Comprehensive analyses of the annexin (ANN) gene family in Brassica rapa, Brassica oleracea and Brassica napus reveals their roles in stress response
文献类型: 外文期刊
第一作者: He, Xin
作者: He, Xin;Liao, Li;Xie, Sai;Yao, Min;Xie, Pan;Liu, Wei;Kang, Yu;Huang, Luyao;Wang, Mei;Qian, Lunwen;Hua, Wei;Liu, Zhongsong;Guan, Chunyun;Guan, Mei;Liu, Zhongsong;Guan, Chunyun;Guan, Mei;Hua, Wei
作者机构:
期刊名称:SCIENTIFIC REPORTS ( 影响因子:4.379; 五年影响因子:5.133 )
ISSN: 2045-2322
年卷期: 2020 年 10 卷 1 期
页码:
收录情况: SCI
摘要: Annexins (ANN) are a multigene, evolutionarily conserved family of calcium-dependent and phospholipid-binding proteins that play important roles in plant development and stress resistance. However, a systematic comprehensive analysis of ANN genes of Brassicaceae species (Brassica rapa, Brassica oleracea, and Brassica napus) has not yet been reported. In this study, we identified 13, 12, and 26 ANN genes in B. rapa, B. oleracea, and B. napus, respectively. About half of these genes were clustered on various chromosomes. Molecular evolutionary analysis showed that the ANN genes were highly conserved in Brassicaceae species. Transcriptome analysis showed that different group ANN members exhibited varied expression patterns in different tissues and under different (abiotic stress and hormones) treatments. Meanwhile, same group members from Arabidopsis thaliana, B. rapa, B. oleracea, and B. napus demonstrated conserved expression patterns in different tissues. The weighted gene coexpression network analysis (WGCNA) showed that BnaANN genes were induced by methyl jasmonate (MeJA) treatment and played important roles in jasmonate (JA) signaling and multiple stress response in B. napus.
分类号:
- 相关文献
作者其他论文 更多>>
-
From White to Reddish-Brown: The Anthocyanin Journey in Stropharia rugosoannulata Driven by Auxin and Genetic Regulators
作者:Wang, Mei;Song, Tingting;Jin, Qunli;Zhang, Zuofa;Shen, Yingyue;Lv, Guoying;Fan, Lijun;Feng, Weilin;Qu, Yingmin;Wang, Mengyu;Cai, Weiming;Shen, Meng;Lou, Heqiang
关键词:pileipellis color; SrDRF2; anthocyanin; SrNF-YA; auxin
-
Acid-regulated the cascade aggregation of mixed-charge ultra-small iron oxide nanoparticles to selectively amplify the imaging signal of the tumor
作者:Wang, Qingzhen;Wang, Mei;Wang, Qingzhen;Liu, Tao;Peng, Yufeng;Bai, Ru;Liu, Qiaolin;Li, Shengmin;Li, Zhenzhen;Zhou, Huige;Shi, Kejian;Li, Shengmin;Zhang, Yi;Zhang, Jiakun;Zhou, Huige;Wang, Qingzhen
关键词:Ultra-small iron oxide; PH-responsiveness; Self-assembly; MRI; Tumor fluorescence imaging
-
LACCASE35 enhances lignification and resistance against Pseudomonas syringae pv. actinidiae infection in kiwifruit
作者:Li, Yawei;Zhang, Dongle;Wang, Xiaojie;Wu, Shunyuan;Liu, Pu;Wang, Xiaojie;Zhou, Rongrong;Fang, Zemin;Bai, Fuxi;Li, Rui;Liu, Wei;Huang, Lili
关键词:
-
Multi-scale structural influence of starch on their interaction of caffeic acid and starch after freeze-thaw: Taking potato starch and lotus seed starch as examples
作者:Zhao, Renjie;Li, Chi;Liu, Qiannan;Liu, Wei;Zhang, Liang;Zhang, Zhenzhen;Zhao, Ruixuan;Hu, Honghai;Yao, Jia;Li, Chi
关键词:Caffeic acid; Starch; Interaction
-
Influence of the 'painless' TRP channel on temperature-dependent escape and humidity-related pupation in Bactrocera dorsalis larvae
作者:Zhang, Yan;Zhang, Panpan;Luo, Zhicai;Wang, Qi;Zhang, Jie;Yang, Minghuan;Yan, Shanchun;Liu, Wei;Wang, Guirong
关键词:Bactrocera dorsalis; Bdorpainless; CRISPR/Cas9; extreme environments; escape behavior
-
Generation and propagation of high fecundity gene edited fine wool sheep by CRISPR/Cas9
作者:Zhang, Xuemei;Qiu, Meiyu;Han, Bing;Liao, Li;Peng, Xinrong;Lin, Jiapeng;Zhang, Ning;Hai, Lati;Liang, Long;Ma, Yila;Li, Wenrong;Liu, Mingjun;Zhang, Xuemei;Qiu, Meiyu;Han, Bing;Liao, Li;Peng, Xinrong;Lin, Jiapeng;Zhang, Ning;Hai, Lati;Liang, Long;Ma, Yila;Li, Wenrong;Liu, Mingjun
关键词:BMPRIB; CRISPR/Cas 9; Fine wool sheep; Gene edited
-
Multienzyme cascade for synthesis of hydroxytyrosol via engineered Escherichia coli
作者:Xiong, Tianzhen;Li, Xinmeng;Yue, Huidie;Liu, Junling;Bai, Dingyuan;Li, Wei;Fan, Guangyan;Xiong, Tianzhen;Li, Xinmeng;Yue, Huidie;Liu, Junling;Bai, Dingyuan;Li, Wei;Fan, Guangyan;Xiong, Tianzhen;Liu, Wei;Xiong, Tianzhen
关键词:Hydroxytyrosol;
Escherichia coli ; Cascade reaction; Whole cell biotransformation