Isolating the Mutator Transposable Element Insertional Mutant Gene mio16 of Maize Using Double Selected Amplification of Insertion Flanking Fragments (DSAIFF)

文献类型: 外文期刊

第一作者: Zhong Wen-juan

作者: Zhong Wen-juan;Zhang Mei-dong;Zheng Yong-lian;Gao You-jun;Yang Liu-qi;Wang Ming-chun;Yang Wen-peng

作者机构:

关键词: maize (Zea mays L.);Mutator (Mu) transposable element;Mu flanking fragments (MFFs);double selected amplification of insertion flanking fragments (DSAIFF);mio16

期刊名称:JOURNAL OF INTEGRATIVE AGRICULTURE ( 影响因子:2.848; 五年影响因子:2.979 )

ISSN: 2095-3119

年卷期: 2012 年 11 卷 10 期

页码:

收录情况: SCI

摘要: Mutator transposable element (Mu) has been used as an effective tool to clone maize (Zea mays L.) genes. One opaque endosperm mutant (mio16) was identified in a pool of Mu inserted mutants. A modified method, termed the double selected amplification of insertion flanking fragments (DSAIFF), was employed to isolate the Mu flanking fragments (MFFs) of mio16. The target site duplications (TSDs) isolated from the Msp I and Mse I digested MFFs had a same 9-bp sequence and were confirmed to be the flanking sequence of one identically inserted gene. Co-segregation analysis suggested that the MFFs were associated with the mutant opaque endosperm, and mio16 was mapped in silica onto the physical position ranged from 229 965 021 to 229 965 409 bp of the maize chromosome 4.09 bin. The full-length cDNA of the wild-type gene was obtained by an RT-PCR primer-scanning technique, and Mio16 was found to putatively encode a homolog of the Arabidopsis MAP3K delta-1 protein kinase. RT-PCR result the mRNA expression of mio16 region anchored by primers Mu20 and af276 was not interrupted by Mu insertion. Further researches will be done to elucidate how the expression of mio16 is alternated by Mu insertion.

分类号:

  • 相关文献

[1]Genetic analysis of maize kernel thickness by quantitative trait locus identification. Wen, G. Q.,Liu, X. H.,Liao, C. M.. 2015

[2]Quantitative trait locus analysis for ear height in maize based on a recombinant inbred line population. Zhang, H. M.,Wu, X. P.,Liu, X. H.,Sun, Y.,Li, Z. Q.,Zhang, H. M.,Wu, X. P.,Sun, Y.,Li, Z. Q.. 2014

[3]QTL mapping for ear length and ear diameter under different nitrogen regimes in maize. Zhang, Hongmei,Li, Runzhi,Zheng, Zuping,Li, Zhong,He, Chuan,Liu, Daihui,Luo, Yangchun,Zhang, Guoqin,Liu, Xiaohong,Tan, Zhenbo,Zhang, Hongmei. 2010

[4]Identification of Functional Genetic Variations Underlying Drought Tolerance in Maize Using SNP Markers. Hao, Zhuanfang,Li, Xinhai,Xie, Chuanxiao,Weng, Jianfeng,Li, Mingshun,Zhang, Degui,Liu, Lingling,Liu, Sisi,Zhang, Shihuang,Liang, Xiaoling. 2011

[5]Stability of QTL Across Environments and QTL-by-Environment Interactions for Plant and Ear Height in Maize. Zhang Yan,Li Yong-xiang,Wang Yang,Liu Zhi-zhai,Peng Bo,Tan Wei-wei,Wang Di,Shi Yun-su,Song Yan-chun,Wang Tian-yu,Li Yu,Liu Cheng,Sun Bao-cheng,Liu Zhi-zhai. 2010

[6]Effects of Shading at Different Stages After Anthesis on Maize Grain Weight and Quality at Cytology Level. Jia Shi-fang,Li Cong-feng,Dong Shu-ting,Zhang Ji-wang,Jia Shi-fang,Li Cong-feng. 2011

[7]Bulked Segregant RNA-seq Reveals Differential Expression and SNPs of Candidate Genes Associated with Waterlogging Tolerance in Maize. Du, Hewei,Wang, Hongwei,Ding, Shuangcheng,Zhang, Binglin,Tian, Xiaohai,Xu, Yunbi,Du, Hewei,Zhu, Jianxiong,Su, Hang,Huang, Ming,Luo, An,Wei, Shudong,Du, Hewei,Xu, Yunbi,Xu, Yunbi. 2017

[8]Cloning and transformation of SCMV CP gene and regeneration of transgenic maize plants showing resistance to SCMV strain MDB. Liu, Xiaohong,Tan, Zhenbo,He, Daowen,Li, Wanchen,Zhang, Hongmei. 2009

[9]Quantitative trait locus analysis for kernel width using maize recombinant inbred lines. Hui, G. Q.,Yang, H. P.,Luo, Q.,Zhang, H. M.,Wen, G. Q.,Liu, X. H.,Song, H. X.,Wen, L.,Sun, Y.,Zhang, H. M.. 2015

[10]Comparative transcriptome analysis of sweet corn seedlings under low-temperature stress. Mao, Jihua,Yu, Yongtao,Yang, Jing,Li, Gaoke,Li, Chunyan,Qi, Xitao,Wen, Tianxiang,Hu, Jianguang. 2017

[11]Overexpression of Vitreoscilla hemoglobin increases waterlogging tolerance in Arabidopsis and maize. Du, Hewei,Shen, Xiaomeng,Zhang, Zuxin,Du, Hewei,Huang, Min,Du, Hewei,Zhang, Zuxin,Huang, Yiqin. 2016

[12]Descriptive statistics and correlation analysis of agronomic traits in a maize recombinant inbred line population. Zhang, H. M.,Hui, G. Q.,Luo, Q.,Liu, X. H.,Sun, Y.,Zhang, H. M.,Hui, G. Q.,Luo, Q.,Sun, Y.. 2014

[13]Trends of grain yield and plant traits in Chinese maize cultivars from the 1950s to the 2000s. Ci, Xiaoke,Li, Mingshun,Xu, Jiashun,Lu, Zhenyu,Bai, Pengfei,Ru, Gaolin,Zhang, Degui,Li, Xinhai,Bai, Li,Xie, Chuanxiao,Hao, Zhuanfang,Zhang, Shihuang,Ci, Xiaoke,Dong, Shuting,Liang, Xiaoling.

[14]Both major and minor QTL associated with plant height can be identified using near-isogenic lines in maize. Ding, Xiaoyu,Liu, Zhizhai,Ding, Xiaoyu,Wu, Xun,Chen, Lin,Li, Chunhui,Shi, Yunsu,Song, Yanchun,Zhang, Dengfeng,Wang, Tianyu,Li, Yu,Li, Yong-Xiang,Wu, Xun.

[15]Introgression of the crtRB1 gene into quality protein maize inbred lines using molecular markers. Liu, Li,Ding, Meiling,Chen, Wei,Fan, Xingming,Jeffers, Daniel,Zhang, Yudong,Kang, Manjit S..

[16]SPEIPM-based research on drought impact on maize yield in North China Plain. Ming Bo,Guo Yin-qiao,Liu Guang-zhou,Li Shao-kun,Ming Bo,Tao Hong-bin,Wang Pu. 2015

[17]Identification of a major quantitative trait locus for resistance to maize rough dwarf virus in a Chinese maize inbred line X178 using a linkage map based on 514 gene-derived single nucleotide polymorphisms. Shi, Li-yu,Hao, Zhuan-fang,Weng, Jian-feng,Xie, Chuan-xiao,Liu, Chang-lin,Zhang, De-gui,Li, Ming-shun,Bai, Li,Li, Xin-hai,Zhang, Shi-huang.

[18]An analysis of the polymorphisms in a gene for being involved in drought tolerance in maize. Li, Liang,Hao, Zhuanfang,Li, Xinhai,Xie, Chuanxiao,Li, Mingshun,Zhang, Degui,Weng, Jianfeng,Su, Zhijun,Zhang, Shihuang,Liang, Xiaoling. 2011

[19]Maize residues, soil quality, and wheat growth in China. A review. Kong, Lingan. 2014

[20]ZmHO-1, a maize haem oxygenase-1 gene, plays a role in determining lateral root development. Han, Bin,Shen, Wen-Biao,Xie, Gui-Shui,Han, Bin,Xu, Sheng,Xie, Yan-Jie,Huang, Jing-Jing,Wang, Li-Juan,Yang, Zheng,Sun, Ya,Shen, Wen-Biao,Zhang, Chang-He. 2012

作者其他论文 更多>>