Genome-wide identification and analysis of FK506-binding protein family gene family in strawberry (Fragaria x ananassa)

文献类型: 外文期刊

第一作者: Leng, Xiangpeng

作者: Leng, Xiangpeng;Liu, Dan;Sun, Xin;Li, Yu;Mu, Qian;Zhu, Xudong;Li, Pengyu;Fang, Jinggui;Zhao, Mizhen

作者机构:

关键词: Strawberry;FKBPs;Bioinformatics analysis;Sequence express analysis

期刊名称:GENE ( 影响因子:3.688; 五年影响因子:3.329 )

ISSN: 0378-1119

年卷期: 2014 年 534 卷 2 期

页码:

收录情况: SCI

摘要: The FK506 binding proteins (FKBPs) are abundant and ubiquitous proteins belonging to the large peptidyl-prolylcis-trans isomerase superfamily. FKBPs are known to be involved in many biological processes including hormone signaling, plant growth, and stress responses through a chaperone or an isomerization of proline residues during protein folding. The availability of complete strawberry genome sequences allowed the identification of 23 FKBP genes by HMMER and blast analysis. Chromosome scaffold locations of these FKBP genes in the strawberry genome were determined and the protein domain and motif organization of FaFKBPs analyzed. The phylogenetic relationships between strawberry FKBPs were also assessed. The expression profiles of FaFKBPs genes results revealed that most FaFKBPs were expressed in all tissues, while a few FaFKBPs were specifically expressed in some of the tissues. These data not only contribute to some better understanding of the complex regulation of the strawberry FKBP gene family, but also provide valuable information for further research in strawberry functional genomics. (C) 2013 Elsevier B.V. All rights reserved.

分类号:

  • 相关文献

[1]Genome-wide analysis and environmental response profiling of the FK506-binding protein gene family in maize (Zea mays L.). Yu, Yanli,Zhang, Hui,Li, Wencai,Mu, Chunhua,Zhang, Fajun,Wang, Liming,Meng, Zhaodong.

[2]GhNAC12, a neutral candidate gene, leads to early aging in cotton (Gossypium hirsutum L). Fengli Zhao,JianhuiMa,Libei Li,Shuli Fan,Yaning Guo,Meizhen Song,Hengling Wei,Chaoyou Pang,Shuxun Yu. 2016

[3]Bioinformatic prediction and analysis of glucolipid metabolic regulation by miR-34a in Megalobrama amblycephala. Miao, Ling-Hong,Pan, Wen-Jing,Ge, Xian-Ping,Miao, Ling-Hong,Lin, Yan,Ge, Xian-Ping,Liu, Bo,Ren, Ming-Chun,Zhou, Qun-Lan,Miao, Ling-Hong,Pan, Wen-Jing,Lin, Yan,Ge, Xian-Ping,Liu, Bo,Ren, Ming-Chun,Zhou, Qun-Lan.

[4]Molecular cloning and expression analysis of the STAT1 gene in the water buffalo (Bubalus bubalis). Deng, Tingxian,Pang, Chunying,Zhu, Peng,Yang, Bingzhuang,Liang, Xianwei,Deng, Tingxian,Pang, Chunying,Zhu, Peng,Yang, Bingzhuang,Liang, Xianwei,Liao, Biyun,Zhang, Ming.

[5]Toxoplasma gondii: Bioinformatics analysis, cloning and expression of a novel protein TgIMP1. Bai, Yang,He, Shenyi,Zhao, Guanghui,Chen, Lin,Shi, Na,Zhou, Huaiyu,Cong, Hua,Zhao, Qunli,Bai, Yang,He, Shenyi,Zhao, Guanghui,Chen, Lin,Shi, Na,Zhu, Xing-Quan,Zhu, Xing-Quan.

[6]Bioinformatic analysis of gene encoding odorant binding protein (OBP) 1, OBP2, and chemosensory proteins in Grapholita molesta. Zhao, Zhiguo,Liu, Baoling,Rong, Erhua,Zhang, Lijun,Guo, Yanqiong,Ma, Ruiyan,Li, Jie,Kong, Weina.

[7]Cloning and Characterization of miRNAs and Their Targets, Including a Novel miRNA-Targeted NBS-LRR Protein Class Gene in Apple (Golden Delicious). Ma, Chao,Lu, You,Bai, Songlin,Zhang, Wennan,Duan, Xuwei,Meng, Dong,Wang, Zhigang,Li, Tianzhong,Wang, Zhigang,Zhou, Zongshan,Wang, Aide. 2014

[8]Cloning, Expression, and Characterization of a Milk-Clotting Aspartic Protease Gene (Po-Asp) from Pleurotus ostreatus. Yin, Chaomin,Ma, Aimin,Zheng, Liesheng,Chen, Liguo,Tan, Qi,Shang, Xiaodong.

[9]Cloning and Expression of Two Soluble Acid Invertase Gene Isoforms from Rhododendron. He Lisi,Su Jiale,Liu Xiaoqing,Li Chang,Chen Shangping. 2014

[10]Cloning, identification, and bioinformatics analysis of a putative aquaporin TsAQP from Trichinella spiralis. Cui, J. M.,Zhang, N. Z.,Li, W. H.,Yan, H. B.,Fu, B. Q.,Fu, B. Q.. 2015

[11]Identification and expression analysis of WRKY transcription factor genes in response to fungal pathogen and hormone treatments in apple (Malus domestica). Lui, Shuai,Zhu, Longming,Sha, Renhe,Qu, Shenchun,Cai, Binhua,Wang, Sanhong,Luo, Changguo. 2017

[12]Transcriptome profiling of muscle by RNA-Seq reveals significant differences in digital gene expression profiling between Angus and Luxi cattle. Liu, G. F.,Cheng, H. J.,You, W.,Song, E. L.,Liu, X. M.,Wan, F. C..

[13]Bioinformatics Analysis of NBS-LRR Encoding Resistance Genes in Setaria italica. Zhao, Yan,Weng, Qiaoyun,Song, Jinhui,Ma, Hailian,Yuan, Jincheng,Liu, Yinghui,Dong, Zhiping.

[14]Genome-Wide Identification and Analysis of the Type-B Authentic Response Regulator Gene Family in Peach (Prunus persica). Zeng, Jingjue,Zhu, Xudong,Haider, Muhammad S.,Zhang, Cheng,Wang, Chen,Wang, Xicheng.

[15]Circular Multi-Storied Culture Mode among Strawberry, Mushroom and Leaf Vegetables in Greenhouse. Zhong, Chuanfei,Zhang, Yuntao,Wang, Guixia,Dong, Jing,Chang, Linlin,Wang, Lina. 2011

[16]Genetically Transformed Strawberry (Fragaria x ananassa Duch.) with Cold-Inducible Transcription Factor CBF1. Jin, W. M.,Dong, J.,Liu, Y.,Zhang, Y. P.,Pan, Q. H.. 2009

[17]Study of Volatile Compound Contents in a Progeny Issued from Cross between 'Camarosa' and 'Benihoppe'. Wang, Guixia,Zhang, Yuntao,Dong, Jing,Zhong, Chuanfei,Chang, Linlin,Wang, Lina. 2011

[18]Inheritance of Fruit Characters in the Strawberry (Fragaria xananassa Duch.). Wang, Z. W.,Zhao, M. Z.,Yuan, J.,Qian, Y. M.,Wang, J.. 2014

[19]RdreB1BI enhances drought tolerance by activating AQP-related genes in transgenic strawberry. Gu, Xianbin,Gao, Zhihong,Yan, Yichao,Qiao, Yushan,Gu, Xianbin,Chen, Yahua,Wang, Xiuyun,Gu, Xianbin. 2017

[20]Study on the Production and Consumption of Strawberry in Beijing. Wang, L. N.,Zhang, Y. T.,Zhong, C. F.,Wang, G. X.,Dong, J.,Chang, L. L.. 2014

作者其他论文 更多>>