Graphene enhances photosynthesis and the antioxidative defense system and alleviates salinity and alkalinity stresses in alfalfa (Medicago sativa L.) by regulating gene expression
文献类型: 外文期刊
第一作者: Chen, Zhao
作者: Chen, Zhao;Niu, Junpeng;Guo, Zhipeng;Sui, Xin;Xu, Nan;Kareem, Hafiz Abdul;Ul Hassan, Mahmood;Yan, Mingke;Wang, Quanzhen;Zhang, Quan;Cui, Jian;Kang, Junmei;Wang, Zhaolan;Mi, Fugui;Karagic, Dura
作者机构:
期刊名称:ENVIRONMENTAL SCIENCE-NANO ( 影响因子:8.131; 五年影响因子:8.3 )
ISSN: 2051-8153
年卷期: 2021 年 8 卷 9 期
页码:
收录情况: SCI
摘要: Soil salinity and alkalinity are important factors affecting the growth, development, and productivity of alfalfa (Medicago sativa), while nanomaterials could affect the growth and alleviate stress. However, the molecular regulation mechanisms remain largely unknown about how nanoparticle-treated alfalfa responds and adapts to the abiotic stress. We sequenced the transcriptomic changes in graphene-treated leaves under salt and alkali stresses. A total of 19.4 Gb of clean reads were generated by SMRT sequencing including 265 811 CCS and 219 162 FLNC reads, and 12 960 non-redundant transcripts were obtained. RNA-seq analysis revealed 930, 1114 and 880 DEGs in leaves treated with graphene, graphene-salt and graphene-alkali, respectively, among which hundreds of genes are involved in hormonal signaling, photosynthesis, respiration, and transcriptional regulation pathways. Notably, specific differential gene expression patterns such as the antioxidant defense system and photosynthesis may rapidly confer abiotic tolerance in alfalfa leaves treated with graphene. Moreover, the physiological changes were consistent with the complex transcript profiles of the genes involved, suggesting that photosynthesis and the antioxidant defense mechanism played a critical role in reacting to salt and alkali stresses. These observations provide a full characterization of gene transcription and promote the understanding of the molecular mechanisms of nanoparticle-treated alfalfa adaptation to abiotic stresses.
分类号:
- 相关文献
作者其他论文 更多>>
-
Comparison of economic and ecological benefits between factory water exchange model and biofloc model based on meta analysis
作者:Wang, Yuzhen;Zhang, Shuangyong;Wang, Yuzhen;Chen, Zhao;Chang, Zhiqiang;Zhang, Shuangyong;Meng, Gao;Li, Jian;Wang, Yuzhen;Chen, Zhao;Chang, Zhiqiang;Zhang, Shuangyong;Meng, Gao;Li, Jian
关键词:Super-intensive culture; Super-intensive biofloc culture; Economic effects; Ecological effects; Carbon sink
-
The whole-genome dissection of root system architecture provides new insights for the genetic improvement of alfalfa (Medicago sativa L.)
作者:Jiang, Xueqian;Zeng, Xiangcui;Xu, Ming;Li, Mingna;Zhang, Fan;He, Fei;Long, Ruicai;Yang, Qingchuan;Kang, Junmei;Xu, Ming;Yang, Tianhui;Wang, Chuan;Gao, Ting;Yang, Tianhui
关键词:
-
Coenzyme Q GhCoQ9 enhanced the salt resistance by preserving the homeostasis of mitochondrial in upland cotton
作者:Xu, Nan;Zhong, Yike;Chen, Zhuona;Zhang, Doudou;Han, Xu;Wei, Renhui;Wang, Panpan;Li, Xinru;Gong, Juwu;Li, Yang;Yan, Haoliang;Yuan, Youlu;Shang, Haihong;Xu, Nan;Zhong, Yike;Zhang, Yuanming;Yuan, Youlu;Shang, Haihong;Chen, Zhuona;Zhang, Doudou;Han, Xu;Wang, Panpan;Li, Xinru;Zhao, Yanpeng;Li, Gangling;Yang, Zheng;Yuan, Youlu;Shang, Haihong;Gao, Xu
关键词:Cotton; CoQ; GhCoQ9; Salt stress; Ultrastructure
-
The Effect of Rhizophagus intraradices on Cadmium Uptake and OsNRAMP5 Gene Expression in Rice
作者:Bao, Xiaoqi;Zhang, Quan;Bao, Xiaoqi;Liu, Junli;Qiu, Gaoyang;Chen, Xiaodong;Zhang, Junbo;Guo, Bin;Wang, Hua
关键词:arbuscular mycorrhizal fungi; cadmium; uptake;
OsNRAMP5 ; rice -
Comprehensive analysis of epigenetic modifications in alfalfa under cadmium stress
作者:Chen, Lin;Li, Xianyang;Liu, Hao;He, Fei;Li, Mingna;Long, Ruicai;Wang, Xue;Kang, Junmei;Yang, Qingchuan
关键词:Cadmium stress; DNA methylation; N 6 methylation; Gene expression; Alfalfa
-
Genome-wide identification and expression analysis of CBF/DREB1 gene family in Medicago sativa L. and functional verification of MsCBF9 affecting flowering time
作者:Cui, Jing;Li, Yajing;Liu, Hao;Jiang, Xu;Zhang, Lili;Dai, Hongbo;Wang, Xue;He, Fei;Li, Mingna;Kang, Junmei
关键词:Alfalfa;
MsCBF ;genome-wide; Flowering regulation -
Unveiling alfalfa root rot resistance genes through an integrative GWAS and transcriptome study
作者:He, Fei;Xu, Ming;Liu, Hao;Xu, Yanchao;Long, Ruicai;Kang, Junmei;Yang, Qingchuan;Chen, Lin
关键词:Alfalfa; GWAS; RNA-seq; Root rot