A Na+/H+ antiporter-encoding salt overly sensitive 1 gene, LpSOS1, involved in positively regulating the salt tolerance in Lilium pumilum
文献类型: 外文期刊
作者: Yue Yang;Leifeng Xu;Wenxiang Li;Yuwei Cao;Mengmeng Bi;Pengfei Wang;Rui Liang;Panpan Yang;Jun Ming
作者机构:
关键词: Lilium pumilum;Na+/H+ antiporter salt overly sensitive 1;Salinity;Salt tolerance
期刊名称: Gene
ISSN: 0378-1119
年卷期: 2023 年 874 卷
页码:
收录情况: SCIE(2023版)
摘要: Lilium pumilum has a strong salt tolerance. However, the molecular mechanism underlying its salt tolerance remains unexplored. Here, LpSOS1 was cloned from L. pumilum and found to be significantly enriched at high NaCl concentrations (100 mM). In tobacco epidermal cells, localization analysis showed that the LpSOS1 protein was primarily located in the plasma membrane. Overexpression of LpSOS1 resulted in up-regulation of salt stress tolerance in Arabidopsis, as indicated by reduced malondialdehyde levels and Na+/K+ ratio, and increased activity of antioxidant reductases (including superoxide dismutase, peroxidase, and catalase). Treatment with NaCl resulted in improved growth, as evidenced by increased biomass, root length, and lateral root growth, in both sos1 mutant (atsos1) and wild-type (WT) Arabidopsis plants that overexpressed LpSOS1, Under NaCl treatment,atsos1 and WT Arabidopsis plants overexpressing LpSOS1 exhibited better growth, with higher biomass, root length, and lateral root quantity, whereas in the absence of LpSOS1 overexpression, the plants of both lines were wilted and chlorotic and even died under salt stress. When exposed to salt stress, the expression of stress-related genes was notably upregulated in the LpSOS1 overexpression line of Arabidopsis as compared to the WT. Our findings indicate that LpSOS1 enhances salt tolerance in plants by regulating ion homeostasis, reducing Na+/K+ ratio, thereby protecting the plasma membrane from oxidative damage caused by salt stress, and enhancing the activity of antioxidant enzymes. Therefore, the increased salt tolerance conferred by LpSOS1 in plants makes it a potential bioresource for breeding salt-tolerant crops. Further investigation into the mechanisms underlying lily's resistance to salt stress would be advantageous and could serve as a foundation for future molecular improvements.
分类号:
- 相关文献
作者其他论文 更多>>
-
A bZIP transcription factor LlbZIP11 targets LlWOX11 to inhibit bulbil formation in Lilium lancifolium Thunb.
作者:Jingfang Wei;Chenlu Yang;Saiyu Sun;Zheng Zhang;Leifeng Xu;Jun Ming;Xiaomei Sun;Panpan Yang
关键词:Bulbil formation;Lilium lancifolium;LlbZIP11;LlWOX11;Transcriptional regulation
-
Maternal Melatonin Contributes to Offspring Hair Follicle Development Through Transcriptional Regulation of the AP-1 Complex and MAPK Pathway
作者:Yang Feng;Ruixin Yang;Jianqiang Zhang;Haonan Yuan;Zunqiang Yan;Pengfei Wang;Xiaochun Ma;Ting Liu;Shuangbao Gun
关键词:AP-1;hair follicle;melatonin;offspring;Rex rabbit
-
The P-type ATPase gene AHA5 is involved in proanthocyanidins accumulation in Medicago truncatula
作者:Wenbo Jiang;Yinuo Yan;Shiyao Yue;Jiebing Wei;Wenxiang Li;Yanxia Liang;Mengrong Xu;Yaying Xia;Dengxia Yi;Yongxin Wang;Yan Zhao;Yuxiang Wang;Jun Li;Lili Nan;Yongzhen Pang
关键词:AHA10;H+-ATPase;Medicago truncatula;MtAHA5;Proanthocyanidins
-
LlLRP1, an SHI/SRS transcription factor, mediates bulbil formation in Lilium lancifolium via regulation by LlWOX11 and response to NaCl stress
作者:Jingyi Bai;Panpan Yang;Leifeng Xu;Jun Ming
关键词:Bulbil morphogenesis;Lilium lancifolium;LlWOX11;Salt stress response;SHI/SRS transcription factor
-
Quantitative non-volatile sensometabolome of Longjing tea and discrimination of taste quality by sensory analysis, large-scale quantitative metabolomics and machine learning
作者:Xujiang Shan;Linchi Niu;Qianting Zhang;Zhizhen Fang;Yuning Feng;Rui Liang;Zhenxing Xu;Shan Zhang;Le Chen;Weidong Dai;Qinghua Zhou;Yongwen Jiang;Haibo Yuan;Jia Li
关键词:Machine learning;Metabolomics;Quantification;Quantitative descriptive analysis;Taste;Umami;\Longjing tea
-
Impacts of reproductive systems on grapevine genome and breeding
作者:Hua Xiao;Yue Wang;Wenwen Liu;Xiaoya Shi;Siyang Huang;Shuo Cao;Qiming Long;Xu Wang;Zhongjie Liu;Xiaodong Xu;Yanling Peng;Pengfei Wang;Zhonghao Jiang;Summaira Riaz;Andrew M. Walker;Brandon S. Gaut;Sanwen Huang;Yongfeng Zhou
关键词:(1-1-1)
-
Systematic characterization of the calmodulin-like (CML) gene family in alfalfa and functional analysis of MsCML70 under salt stress
作者:Yixin An;Baijian Liu;Yuwei Cao;Ziqi Wang;Shuxia Yin;Lin Chen
关键词:Alfalfa;MsCML70;Salt stress tolerance