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Featured researches published by Ying Zhai.


Gene | 2013

Isolation and molecular characterization of GmERF7, a soybean ethylene-response factor that increases salt stress tolerance in tobacco

Ying Zhai; Ying Wang; Yanjie Li; Tingting Lei; Fan Yan; Liantai Su; Xiaowei Li; Yan Zhao; Xin Sun; Jingwen Li; Qingyu Wang

Ethylene-response factors (ERFs) play an important role in regulating gene expression in plant responses to biotic and abiotic stresses. In this study, a new ERF transcription factor, GmERF7, was isolated from soybean. Sequence analysis showed that GmERF7 contained an AP2/ERF domain with 58 amino acids, two putative nuclear localization signal (NLS) domains, an acidic amino acid-rich transcriptional activation domain and a conserved N-terminal motif [MCGGAI(I/L)]. The expression of GmERF7 was induced by drought, salt, methyl jasmonate (MeJA), ethylene (ETH) and abscisic acid (ABA) treatments. However, the expression of GmERF7 decreased under cold treatment. GmERF7 localized to the nucleus when transiently expressed in onion epidermal cells. Furthermore, GmERF7 protein bound to the GCC-box element in vitro and activated the expression of the β-glucuronidase (GUS) reporter gene in tobacco leaves. Activities of GmERF7 promoter (GmERF7P) upregulated in tobacco leaves with 10h drought, salt and ETH treatments. However, activities of GmERF7P decreased with 10h cold and ABA treatments. Overexpression of GmERF7 in tobacco plants led to higher levels of chlorophyll and soluble carbohydrates and a lower level of malondialdehyde compared with wild-type tobacco plants under salt stress conditions, which indicated that GmERF7 enhanced salt tolerance in transgenic plants.


Gene | 2014

A novel MYB transcription factor, GmMYBJ1, from soybean confers drought and cold tolerance in Arabidopsis thaliana.

Liantai Su; Jingwen Li; De-Quan Liu; Ying Zhai; Hai-Jun Zhang; Xiaowei Li; Qinglin Zhang; Ying Wang; Qingyu Wang

MYB transcription factors play important roles in the regulation of plant growth, developmental metabolism and stress responses. In this study, a new MYB transcription factor gene, GmMYBJ1, was isolated from soybean [Glycine max (L.)]. The GmMYBJ1 cDNA is 1296bp in length with an open reading frame (ORF) of 816 bp encoding for 271 amino acids. The amino acid sequence displays similarities to the typical R2R3 MYB proteins reported in other plants. Transient expression analysis using the GmMYBJ1-GFP fusion gene in onion epidermal cells revealed that the GmMYBJ1 protein is targeted to the nucleus. Quantitative RT-PCR analysis demonstrated that GmMYBJ1 expression was induced by abiotic stresses, such as drought, cold, salt and exogenous abscisic acid (ABA). Compared to wild-type (WT) plants, transgenic Arabidopsis overexpressing GmMYBJ1 exhibited an enhanced tolerance to drought and cold stresses. These results indicate that GmMYBJ1 has the potential to be utilized in transgenic breeding lines to improve abiotic stress tolerance.


Biologia Plantarum | 2013

Isolation and characterization of a novel transcriptional repressor GmERF6 from soybean

Ying Zhai; Jingwen Li; Xiunan Li; Tingting Lei; Fan Yan; Y. Zhao; Yanjie Li; Liantai Su; Yiqian Wang; Qingyu Wang

A new ethylene response factor (ERF), GmERF6, was isolated from soybean. Protein sequence alignment of GmERF6 revealed an AP2/ERF domain, two putative nuclear localization signals (NLSs) and an ERF-associated amphiphilic repression (EAR) motif. Real-time quantitative PCR analysis revealed that the expression of GmERF6 was differentially induced in soybean seedlings by drought, salt, cold, salicylic acid, ethylene, abscisic acid and methyl jasmonate. Transient expression experiments demonstrated that GmERF6 functions as a transcriptional repressor to downregulate the transcriptional levels of the reporter gene and repress the activated ability of other transcriptional activator. Transgenic Arabidopsis lines constitutively expressing GmERF6 showed an increased tolerance to drought compared to wild-type plants.


Plant Molecular Biology Reporter | 2012

Isolation and Activity Analysis of a Seed-Abundant soyAP1 Gene Promoter from Soybean

Yan Zhao; Shuli Shao; Xiaowei Li; Ying Zhai; Qinglin Zhang; Dandan Qian; Qingyu Wang

The soybean aspartic proteinase gene soyAP1 has previously been shown to be expressed specifically in soybean seeds. To investigate the expression pattern and active cis-elements of the soyAP1 promoter, the 1,650-bp 5′-upstream genomic DNA fragment named PS-552 was isolated by PCR walking. Sequence analysis revealed that this fragment contains a series of motifs related to seed-specific promoters and some pollen-expressed elements. Stable expression in transgenic Arabidopsis thaliana showed that the PS-552 promoter can regulate beta-glucuronidase gene accumulation in mature seeds at much higher levels than other tissues, especially vegetative tissues, and exhibits similar activity to the 35S promoter in mature seeds. These results show that the PS-552 promoter is a highly active promoter controlling downstream gene expression, mainly in mature seeds. The 5′-end deletion studies of PS-552 showed that the cis-elements of CAAACAC, AACA, E-box, and CCAA play a role in increasing the seed-specific activity. The proportion of mature seed activity and flower activity was increased as the deletion fragment lengthened, indicating that seed cis-elements possibly lessen or suppress the effect of pollen-expressed elements, increasing the activity of PS-552 in mature seeds.


Plant Cell Tissue and Organ Culture | 2017

Overexpression of soybean GmERF9 enhances the tolerance to drought and cold in the transgenic tobacco

Ying Zhai; Shuli Shao; Wei Sha; Yan Zhao; Jun Zhang; Weiwei Ren; Chuang Zhang

Ethylene response factors (ERFs) are widespread in plants, which are widely involved in plant response to biotic and abiotic stress. In this research, a soybean gene, GmERF9, was identified and the function was characterized. The results showed that GmERF9 contained a typical AP2/ERF binding domain and a putative nuclear localization signal sequence. The real-time fluorescence quantitative PCR (qPCR) revealed that the expression of GmERF9 could be induced by ethylene (ET), abscisic acid (ABA), drought, salt and cold stresses. GmERF9 protein could specifically bind to the GCC-box and activate the expression of the reporter gene in the yeast cells and tobacco leaves. Overexpression of GmERF9 enhanced the expression of pathogenesis-related (PR) genes, including PR1, PR2, Osmotin (PR5), and SAR8.2. Also, the overexpression of GmERF9 increased the accumulation of proline and soluble carbohydrate, and decreased the accumulation of malondialdehyde under drought and cold stresses in the transgenic tobacco compared to the wild type (WT) tobacco, which indicated that GmERF9 enhanced the tolerance to drought and cold stresses in the transgenic tobacco. In summary, the function of GmERF9 is involved in the response to environmental stresses for plants, which can be used as a candidate gene for genetic engineering of crops.


Gene | 2013

A R2R3-MYB transcription factor, GmMYB12B2, affects the expression levels of flavonoid biosynthesis genes encoding key enzymes in transgenic Arabidopsis plants.

Xiaowei Li; Jingwen Li; Ying Zhai; Yan Zhao; Xu Zhao; Hai-Jun Zhang; Liantai Su; Ying Wang; Qingyu Wang


Acta Physiologiae Plantarum | 2015

The soybean gene, GmMYBJ2, encodes a R2R3-type transcription factor involved in drought stress tolerance in Arabidopsis thaliana

Liantai Su; Ying Wang; De-Quan Liu; Xiaowei Li; Ying Zhai; Xin Sun; Xu-Yan Li; Yajing Liu; Jingwen Li; Qingyu Wang


Archive | 2011

Seed-specific promoter separated from soybean and applications thereof

Qingyu Wang; Qinglin Zhang; Yan Zhao; Ying Wang; Jingwen Li; Xiaowei Li; Ying Zhai; Yan Zhang; Hao Cheng


Archive | 2011

Soybean MYB (v-myb avian myeloblastosis viral oncogene homolog) transcription factor as well as coding gene and application thereof

Qingyu Wang; Xiaowei Li; Ying Wang; Jingwen Li; Yan Zhang; Ying Zhai; Qinglin Zhang; Dandan Qian; Hai-Jun Zhang; Fan Yan


Archive | 2012

Transcription factor ERF related to soybean stress, coding gene thereof and application of coding gene

Qingyu Wang; Ying Zhai; Jingwen Li; Ying Wang; Fan Yan; Tingting Lei; Liantai Su; Yanjie Li; Xinsheng Zhang; Hongyu Wang

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