Cloning of TaCYP707A1 Gene that Encodes ABA 8 '-Hydroxylase in Common Wheat (Triticum aestivum L.)

文献类型: 外文期刊

第一作者: Zhang Chun-li

作者: Zhang Chun-li;He Xin-yao;He Zhong-hu;Wang Lin-hai;Xia Xian-chun;Zhang Chun-li;He Zhong-hu

作者机构:

关键词: Triticum aestivum L.;homeologous cloning;CYP707A1 gene;ABA 8 '-hydroxylase

期刊名称:AGRICULTURAL SCIENCES IN CHINA ( 影响因子:0.82; 五年影响因子:0.997 )

ISSN: 1671-2927

年卷期: 2009 年 8 卷 8 期

页码:

收录情况: SCI

摘要: The plant hormone abscisic acid (ABA) regulates many important physiological and developmental processes in plants. The objective of this study was to clone the ABA 8'-hydroxylase gene in common wheat. In the present study, we used the cDNA sequence of barley HvCYP707A1 gene (GenBank accession no. AB239299) as a probe for BLAST search against the common wheat (Triticum aestivum L.) EST database in GenBank. All wheat ESTs sharing high similarity with the reference gene were subjected to contig assembly. Primers were designed based on the constructed contigs to clone the wheat CYP707A1 gene, designated as TaCYP707A1. The genomic DNA sequence of TaCYP707A1 gene comprised five exons and four introns, with a size of 2 225 bp. The corresponding cDNA sequence of TaCYP707A1 was 1 737 bp, containing an open reading frame (ORF) of 1 431 bp, a 42-bp 5'-untranslated region (UTR) and a 264-bp 3'UTR, with 94.9% of identical sequences to HvCYP707A1 gene (AB239299). The neighbor joining tree indicated that the deduced amino acid sequences of TaCYP707A1 gene was highly similar to those of barley and rice. The TaCYP707A1 gene was located on chromosome 6BL using a set of Chinese Spring nullisomic-tetrasomic lines and ditelosomic line 6BS. These results will be of high importance in understanding of molecular mechanism of ABA catabolism.

分类号:

  • 相关文献

[1]Crop production, nitrogen recovery and water use efficiency in rice-wheat rotation as affected by non-flooded mulching cultivation (NFMC). Ai, YW,Zhang, FS,Lu, SH,Zeng, XZ,Fan, MS. 2005

[2]Characterization of the promoter of phosphate transporter TaPHT1.2 differentially expressed in wheat varieties. Miao, Jun,Sun, Jinghan,Liu, Dongcheng,Li, Bin,Zhang, Aimin,Li, Zhensheng,Tong, Yiping,Miao, Jun. 2009

[3]A genotypic difference in primary root length is associated with the inhibitory role of transforming growth factor-beta receptor-interacting protein-1 on root meristem size in wheat. He, Xue,Fang, Jingjing,Li, Jingjuan,Qu, Baoyuan,Ren, Yongzhe,Ma, Wenying,Zhao, Xueqiang,Li, Bin,Wang, Daowen,Li, Zhensheng,Tong, Yiping,Fang, Jingjing,Li, Jingjuan,Ren, Yongzhe. 2014

[4]QTL Mapping for Adult Plant Resistance to Powdery Mildew in Italian Wheat cv. Strampelli. Asad Muhammad Azeem,BAI Bin,LAN Cai-xia,YAN Jun,XIA Xian-chun,ZHANG Yong,HE Zhong-hu. 2013

[5]Molecular detection of high- and low-molecular-weight glutenin subunit genes in common wheat cultivars from 20 countries using allele-specific markers. H. Jin,J. Yan,R. J. Peña,X. C. Xia,A. Morgounov,L. M. Han,Y. Zhang,Z. H. He. 2011

[6]The gluten protein and interactions between components determine mixograph properties in an F-6 recombinant inbred line population in bread wheat. Yong Zhang,Jianwei Tang,Jun Yan,Yelun Zhang,Yan Zhang,Xianchun Xia,Zhonghu He. 2009

[7]A MALDI-TOF based analysis of high molecular weight glutenin subunits for wheat breeding. Liu, Li,Wang, Aili,Ma, Junhong,Lan, Ping,Ma, Wujun,Liu, Li,Xia, Xianchun,He, Zhonghu,Wang, Aili,Yan, Yueming,He, Zhonghu,Bekes, Frank,Appels, Rudi. 2009

[8]Uncovering Male Fertility Transition Responsive miRNA in a Wheat Photo-Thermosensitive Genic Male Sterile Line by Deep Sequencing and Degradome Analysis. Bai, Jian-Fang,Wang, Yu-Kun,Wang, Peng,Duan, Wen-Jing,Yuan, Shao-Hua,Sun, Hui,Yuan, Guo-Liang,Ma, Jing-Xiu,Wang, Na,Zhang, Feng-Ting,Zhang, Li-Ping,Zhao, Chang-Ping,Bai, Jian-Fang,Wang, Yu-Kun,Wang, Peng,Duan, Wen-Jing,Yuan, Shao-Hua,Sun, Hui,Yuan, Guo-Liang,Ma, Jing-Xiu,Wang, Na,Zhang, Feng-Ting,Zhang, Li-Ping,Zhao, Chang-Ping,Wang, Peng,Duan, Wen-Jing. 2017

[9]Virus-Based MicroRNA Silencing and Overexpressing in Common Wheat (Triticum aestivum L.). Jian, Chao,Chi, Qing,Wang, Shijuan,Ma, Meng,Liu, Xiangli,Zhao, Huixian,Han, Ran,Zhao, Huixian. 2017

[10]A dCAPS marker developed from a stress associated protein gene TaSAP7-B governing grain size and plant height in wheat. Wang Yi-xue,Li Run-zhi,Xu Qiao-fang,Chang Xiao-ping,Hao Chen-yang,Jing Rui-lian. 2018

[11]GENETIC ANALYSIS OF THE GRAIN PROTEIN CONTENT IN SOFT RED WINTER WHEAT (Triticum aestivum L.). Yao, Jinbao,Ma, Hongxiang,Yang, Xueming,Zhou, Miaoping,Yang, Dan. 2014

[12]Genetic analysis of plant height and its components in diallel crosses of bread wheat (Triticum aestivum L.). Yao, J. B.,Ma, H. X.,Ren, L. J.,Zhang, P. P.,Yang, X. M.,Yao, G. C.,Zhang, P.,Zhou, M. P.. 2011

[13]What can the Viviparous-1 gene tell us about wheat pre-harvest sprouting?. Xia, L. Q.,Yang, Y.,Ma, Y. Z.,Chen, X. M.,He, Z. H.,Roeder, M. S.,Jones, H. D.,Shewry, P. R.. 2009

[14]Agronomic improvements through the genetic and physiological regulation of nitrogen uptake in wheat (Triticum aestivum L.). Kong, Lingan,Wang, Fahong,Si, Jisheng,Lopez-bellido, Luis,Si, Jisheng,Maria Garcia-mina, Jose,Si, Jisheng. 2013

[15]Identification of SSR Marker Linked to a Major Dwarfing Gene in Common Wheat. Meng Ya-ning,Kang Su-hua,Lan Su-que,Li Xing-pu,Zhang Ye-lun,Bai Feng. 2013

[16]Evolutionary and functional study of the CDPK gene family in wheat (Triticum aestivum L.). Li, Ai-Li,Zhu, Yuan-Fang,Tan, Xiao-Mei,Wang, Xiang,Wei, Bo,Guo, Han-Zi,Zhang, Zeng-Lin,Chen, Xiao-Bo,Zhao, Guang-Yao,Kong, Xiu-Ying,Jia, Ji-Zeng,Mao, Long,Tan, Xiao-Mei.

[17]Differential responses of root and root hair traits of spring wheat genotypes to phosphorus deficiency in solution culture. Wang, Y. S.,Wang, Y. S.,Jensen, L. S.,Magid, J..

[18]Effects of the Vrn-D1b allele associated with facultative growth habit on agronomic traits in common wheat. Meng, Ling-zhi,Liu, Hong-wei,Yang, Li,Li, Hong-jie,Zhang, Hong-jun,Zhou, Yang,Mai, Chun-yan,Yu, Li-qiang.

[19]ABI-like transcription factor gene TaABL1 from wheat improves multiple abiotic stress tolerances in transgenic plants. Xu, Dong-Bei,Li, Xue-Yin,Chen, Yao-Feng,Gao, Shi-Qing,Ma, You-Zhi,Xu, Zhao-Shi,Li, Lian-Cheng,Chen, Ming,Gao, Shi-Qing,Zhao, Chang-Ping,Tang, Yi-Miao,Li, Xue-Yin.

[20]TaELF3-1DL, a homolog of ELF3, is associated with heading date in bread wheat. Wang, Jinping,Wang, Honggang,Liu, Shubing,Wang, Jinping,Wen, Weie,Hanif, Mamoona,Xia, Xianchun,Liu, Jindong,Yang, Li,Cao, Shuanghe,He, Zhonghu,He, Zhonghu.

作者其他论文 更多>>