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Featured researches published by Zhai Wenxue.


Science China-life Sciences | 2006

Adapting rice anther culture to gene transformation and RNA interference

Chen Caiyan; Xiao Han; Zhang Wenli; Wang Aiju; Xia Zhihui; Li Xiaobing; Zhai Wenxue; Cheng Zhu-kuan; Zhu LiHuang

Anther culture offers a rapid method of generating homozygous lines for breeding program and genetic analysis. To produce homozygous transgenic lines of rice (Oryza sativa L.) in one step, we developed an efficient protocol of anther-callus-based transformation mediated by Agrobacterium after optimizing several factors influencing efficient transformation, including callus induction and Agrobacterium density for co-cultivation. Using this protocol, we obtained 145 independent green transformants from five cultivars of japonica rice by transformation with a binary vector pCXK1301 bearing the rice gene, Xa21 for resistance to bacterial blight, of which 140 were further confirmed by PCR and Southern hybridization analysis, including haploids (32.1%), diploids (62.1%) and mixoploids (7.5%). Fifteen diploids were found to be doubled haploids, which accounted for 10.7% of the total positive lines. Finally, by including 28 from colchicine induced or spontaneous diploidization of haploids later after transformation, a total of 43 doubled haploids (30.7%) of Xa21 transgenic lines were obtained. We also generated two RNAi transgenic haploids of the rice OsMADS2 gene, a putative redundant gene of OsMADS4 based on their sequence similarity, to investigate its possible roles in rice flower development by this method. Flowers from the two OsMADS2 RNAi transgenic haploids displayed obvious homeotic alternations, in which lodicules were transformed into palea/lemma-like tissues, whereas identities of other floral organs were maintained. The phenotypic alternations were proved to result from specific transcriptional suppression of OsMADS2 gene by the introduced RNAi transgene. The results confirmed that OsMADS2 is involved in lodicule development of rice flower and functionally redundant with OsMADS4 gene. Our results demonstrated that rice anther culture could be adapted to gene transformation and RNAi analysis in rice.


Archive | 2016

水稻转基因系CX8621中 Xa21 的整合和表达

高利芬; Gao Lifen; 刘鹏程; Liu Pengcheng; 夏志辉; Xia Zhihui; 赵纪莹; Zhao Jiying; 史佳楠; Shi Jianan; 江光怀; Jiang Guanghuai; 刘国振; Liu Guozhen; 翟文学; Zhai Wenxue

Agrobacterium tumefaciens-mediated transformation system has been widely applied. However, the function of target gene is affected by multiple factors. With this system, we obtained a transgenic rice line CX8621 carrying the bacterial blight resistance gene Xa21. In previous work, we have confirmed that it was selectable maker-free and vector backbone-free. And after 16 generations of breeding, it still maintained perfect resistance to bacterial blight disease. On this basis, we analyzed the integration and expression of Xa21 in CX8621 at the present study. First, based on the border sequences of plasmid pBXa21 and Xa21, we designed nested primers and assured the integrity of Xa21 in CX8621. Second, we cloned the flanking sequences and located Xa21 on chromosome 2 using improved Tail-PCR. Then we analyzed the expression pattern of Xa21 in several tissues and at different developmental stages by RT-PCR. The results show that Xa21 can be stably expressed in CX8621, agreeing well with the disease resistance response as reported previously. In addition, we detected the protein levels of XA21 in CX8621 with antibody of natural XA21 protein. Surprisingly, no XA21 protein was detected in the seeds of CX8621. Thus, the integration and expression analysis of Xa21 in CX8621 provided a part of scientific evidences for the safety assessment of genetically modified rice.


Archive | 2013

Identification method of rice bacterial leaf blight resistance and application of miRNA1318 genetic locus

Zhai Wenxue; Peng Hai; Jiang Guanghuai; Gao Lifen


Zhongguo Shuidao Kexue | 2016

イネでは選択マーカーXAがなかった21トランスジェニック系CXの8621の獲得と遺伝的解析【JST・京大機械翻訳】

Xia Zhihui; Liu Pengcheng; Gao Lifen; Liu Dongfeng; Jiang Li; Jiang Guanghuai; Guo Lequn; Zhai Wenxue


Shengwu Gongcheng Xuebao | 2016

イネトランスジェニック系CX8621におけるXA21の統合と発現【JST・京大機械翻訳】

Gao Lifen; Liu Pengcheng; Xia Zhihui; Zhao Jiying; Shi Jianan; Jiang Guanghuai; Liu Guozhen; Zhai Wenxue


Archive | 2016

Application of protein LMM5.1 in regulation of plant disease resistance and hypersensitive response

Jiang Guanghuai; Zhao Jiying; Zhai Wenxue


Archive | 2016

Qualitative and quantitative detection method for paddy microorganisms

Zhai Wenxue; Li Tiantian; Peng Hai; Zhou Junfei; Chen Lihong; Li Lun; Hu Changfeng; Gao Lifen; Zhang Weixiong; Zhang Jing; Lu Long; Chen Bin; Li Lili


Archive | 2016

Detection method for rice transgenic ingredients

Zhai Wenxue; Fang Zhiwei; Peng Hai; Zhou Junfei; Li Lun; Hu Changfeng; Li Tiantian; Gao Lifen; Zhang Weixiong; Zhang Jing; Lu Long; Chen Bin; Li Lili; Chen Lihong


Archive | 2016

Application of protein LMM5.4 in regulating disease resistance and hypersensitivity of plants

Zhai Wenxue; Zhao Jiying; Jiang Guanghuai


Archive | 2015

Promoter induced by rice bacterial blight germ and bacterial streak germ and application

Xia Zhihui; Zhao Tianlong; Jing Xiaohui; Zhai Wenxue; Li Mingrong; Huang Xi; He Chaozu

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Xia Zhihui

Chinese Academy of Sciences

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Liu Guozhen

Chinese Academy of Sciences

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Zhu LiHuang

Chinese Academy of Sciences

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Chen Caiyan

Chinese Academy of Sciences

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Cheng Zhu-kuan

Chinese Academy of Sciences

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Li Xiaobing

Chinese Academy of Sciences

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Wang Aiju

Chinese Academy of Sciences

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Xiao Han

Chinese Academy of Sciences

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Zhang Wenli

Chinese Academy of Sciences

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