Tobacco Arabinogalactan Protein NtEPc Can Promote Banana (Musa AAA) Somatic Embryogenesis

文献类型: 外文期刊

第一作者: Shu, H.

作者: Shu, H.;Li, J.;Jin, Z.;Chang, S.;Shu, H.;Li, J.;Jin, Z.;Chang, S.;Shu, H.;Xu, L.;Li, Z.;Chang, S.

作者机构:

关键词: Arabinogalactan protein;NtEPc;Banana (Musa AAA);Somatic embryogenesis

期刊名称:APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY ( 影响因子:2.926; 五年影响因子:2.685 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Banana is an important tropical fruit worldwide. Parthenocarpy and female sterility made it impossible to improve banana varieties through common hybridization. Genetic transformation for banana improvement is imperative. But the low rate that banana embryogenic callus was induced made the transformation cannot be performed in many laboratories. Finding ways to promote banana somatic embryogenesis is critical for banana genetic transformation. After tobacco arabinogalactan protein gene NtEPc was transformed into Escherichia coli (DE3), the recombinant protein was purified and filter-sterilized. A series of the sterilized protein was added into tissue culture medium. It was found that the number of banana immature male flowers developing embryogenic calli increased significantly in the presence of NtEPc protein compared with the effect of the control medium. Among the treatments, explants cultured on medium containing 10 mg/l of NtEPc protein had the highest chance to develop embryogenic calli. The percentage of lines that developed embryogenic calli on this medium was about 12.5 %. These demonstrated that NtEPc protein can be used to promote banana embryogenesis. This is the first paper that reported that foreign arabinogalactan protein (AGP) could be used to improve banana somatic embryogenesis.

分类号: Q5

  • 相关文献

[1]Ultrastructural changes and the distribution of arabinogalactan proteins during somatic embryogenesis of banana (Musa spp. AAA cv. 'Yueyoukang 1'). Yang, Xiao,Zou, Ru,Chen, Houbin,Xu, Chunxiang,Lin, Guimei,Samaj, Jozef.

[2]Differential gene expression of cotton cultivar CCRI24 during somatic embryogenesis. Xiuming Wu,Fuguang Li#2;,Chaojun Zhang,Chuanliang Liu,Xueyan Zhang.

[3]Construction of a high-density linkage map and mapping quantitative trait loci for somatic embryogenesis using leaf petioles as explants in upland cotton (Gossypium hirsutum L.). Zhenzhen Xu,Chaojun Zhang,Xiaoyang Ge,Ni Wang,Kehai Zhou,Xiaojie Yang,Zhixia Wu,Xueyan Zhang,Chuanliang Liu,Zuoren Yang,Changfeng Li,Kun Liu,Zhaoen Yang,Yuyuan Qian,Fuguang Li.

[4]Effects of kanamycin on tissue culture and somatic embryogenesis in cotton. Bao-Hong Zhang,Fang Liu,Zhi-Hong Liu,Hong-Mei Wang,Chang-Bing Yao.

[5]Plant regeneration via somatic embryogenesis in cotton. Bao-Hong Zhang,Fang Liu,Chang-Bing Yao. 2000

[6]Highly efficient plant regeneration through somatic embryogenesis in 20 elite commercial cotton (Gossypium hirsutum L.) cultivars. Baohong Zhang,Qinglian Wang,Fang Liu,Kunbo Wang,Taylor P. Frazier. 2009

[7]Histological changes and differences in activities of some antioxidant enzymes and hydrogen peroxide content during somatic embryogenesis of Musa AAA cv. Yueyoukang 1. Jiang, Shuang,Chen, Houbin,Xu, Chunxiang,Xie, Lijun,Li, Huaping,Lin, Guimei,Takac, Tomas,Samaj, Jozef,Samaj, Jozef. 2012

[8]Three MADS-box genes of Hevea brasiliensis expressed during somatic embryogenesis and in the laticifer cells. Li, Hui-Liang,Wang, Ying,Guo, Dong,Peng, Shi-Qing,Tian, Wei-Min. 2011

[9]Changes in H2O2 content and antioxidant enzyme gene expression during the somatic embryogenesis of Larix leptolepis. Zhang, Shou-gong,Yang, Wen-hua,Wei, Hua-li,Qi, Li-wang,Han, Su-ying,Zhang, Ming. 2010

[10]Agrobacterium tumefaciens-mediated transformation of poinsettia, Euphorbia pulcherrima, with virus-derived hairpin RNA constructs confers resistance to Poinsettia mosaic virus. Clarke, Jihong Liu,Spetz, Carl,Haugslien, Sissel,Xing, Shaochen,Dees, Merete W.,Blystad, Dag-Ragnar,Xing, Shaochen,Dees, Merete W.,Moe, Roar. 2008

[11]Improvement of Agrobacterium-mediated transformation efficiency and transgenic plant regeneration of Vitis vinifera L. by optimizing selection regimes and utilizing cryopreserved cell suspensions. Li, P,Hanania, U,Sahar, N,Mawassi, M,Gafny, R,Sela, I,Tanne, E,Perl, A.

[12]Efficient somatic embryogenesis in sugar beet (Beta vulgaris L.) breeding lines. Zhang, Chun-Lai,Chen, Dong-Fang,Kubalakova, Marie,Zhang, Jian,Scott, Nigel W.,Elliott, Malcolm C.,Slater, Adrian,Zhang, Chun-Lai,Chen, Dong-Fang,Kubalakova, Marie,Zhang, Jian.

[13]Transcriptome profiling and digital gene expression by deep sequencing in early somatic embryogenesis of endangered medicinal Eleutherococcus senticosus Maxim.. Tao, Lei,Zhao, Yue,Wu, Ying,Wang, Qiuyu,You, Xiangling,Yuan, Hongmei,Zhao, Lijuan,Guo, Wendong.

[14]Transcriptome Profiling Reveals Auxin and Cytokinin Regulating Somatic Embryogenesis in Different Sister Lines of Cotton Cultivar CCRI24. Xu Zhenzhen. 2013

[15]Phenotypic variation in cotton (Gossypium hirsutum L.) regenerated plants. Bao-Hong Zhang,Qing-Lian W ang,Fang Liu.

[16]Application of Somatic Embryogenesis in Woody Plants. Guan, Yuan,Li, Shui-Gen,Fan, Xiao-Fen,Su, Zhen-Hong. 2016

[17]The Influence of Plant Growth Regulators and Light Quality on Somatic Embryogenesis in China Rose (Rosa chinensis Jacq.). Chen, Ji-Ren,Wu, Lian,Hu, Bo-Wen,Yi, Xing,Deng, Zi-Niu,Xiong, Xing-Yao,Liu, Rong,Deng, Zi-Niu,Xiong, Xing-Yao,Xiong, Xing-Yao. 2014

[18]Somatic Embryogenesis and Plant Regeneration from Cotyledons of Immature Embryo of Chinese Jujube (Zizyphus jujuba Mill.). Wang, G.,Li, X.,Chen, Q.,Tian, J.. 2011

[19]Somatic Embryogenesis from Immature Cotyledons of Chinese Jujube. Wang Guoping,Li Xiaomei,Chen Qiufang,Tian Jianbao. 2010

[20]Plant regeneration via somatic embryogenesis from root explants of Hevea brasiliensis. Zhou, Quan-Nan,Huang, Tian-Dai,Li, Wei-Guo,Sun, Ai-Hua,Dai, Xue-Mei,Li, Zhe,Jiang, Ze-Hai. 2010

作者其他论文 更多>>