您好,欢迎访问北京市农林科学院 机构知识库!

Genome-wide analysis and identification of HAK potassium transporter gene family in maize (Zea mays L.)

文献类型: 外文期刊

作者: Zhang, Zhongbao 1 ; Zhang, Jiewei 1 ; Chen, Yajuan 1 ; Li, Ruifen 1 ; Wang, Hongzhi 1 ; Wei, Jianhua 1 ;

作者机构: 1.Beijing Acad Agr & Forestry Sci, Beijing Agrobiotechnol Res Ctr, Beijing 100097, Peoples R China

关键词: Maize;Potassium transporter;Cis-elements;Phylogenetic analysis

期刊名称:MOLECULAR BIOLOGY REPORTS ( 影响因子:2.316; 五年影响因子:2.357 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: The high-affinity K+ (HAK) transporter gene family constitutes the largest family that functions as potassium transporter in plant and is important for various cellular processes of plant life. In spite of their physiological importance, systematic analyses of ZmHAK genes have not yet been investigated. In this paper, we indicated the isolation and characterization of ZmHAK genes in whole-genome wide by using bioinformatics methods. A total of 27 members (ZmHAK1-ZmHAK27) of this family were identified in maize genome. ZmHAK genes were distributed in all the maize 10 chromosomes. These genes expanded in the maize genome partly due to tandem and segmental duplication events. Multiple alignment and motif display results revealed major maize ZmHAK proteins share all the three conserved domains. Phylogenetic analysis indicated ZmHAK family can be divided into six subfamilies. Putative cis-elements involved in Ca2+ response, abiotic stress adaption, light and circadian rhythms regulation and seed development were observed in the promoters of ZmHAK genes. Expression data mining suggested maize ZmHAK genes have temporal and spatial expression pattern. In all, these results will provide molecular insights into the potassium transporter research in maize.

  • 相关文献

[1]Isolation, structural analysis, and expression characteristics of the maize (Zea mays L.) hexokinase gene family. Zhang, Zhongbao,Zhang, Jiewei,Chen, Yajuan,Li, Ruifen,Wang, Hongzhi,Ding, Liping,Wei, Jianhua,Zhang, Zhongbao,Zhang, Jiewei,Chen, Yajuan,Li, Ruifen,Wang, Hongzhi,Ding, Liping,Wei, Jianhua.

[2]Isolation, structural analysis, and expression characteristics of the maize TIFY gene family. Zhang, Zhongbao,Li, Xianglong,Han, Meng,Wu, Zhongyi,Zhang, Zhongbao,Li, Xianglong,Han, Meng,Wu, Zhongyi,Yu, Rong,Han, Meng,Wu, Zhongyi.

[3]Phylogenetic Analysis and Expression Patterns of the MAPK Gene Family in Wheat (Triticum aestivum L.). Lian Wei-wei,Tang Yi-miao,Gao Shi-qing,Zhang Zhao,Zhao Xin,Zhao Chang-ping,Lian Wei-wei. 2012

[4]Comprehensive analyses of the annexin gene family in wheat. Xu, Lei,Tang, Yimiao,Gao, Shiqing,Hong, Lin,Wang, Weiwei,Fang, Zhaofeng,Li, Xueyin,Ma, Jinxiu,Quan, Wei,Sun, Hui,Wang, Yongbo,Liao, Xiangzheng,Gao, Jiangang,Zhang, Fengting,Zhao, Changping,Li, Xia,Li, Lei,Li, Xia,Li, Lei,Xu, Lei,Su, Shichao. 2016

[5]Can ITS sequence data identify fungal endophytes from cultures? A case study from Rhizophora apiculata. Doilom, M.,Manawasinghe, I. S.,Jayawardena, R. S.,Doilom, M.,Tibpromma, S.,Hyde, K. D.,Doilom, M.,Manawasinghe, I. S.,Jayawardena, R. S.,Tibpromma, S.,Hongsanan, S.,Hyde, K. D.,Jeewon, R.,Meepol, W.,Lumyong, S.,Doilom, M.,Hyde, K. D.. 2017

[6]Next-generation sequencing of the mitochondrial genome of Dolichovespula panda (Hymenoptera: Vespidae) with a phylogenetic analysis of Vespidae. Fan, Xu-Lei,Tan, Qing-Qing,Tan, Jiang-Li,Fan, Xu-Lei,Gong, Ya-Jun,Chen, Peng-Yan,Wei, Shu-Jun. 2017

[7]Genome-wide identification, characterization, and expression analysis of the SWEET gene family in cucumber. Hu Li-ping,Zhang Feng,Song Shu-hui,Tang Xiao-wei,Xu Hui,Liu Guang-min,Wang Ya-gin,He Hong-ju,Hu Li-ping,He Hong-ju. 2017

[8]Molecular characterization of Chinese Hop stunt viroid isolates reveals a new phylogenetic group and possible cross transmission between grapevine and stone fruits. Guo, Rui,Mu, Lingxiao,Yang, Yuanai,Li, Shifang,Zhou, Ying,Wang, Hongqing. 2012

[9]Genome-wide characterization of JASMONATE-ZIM DOMAIN transcription repressors in wheat (Triticum aestivum L.). Wang, Yukun,Bai, Jianfang,Wang, Peng,Duan, Wenjing,Yuan, Shaohua,Yuan, Guoliang,Zhang, Fengting,Zhang, Liping,Zhao, Changping,Wang, Yukun,Bai, Jianfang,Wang, Peng,Duan, Wenjing,Yuan, Shaohua,Yuan, Guoliang,Zhang, Fengting,Zhang, Liping,Zhao, Changping,Qiao, Linyi,Wang, Peng,Duan, Wenjing. 2017

[10]The complete chloroplast genome sequence of the endangered Chinese endemic tree Corylus fargesii. Hu, Guanglong,Cheng, Lili,Lan, Yanping,Cao, Qingchang,Huang, Wugang,Wang, Xueqiang.

[11]The complete chloroplast genome sequence of Corylus chinensis Franch. Hu, Guanglong,Cheng, Lili,Lan, Yanping,Cao, Qingchang,Huang, Wugang.

[12]Analysis of Genetic Diversity and Population Structure of Maize Landraces from the South Maize Region of China. Liu Zhi-zhai,Guo Rong-hua,Wang Rong-huan,Shi Yun-su,Song Yan-chun,Wang Tian-yu,Li Yu,Liu Zhi-zhai,Cai Yi-lin,Guo Rong-hua,Cao Mo-ju,Zhao Jiu-ran,Wang Feng-ge,Wang Rong-huan. 2010

[13]A maize bundle sheath defective mutation mapped on chromosome 1 between SSR markers umc1395 and umc1603. Pan Yu,Chen Xu-qing,Xie Hua,Li Xiang-long,Zhang Xiao-dong,Han Li-xin,Yang Feng-ping,Xue Jing,Zhang Li-quan,Pan Yu,Deng Lei. 2015

[14]Construction of a multicontrol sterility system for a maize male-sterile line and hybrid seed production based on the ZmMs7 gene encoding a PHD-finger transcription factor. Zhang, Danfeng,Liu, Shuangshuang,Rao, Liqun,Wan, Xiangyuan,Zhang, Danfeng,Wu, Suowei,An, Xueli,Xie, Ke,Dong, Zhenying,Zhu, Taotao,Wan, Xiangyuan,Xu, Liwen,Zhao, Jiuran,Zhang, Danfeng,Zhou, Yan,Fang, Wen,Liu, Shensi,Liu, Shuangshuang,Li, Jinping. 2018

[15]Nitrogen Status Diagnosis by Using Digital Photography Analysis for Organic Fertilized Maize. Sun Qin-ping,Li Ji-jin,Zou Guo-yuan,Xiang Cheng-cai,Luo Yi-ming,Liu Ben-sheng. 2010

[16]Development and characterization of a core set of SSR markers for fingerprinting analysis of Chinese maize varieties. Wang, Feng-Ge,Tian, Hong-Li,Zhao, Jiu-Ran,Yi, Hong-Mei,Wang, Lu,Song, Wei. 2011

[17]Evaluation of the genetic diversity and genome-wide linkage disequilibrium of Chinese maize inbred lines. Wang, Ming,Zhang, Xiaobo,Zheng, Yonglian,Zhao, Jiuran,Song, Wei. 2011

[18]Comparative Proteomics of Contrasting Maize, Genotypes Provides Insights into Salt-Stress Tolerance Mechanisms. Luo, Meijie,Zhao, Yanxin,Wang, Yuandong,Shi, Zi,Zhang, Panpan,Zhang, Yunxia,Song, Wei,Zhao, Jiuran. 2018

[19]THREE-DIMENSIONAL VISUALIZATION OF VASCULAR BUNDLES IN STEM NODES OF MAIZE. Zhang, Ying,Du, Jianjun,Guo, Xinyu,Yan, Weiping,Zhao, Chunjiang. 2017

[20]Spatial variation of attainable yield and fertilizer requirements for maize at the regional scale in China. Xu, Xinpeng,Xu, Xinpeng,He, Ping,Zhang, Jiajia,Zhou, Wei,He, Ping,Pampolino, Mirasol F.,Johnston, Adrian M..

作者其他论文 更多>>