您好,欢迎访问黑龙江省农业科学院 机构知识库!

Characterization and Functional Analysis of Pyrabactin Resistance-Like Abscisic Acid Receptor Family in Rice

文献类型: 外文期刊

作者: Tian, Xiaojie 2 ; Wang, Zhenyu 2 ; Li, Xiufeng 2 ; Lv, Tianxiao 2 ; Liu, Huazhao 2 ; Wang, Lizhi; Niu, Hongbin 1 ; Bu, 1 ;

作者机构: 1.Henan Agr Univ, Natl Engn Res Ctr Wheat, Zhengzhou 450002, Peoples R China

2.Chinese Acad Sci, Northeast Inst Geog & Agroecol, Key Lab Soybean Mol Design Breeding, Harbin 150081, Peoples R China

3.Chinese Acad Sci, Grad Univ, Beijing 100049, Peoples R China

4.Heilongjiang Acad Land Reclamat Sci, Rice Res In

关键词: Rice;ABA receptors;PYL;Drought stress;Cold stress;Seed germination

期刊名称:RICE ( 影响因子:4.783; 五年影响因子:5.23 )

ISSN: 1939-8425

年卷期: 2015 年 8 卷

页码:

收录情况: SCI

摘要: Background: Abscisic acid (ABA) plays crucial roles in regulating plant growth and development, especially in responding to abiotic stress. The pyrabactin resistance-like (PYL) abscisic acid receptor family has been identified and widely characterized in Arabidopsis. However, PYL families in rice were largely unknown. In the present study, 10 out of 13 PYL orthologs in rice (OsPYL) were isolated and investigated. Results: Quantitative reverse transcription-polymerase chain reaction (qRT-PCR) analysis showed that expression of OsPYL genes is tissue-specific and display differential response to ABA treatment, implying their functional diversity. The interaction between 10 OsPYL members and 5 protein phosphatase 2C in rice (OsPP2C) members was investigated in yeast two-hybrid and tobacco transient expression assays, and an overall interaction map was generated, which was suggestive of the diversity and complexity of ABA-sensing signaling in rice. To study the biological function of OsPYLs, two OsPYL genes (OsPYL3 and OsPYL9) were overexpressed in rice. Phenotypic analysis of OsPYL3 and OsPYL9 transgenic rice showed that OsPYLs positively regulated the ABA response during the seed germination. More importantly, the overexpression of OsPYL3 and OsPYL9 substantially improved drought and cold stress tolerance in rice. Conclusion: Taken together, we comprehensively uncovered the properties of OsPYLs, which may be good candidates for the improvement of abiotic stress tolerance in rice.

  • 相关文献

[1]Alkalinity and salinity tolerance during seed germination and early seedling stages of three alfalfa (Medicago sativa L.) cultivars. Zhang, Huihui,Li, Xin,Nan, Xu,Sun, Guangyu,Sun, Minglong,Cai, Dunjiang,Gu, Siyu,Nan, Xu,Sun, Guangyu,Sun, Minglong,Cai, Dunjiang. 2017

[2]Microarray analysis of gene expression profiles of pig muscle in response to cold stress. Zhang, Dongjie,Liu, Di,Wang, Liang,Wang, Wentao,He, Xinmiao,Yang, Guowei. 2012

[3]Gene expression profile analysis of pig muscle in response to cold stress. Zhang Dong-jie,Liu Di,Wang Liang,Wang Wen-tao,He Xin-miao,Yang Guo-wei. 2017

[4]Effects of Cold Stress on Porcine Fibroblasts HSP90 mRNA Expression. Li, Zhongqiu,Ma, Jianzhang,Liu, Chunlong,Li, Zhongqiu,Ma, Hong,Guo, Zhenhua,Fu, Bo,Wang, Liang,Sun, Jinyan,Peng, Fugang,Liu, Di. 2012

[5]Transcriptome profile and differentially expressed genes analysis in winter wheat under cold stress conditions. Xie, Dongwei,Li, Zhuofu,Xie, Dongwei. 2015

[6]Identification of differentially expressed genes in sunflower (Helianthus annuus) leaves and roots under drought stress by RNA sequencing. Liang, Chunbo,Huang, Xutang,Liang, Chunbo,Wang, Wenjun,Wang, Jing,Ma, Jun,Li, Cen,Zhou, Fei,Zhang, Shuquan,Yu, Ying,Zhang, Liguo,Huang, Xutang,Li, Weizhong. 2017

[7]Effects of Exogenous Chitosan on Physiological Characteristics of Potato Seedlings Under Drought Stress and Rehydration. Jiao, Zhili,Li, Yong,Lu, Dianqiu,Li, Juanjuan,Xu, Xiaoyan,Wang, Jingying,Li, Hui. 2012

[8]The complete plastid genome of the wild rice species Oryza brachyantha (Poaceae). Liu, Fengqi,Han, Guiqing,Guo, Changhong,Liu, Fengqi,Han, Guiqing,Tembrock, Luke R.,Wu, Zhiqiang,Sun, Cheng. 2016

[9]Overexpression of a heading Chinese cabbage ICE1 gene confers freezing tolerance in transgenic rice. Xiang, Dianjun,Man, Lili,Chai, Yongshan,Sun, Yuyou,Zhang, Taizhong,Wei, Caiqiang,Xie, Zhong,Li, Hongliang,Zhang, Weiwei,Liu, Dan,Cheng, Dujuan,Wang, Xiaodong,Liu, Chunguang.

[10]INTERACTIVE EFFECTS OF SALINITY AND PROLINE ON RICE AT THE ULTRASTRUCTURAL LEVEL. Sha, Han-Jing,Hu, Wen-Cheng,Jia, Yan,Liu, Hua-Long,Wang, Jing-Guo,Zou, De-Tang,Zhao, Hong-Wei,Chang, Hui-Lin. 2017

[11]Identification and Fine Mapping of qCTH4, a Quantitative Trait Loci Controlling the Chlorophyll Content from Tillering to Heading in Rice (Oryza sativa L.). Jiang, Shukun,Zhang, Xijuan,Xu, Zhengjin,Chen, Wenfu. 2012

[12]Stress-responsive gene RsICE1 from Raphanus sativus increases cold tolerance in rice. Man, Lili,Xiang, Dianjun,Wang, Lina,Qi, Guochao,Zhang, Weiwei,Wang, Xiaodong.

[13]Pasting properties, grain-filling characteristics and allelic variation linked to the grain quality in diverse rice. Chen, Likai,Yan, Xianchen,Wang, Liping,Gao, Weiwei,Yang, Jing,Chen, Siping,Wang, Hui,Chen, Zhiqiang,Guo, Tao,Zhou, Jiyong,Guo, Zhenhua.

[14]Effects of extracted Si from rice hull ash on rice seed germination and growth. Li, Yumei,Wang, Genlin,Yu, Hongjiu,Guo, Wei,Wei, Dan,Yan, Xiufeng,Li, Yumei,Li, Yumei.

[15]Mycotoxin Contamination of Rice in China. Sun, Xiang Dong,Su, Ping,Shan, Hong,Sun, Xiang Dong,Su, Ping,Shan, Hong.

作者其他论文 更多>>