (ABA). Transgenic Arabidopsis plants of overexpressing PnF3H exhibited enhanced tolerance to salt and oxidative stresses. The expression levels of several stress resistance genes (i.e., AtSOS3, AtP5CS1, AtHKT1, AtCAT1 and AtAPX1) were markedly up-regulated in transgenic plants. The activities of antioxidant enzymes were increased, while the content of hydrogen peroxide was obviously decreased in PnF3H transgenic plants. Meanwhile, the expression levels of ABA-responsive genes which confer for controlling seeds germination, such as AtABI4, AtABI5, AtABI3 and AtABF3 were markedly decreased. Additionally, overexpressing PnF3H alleviated the inhibitory effects of naringenin on plant growth and changed the flavonoid components in transgenic plants. Therefore, we proposed that PnF3H was a flavanone 3-hydroxylase involving in regulating the salinity tolerance and ABA sensitivity to enable P. nutans to adapt to polar climates.
引用
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页码:489 / 500
页数:11
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