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Featured researches published by Haoqiang Yu.


Gene | 2014

Interaction between abscisic acid receptor PYL3 and protein phosphatase type 2C in response to ABA signaling in maize

Ying-Ge Wang; Haoqiang Yu; Yuan-Yuan Zhang; Cong-Xian Lai; Yue-Hui She; Wan-Chen Li; Feng-Ling Fu

Abscisic acid (ABA) is a ubiquitous hormone that regulates plant growth, development and responses to environmental stresses. In recent researches, pyrabactin resistance 1-like protein (PYL) and protein phosphatase type 2C (PP2C) were identified as the direct receptor and the second component of ABA signaling pathway, respectively. However, a lot of PYL and PP2C members were found in Arabidopsis and several other plants. Some of them were found not to be involved in ABA signaling. Because of the complex diversity of the genome, few documents have been available on the molecular details of the ABA signal perception system in maize. In the present study, we conducted bioinformatics analysis to find out the candidates (ZmPYL3 and ZmPP2C16) of the PYL and PP2C members most probably involved in ABA signaling in maize, cloned their encoding genes (ZmPYL3 and ZmPP2C16), verified the interaction between these two proteins in response to exogenous ABA induction by yeast two-hybrid assay and bimolecular fluorescence complementation, and investigated the expression patterns of these two genes under the induction of exogenous ABA by real-time fluorescence quantitative PCR. The results indicated that the ZmPYL3 and ZmPP2C16 proteins interacted in vitro and in vivo in response to the induction of exogenous ABA. The downregulated expression of the ZmPYL3 gene and the upregulated expression of the ZmPP2C16 gene are responsive to the induction of exogenous ABA. The ZmPYL3 and ZmPP2C16 proteins are the most probable members of the receptors and the second components of ABA signaling pathway, respectively.


Gene | 2014

Heterologous expression of antifreeze protein gene AnAFP from Ammopiptanthus nanus enhances cold tolerance in Escherichia coli and tobacco.

Longqun Deng; Haoqiang Yu; Yanping Liu; Pei-Pei Jiao; Shu-Feng Zhou; Su-Zhi Zhang; Wan-Chen Li; Feng-Ling Fu

Antifreeze proteins are a class of polypeptides produced by certain animals, plants, fungi and bacteria that permit their survival under the subzero environments. Ammopiptanthus nanus is the unique evergreen broadleaf bush endemic to the Mid-Asia deserts. It survives at the west edge of the Tarim Basin from the disappearance of the ancient Mediterranean in the Tertiary Period. Its distribution region is characterized by the arid climate and extreme temperatures, where the extreme temperatures range from -30 °C to 40 °C. In the present study, the antifreeze protein gene AnAFP of A. nanus was used to transform Escherichia coli and tobacco, after bioinformatics analysis for its possible function. The transformed E. coli strain expressed the heterologous AnAFP gene under the induction of isopropyl β-D-thiogalactopyranoside, and demonstrated significant enhancement of cold tolerance. The transformed tobacco lines expressed the heterologous AnAFP gene in response to cold stress, and showed a less change of relative electrical conductivity under cold stress, and a less wilting phenotype after 16 h of -3 °C cold stress and thawing for 1h than the untransformed wild-type plants. All these results imply the potential value of the AnAFP gene to be used in genetic modification of commercially important crops for improvement of cold tolerance.


Plant Growth Regulation | 2017

A betaine aldehyde dehydrogenase gene from Ammopiptanthus nanus enhances tolerance of Arabidopsis to high salt and drought stresses

Haoqiang Yu; Xia-Yu Zhou; Ying-Ge Wang; Shu-Feng Zhou; Feng-Ling Fu; Wan-Chen Li

Glycine betaine functions as an osmotic protectant in response of plant to abiotic stresses. In higher plants, the betaine aldehyde dehydrogenase (BADH) catalyzes the key step of glycine betaine biosynthesis. A lot of effort has been paid to cloning and heterologous expression of the BADH genes from different plants. However, different phenotypes were observed from the transgenic plants. Diversity of subcellular location and functions was found among the members of the BADH family. Our previous report described the cloning of an AnBADH gene from xerophyte Ammopiptanthus nanus and preliminary functional validation in Escherichia coli. In the present study, the function of the AnBADH gene for abiotic tolerance was further characterized by quantitative real time PCR and heterologous expression in Arabidopsis mutant. The results showed that the endogenous expression of the AnBADH gene was strongly induced by the treatments of high salt, dehydration, abscisic acid, heat, and cold. The heterologous expression of the AnBADH gene significantly enhanced tolerance of the Arabidopsis mutant to high salt and drought stresses. Under the stress conditions, the transgenic lines exhibited a more robust root system and a larger fresh weight, higher content of glycine betaine and proline, higher relative water content, lower relative electrolyte leakage and malondialdehyde content, compared to the untransformed mutant. These results suggest that the AnBADH gene encodes a functional betaine aldehyde dehydrogenase, and plays a critical role in the adaptation of A. nanus to its harsh habitat. It provides one more choice for genetic improvement of commercial crops for abiotic tolerance.


Plant Growth Regulation | 2018

Cloning and characterization of BES1/BZR1 transcription factor genes in maize

Haoqiang Yu; Wenqi Feng; Fuai Sun; Yuan-Yuan Zhang; JingTao Qu; Bingliang Liu; Fengzhong Lu; Lin Yang; Feng-Ling Fu; Wan-Chen Li

BES1/BZR1 transcription factors regulate the expression of brassinosteroid-responsive genes and play vital roles in plant growth and response to environmental stimuli. Their regulation mechanism has been well elucidated in genetic model plants. The complexity of the maize genome might lead to evolutional and functional diversification among the members of the ZmBES1/BZR1 gene family. In the present study, eleven members of the ZmBES1/BZR1 gene family were identified by genome-wide analysis, and ten of their open reading frames were successfully amplified. Bioinformatics analysis showed that these genes unevenly distributed on seven of the ten maize chromosomes, with three pairs of segmental duplication genes, and their encoding proteins shared similar motif composition and conserved domains. The expression of the ZmBES1/BZR1 genes displayed much differential in different organs and developmental stages, as well as in response to abscisic acid and light signal. Subcellular localization confirmed that most of them localized in nucleus. More attention should be paid to ZmBES1/BZR1-4 and -5, which were clustered into a distinguished phylogenetic clade, and ZmBES1/BZR1-2 and -7, which localized in chloroplast. The results indicated their similar but not identical functions in brassinosteroid-mediated signaling pathway and would be helpful in further functional study of the ZmBES1/BZR1s in maize.


Gene | 2014

Heterologous expression of betaine aldehyde dehydrogenase gene from Ammopiptanthus nanus confers high salt and heat tolerance to Escherichia coli.

Haoqiang Yu; Ying-Ge Wang; Taiming Yong; Yue-Hui She; Feng-Ling Fu; Wan-Chen Li


Plant Molecular Biology | 2018

Interaction network of core ABA signaling components in maize

Ying-Ge Wang; Feng-Ling Fu; Haoqiang Yu; Tao Hu; Yuan-Yuan Zhang; Yi Tao; Jian-Kang Zhu; Yang Zhao; Wan-Chen Li


Physiology and Molecular Biology of Plants | 2018

Isolation and identification of a vegetative organ-specific promoter from maize

Haoqiang Yu; Muhammad Hayder Bin Khalid; Fengzhong Lu; Fuai Sun; JingTao Qu; Bingliang Liu; Wan-Chen Li; Feng-Ling Fu


Archive | 2012

Gene sequence of sulphation enzyme with cofactor molybdenum from Ammopiptanthus nanus Cheng f. and clone method of gene sequence

Wan-Chen Li; Taiming Yong; Feng-Ling Fu; Yanping Liu; Haoqiang Yu; Longqun Deng


Archive | 2012

Gene sequence of I-type tonoplast pyrophosphatase from ammopiptanthus nanus and cloning method thereof

Wan-Chen Li; Taiming Yong; Feng-Ling Fu; Yanping Liu; Haoqiang Yu; Longqun Deng


Archive | 2012

Gene sequence of phospholipase D alpha1 from ammopiptanthus nanus and cloning method thereof

Wan-Chen Li; Taiming Yong; Feng-Ling Fu; Yanping Liu; Haoqiang Yu; Longqun Deng

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Feng-Ling Fu

Sichuan Agricultural University

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Wan-Chen Li

Sichuan Agricultural University

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Longqun Deng

Sichuan Agricultural University

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Taiming Yong

Sichuan Agricultural University

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Ying-Ge Wang

Sichuan Agricultural University

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Shu-Feng Zhou

Sichuan Agricultural University

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Yuan-Yuan Zhang

Sichuan Agricultural University

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Bingliang Liu

Sichuan Agricultural University

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Fengzhong Lu

Sichuan Agricultural University

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Fuai Sun

Sichuan Agricultural University

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