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Featured researches published by Yueying Liu.


Planta | 2008

Expressing a gene encoding wheat oxalate oxidase enhances resistance to Sclerotinia sclerotiorum in oilseed rape (Brassica napus).

Xiangbai Dong; Ruiqin Ji; Xuelan Guo; Simon J. Foster; Hong Chen; Caihua Dong; Yueying Liu; Qiong Hu; Shengyi Liu

Sclerotinia sclerotiorum causes a highly destructive disease in oilseed rape (Brassica napus). Oxalic acid (OA) secreted by the pathogen is a key pathogenicity factor. Oxalate oxidase (OXO) can oxidize OA into CO2 and H2O2. In this study, we show that transgenic oilseed rape (sixth generation lines) constitutively expressing wheat (Triticum aestivum) OXO displays considerably increased OXO activity and enhanced resistance to S. sclerotiorum (with up to 90.2 and 88.4% disease reductions compared with the untransformed parent line and a resistant control, respectively). Upon application of exogenous OA, the pH values in transgenic plants were maintained at levels slightly lower than 5.58 measured prior to OA treatment, whereas the pH values in untransformed plants decreased rapidly and were markedly lower than 5.63 measured prior to OA treatment. Following pathogen inoculation, H2O2 levels were higher in transgenic plants than in untransformed plants. These results indicate that the enhanced resistance of the OXO transgenic oilseed rape to Sclerotinia is probably mediated by OA detoxification. We believe that enhancing the OA metabolism of oilseed rape in this way will be an effective strategy for improving resistance to S. sclerotiorum.


Frontiers in Plant Science | 2016

Vacuolar Iron Transporter BnMEB2 Is Involved in Enhancing Iron Tolerance of Brassica napus

Wei Zhu; Rong Zuo; Rongfang Zhou; Junyan Huang; Minqiang Tang; Xiaohui Cheng; Yueying Liu; Chaobo Tong; Yang Xiang; Caihua Dong; Shengyi Liu

Iron toxicity is a nutrient disorder that severely affects crop development and yield in some soil conditions. Vacuolar detoxification of metal stress is an important strategy for plants to survive and adapt to this adverse environment. Vacuolar iron transporter (VIT) members are involved in this process and play essential roles in iron storage and transport. In this study, we identified a rapeseed VIT gene BnMEB2 (BnaC07g30170D) homologs to Arabidopsis MEB2 (At5g24290). Transient expression analysis revealed that BnMEB2 was localized to the vacuolar membrane. Q-PCR detection showed a high expression of BnMEB2 in mature (60-day-old) leaves and could be obviously induced by exogenous iron stress in both roots and leaves. Over-expressed BnMEB2 in both Arabidopsis wild type and meb2 mutant seedlings resulted in greatly improved iron tolerability with no significant changes in the expression level of other VIT genes. The mutant meb2 grew slowly and its root hair elongation was inhibited under high iron concentration condition while BnMEB2 over-expressed transgenic plants of the mutant restored the phenotypes with apparently higher iron storage in roots and dramatically increased iron content in the whole plant. Taken together, these results suggested that BnMEB2 was a VIT gene in rapeseed which was necessary for safe storage and vacuole detoxification function of excess iron to enhance the tolerance of iron toxicity. This research sheds light on a potentially new strategy for attenuating hazardous metal stress from environment and improving iron biofortification in Brassicaceae crops.


Archive | 2006

Rape transgenic method

Shengyi Liu; Xuelan Guo; Caihua Dong; Yueying Liu


Archive | 2012

Preparation method and application of brassica napus BnPABP5-3 promoter

Shengyi Liu; Lei Shi; Caihua Dong; Yueying Liu


Archive | 2012

Method for preparing cabbage type rape BnPABP3 promoter and application thereof

Shengyi Liu; Lei Shi; Caihua Dong; Junyan Huang; Yueying Liu


Archive | 2011

PDF1 gene for controlling plant pollen fertility, and preparation method and application thereof

Shengyi Liu; Zhuoyu Wang; Caihua Dong; Zhenbo Li; Junyan Huang; Yueying Liu


Archive | 2010

Brassica napus disease-resistance related gene BnERF56 and application thereof

Shengyi Liu; Chenggang Wang; Junyan Huang; Caihua Dong; Yueying Liu


Archive | 2012

Method for preparing promoter of Brassica napus BnPABP2 and application thereof

Shengyi Liu; Lei Shi; Caihua Dong; Junyan Huang; Yueying Liu


Archive | 2011

Brassica napus resistance-related gene (i)BnWRERF50(/i) and preparation method as well as application

Shengyi Liu; Chenggang Wang; Rong Zhou; Caihua Dong; Junyan Huang; Yueying Liu


Archive | 2011

Rape BnPABP 5 gene and application of promoter thereof

Shengyi Liu; Lei Shi; Caihua Dong; Junyan Huang; Yueying Liu

Collaboration


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Caihua Dong

Crops Research Institute

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Shengyi Liu

Crops Research Institute

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Lei Shi

Crops Research Institute

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Junyan Huang

Crops Research Institute

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Xuelan Guo

Crops Research Institute

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Chaobo Tong

Crops Research Institute

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Minqiang Tang

Crops Research Institute

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Rong Zuo

Crops Research Institute

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Rongfang Zhou

Crops Research Institute

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Ruiqin Ji

Crops Research Institute

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