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Featured researches published by Tingting Zhang.


Molecular Biology Reports | 2018

Transcriptomic analysis and discovery of genes in the response of Arachis hypogaea to drought stress

Xiaobo Zhao; Chunjuan Li; Shubo Wan; Tingting Zhang; Caixia Yan; Shihua Shan

The peanut (Arachis hypogaea) is an important crop species that is threatened by drought stress. The genome sequences of peanut, which was officially released in 2016, may help explain the molecular mechanisms that underlie drought tolerance in this species. We report here a gene expression profiling of A. hypogaea to gain a global view of its drought resistance. Using whole-transcriptome sequencing, we analysed differential gene expression in response to drought stress in the drought-resistant peanut cultivar J11. Pooled samples obtained at 6, 12, 18, 24, and 48xa0h were compared with control samples at 0xa0h. In total, 51,554 genes were found, including 49,289 known genes and 2265 unknown genes. We identified 224 differentially expressed transcription factors, 296,335 SNPs and 28,391 InDELs. In addition, we detected significant differences in the gene expression profiles of the treatment and control groups. After comparing the two groups, 4648 genes were identified. An in-depth analysis of the data revealed that a large number of genes were associated with drought stress, including transcription factors and genes involved in photosynthesis–antenna proteins, carbon metabolism and the citrate cycle. The results of this study provide insights into the diverse mechanisms that underlie the successful establishment of drought resistance in the peanut, thereby facilitating the identification of important genes in the peanut related to drought management. Transcriptome analysis based on RNA-Seq is a powerful approach for gene discovery and molecular marker development for this species.


Plant Physiology and Biochemistry | 2017

Mining, identification and function analysis of microRNAs and target genes in peanut (Arachis hypogaea L.)

Tingting Zhang; Shuhao Hu; Caixia Yan; Chunjuan Li; Xiaobo Zhao; Shubo Wan; Shihua Shan

In the present investigation, a total of 60 conserved peanut (Arachis hypogaea L.) microRNA (miRNA) sequences, belonging to 16 families, were identified using bioinformatics methods. There were 392 target gene sequences, identified from 58 miRNAs with Target-align software and BLASTx analyses. Gene Ontology (GO) functional analysis suggested that these target genes were involved in mediating peanut growth and development, signal transduction and stress resistance. There were 55 miRNA sequences, verified employing a poly (A) tailing test, with a success rate of up to 91.67%. Twenty peanut target gene sequences were randomly selected, and the 5 rapid amplification of the cDNA ends (5-RACE) method were used to validate the cleavage sites of these target genes. Of these, 14 (70%) peanut miRNA targets were verified by means of gel electrophoresis, cloning and sequencing. Furthermore, functional analysis and homologous sequence retrieval were conducted for target gene sequences, and 26 target genes were chosen as the objects for stress resistance experimental study. Real-time fluorescence quantitative PCR (qRT-PCR) technology was applied to measure the expression level of resistance-associated miRNAs and their target genes in peanut exposed to Aspergillus flavus (A.xa0flavus) infection and drought stress, respectively. In consequence, 5 groups of miRNAs & targets were found accorded with the mode of miRNA negatively controlling the expression of target genes. This study, preliminarily determined the biological functions of some resistance-associated miRNAs and their target genes in peanut.


Physiological and Molecular Plant Pathology | 2013

Cloning and characterization of an NBS-LRR resistance gene from peanuts (Arachis hypogaea L.)

Chunjuan Li; Yu Liu; Yi-xiong Zheng; Caixia Yan; Tingting Zhang; Shihua Shan


The Journal of Agricultural Science | 2012

Cloning, Expression and Characterization of PnLOX2 Gene Related to Aspergillus flavus-resistance from Peanut (Arachis hypogaea L.) Seed Coat

Caixia Yan; Chunjuan Li; Shubo Wan; Tingting Zhang; Yi-xiong Zheng; Shihua Shan


The Journal of Agricultural Science | 2012

Cloning and Characterization of a NBS-LRR Resistance Gene from Peanut (Arachis hypogaea L.?

Yi-xiong Zheng; Chunjuan Li; Yu Liu; Caixia Yan; Tingting Zhang; Weijian Zhuang; Shihua Shan


Archive | 2012

Method for screening low enrichment cadmium peanut varieties by fluorescent quantitative PCR technique

Shihua Shan; Chunjuan Li; Shubo Wan; Caibin Wang; Caixia Yan; Zhiyi Yang; Tingting Zhang


Archive | 2010

Method for detecting peanut metallothionein mRNA expression level by real-time quantitive PCR

Shihua Shan; Chunjuan Li; Shubo Wan; Caixia Yan; Zhiyi Yang; Tingting Zhang


Archive | 2009

Genomic DNA extraction method of peanut leaf blades

Shihua Shan; Shubo Wan; Chunjuan Li; Tingting Zhang; Caixia Yan


Archive | 2009

Indoor detection method for resistance of peanuts to infection of Aspergillus flavus

Shihua Dan; Qing Kong; Chunjuan Li; Gao Chen; Tingting Zhang; Caixia Yan


Archive | 2011

Method for prolonging storage period of peanut seeds and improving seed vigor

Shubo Wan; Shihua Dan; Caixia Yan; Chunjuan Li; Tingting Zhang

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Yu Liu

Ocean University of China

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Chen Yang

Northeast Agricultural University

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Weijian Zhuang

Fujian Agriculture and Forestry University

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