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      • KCI등재

        Overexpression of a maize MYB48 gene confers drought tolerance in transgenic arabidopsis plants

        Yan Wang,Qianqian Wang,MingLi Liu,Chen Bo, Xi Wang,Qing Ma,Beijiu Cheng,Ronghao Cai 한국식물학회 2017 Journal of Plant Biology Vol.60 No.6

        MYBs are a vital family of transcription factorsthat play critical roles in plant development and stressresponse. However, knowledge concerning the functions ofMYBs in the non-model plants is still limited. In this study,we isolated a R1-type MYB gene from maize (Zea mays L.),designated as ZmMYB48. Quantitative RT-PCR analysisdemonstrated that ZmMYB48 expression was induced bydrought and ABA treatments. Subcellular localization analysisrevealed that ZmMYB48 protein was targeted to the nucleusin tobacco leaf epidermal cells. Transactivation assay in yeastdemonstrated that ZmMYB48 had transcriptional activationability. Heterologous overexpression of ZmMYB48 inArabidopsis remarkably improved plant tolerance to droughtstress, as determined through physiological analyses ofsurvival rate, relative water content, malonaldehyde content,relative electrolyte leakage and proline content. Moreover,overexpression of ZmMYB48 enhanced the expression ofstress/ABA-responsive genes such as P5CS1, RD22, RD29Band ABI1. In addition, ZmMYB48-overexpressing plantsaccumulated higher content of ABA than WT plants underdrought stress. These results demonstrate that ZmMYB48might act as a positive regulator that participates in thedrought stress response through ABA signalling.

      • KCI등재

        Heat transfer characteristics of single-ring closed PHP

        Lipeng Wang,Yue Cai,Qianqian Zhang,Sheng Shi,Lin Wu,Hongren Zhan 대한기계학회 2021 JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY Vol.35 No.4

        In order to solve the problem of heat dissipation in the current industry, a single ring closed pulsating heat pipe (PHP) was simulated in this paper. Firstly, the geometry model and numerical simulation model of single ring closed cycle PHP were established to obtain the temperature change rule of PHP and the position motion state of the vapor-plug and liquidcolumn in the tube. At the same time, a test bench was set up to verify the accuracy of the simulation results. The time series data of temperature and position of vapor-plug and liquidcolumn in PHP are extracted, and the chaotic characteristics of PHP are obtained. The results show that with the increase of the heating power, the motion state of the working fluid, the chaotic attractor and Lyapunov index have all changed significantly. The results provide a foundation for further research on the features and mechanism of PHP.

      • KCI등재

        Enhanced Biotransformation Productivity of Gamma-Decalactone from Ricinoleic Acid Based on the Expanded Vermiculite Delivery System

        ( Shimin Guan ),( Shaofeng Rong ),( Mengze Wang ),( Baoguo Cai ),( Qianqian Li ),( Shuo Zhang ) 한국미생물·생명공학회 2019 Journal of microbiology and biotechnology Vol.29 No.7

        Natural gamma-decalactone (GDL) produced by biotransformation is an essential food additive with a peach-like aroma. However, the difficulty of effectively controlling the concentration of the substrate ricinoleic acid (RA) in water limits the biotransformation productivity, which is a bottleneck for industrialization. In this study, expanded vermiculite (E-V) was utilized as a carrier of RA to increase its distribution in the medium. E-V and three commonly used organic compounds were compared with respect to their effects on the biotransformation process, and the mechanism was revealed. Scanning electron microscopy, Fourier transform infrared spectroscopy and thermogravimetric analysis indicated that RA was physically adsorbed onto the surface of and inside E-V instead of undergoing a chemical reaction, which increased the opportunity for interactions between microorganisms and the substrate. The highest concentration of GDL obtained in the medium with E-V was 6.2 g/l, which was 50% higher than that in the reference sample. In addition, the presence of E-V had no negative effect on the viability of the microorganisms. This study provides a new method for producing natural GDL through biotransformation on an industrial scale.

      • KCI등재

        Ganoderic acid A attenuates high‑fat‑diet‑induced liver injury in rats by regulating the lipid oxidation and liver inflammation

        Fuli Liu,Kejian Shi,Jiaojiao Dong,Zhousheng Jin,Yiquan Wu,Yaoyao Cai,Tingting Lin,Qianqian Cai,Le Liu,Yujian Zhang 대한약학회 2020 Archives of Pharmacal Research Vol.43 No.7

        Ganoderic Acid A (GA) has many pharmacologicaleffects such as anti-tumor, antibacterial, anti-inflammatory,and immunosuppressive effects. However, the protectiveeffect of GA on liver injury has not been reported. Thisstudy aimed to investigate the action of GA on insufficientmethionine and choline combined with high-fat diet (HFD)-induced non-alcoholic fatty liver disease (NAFLD) in rats. NAFLD model was established by insufficient methionineand choline combined with high fat feeding to rats. The levelsof Acetyl-CoA carboxylase, fatty acid synthase, sterolregulatory element binding protein, liver X receptors, AMPactivatedprotein kinase, peroxisome proliferator-activatedreceptor α, PPARg coactivator 1α and NF-κB pathway inthe liver were detected by western blot. The results of thisstudy demonstrated that the expression of GA can not onlysignificantly decrease the live weight and liver weight perbody weight of HFD mice, but also restore the alanine aminotransferase,aspartate aminotransferase, total bilirubinlevels, triglyceride and cholesterol in serum. In addition,the expression of GA increased the levels of high-densitylipoprotein cholesterol in serum, ameliorated pathologicalchanges and decreased NAS score of mice’s liver. In conclusion,the treatment with GA could improve NAFLD in ratsby regulating the levels of signaling events involved in freefatty acid production, lipid oxidation and liver inflammation.

      • SCIESCOPUSKCI등재

        Effects of Impeller Geometry on the 11α-Hydroxylation of Canrenone in Rushton Turbine-Stirred Tanks

        ( Shaofeng Rong ),( Xiaoqing Tang ),( Shimin Guan ),( Botao Zhang ),( Qianqian Li ),( Baoguo Cai ),( Juan Huang ) 한국미생물생명공학회(구 한국산업미생물학회) 2021 Journal of microbiology and biotechnology Vol.31 No.6

        The 11α-hydroxylation of canrenone can be catalyzed by Aspergillus ochraceus in bioreactors, where the geometry of the impeller greatly influences the biotransformation. In this study, the effects of the blade number and impeller diameter of a Rushton turbine on the 11α-hydroxylation of canrenone were considered. The results of fermentation experiments using a 50 mm four-blade impeller showed that 3.40% and 11.43% increases in the conversion ratio were achieved by increasing the blade number and impeller diameter, respectively. However, with an impeller diameter of 60 mm, the conversion ratio with a six-blade impeller was 14.42% lower than that with a four-blade impeller. Data from cold model experiments with a large-diameter six-blade impeller indicated that the serious leakage of inclusions and a 22.08% enzyme activity retention led to a low conversion ratio. Numerical simulations suggested that there was good gas distribution and high fluid flow velocity when the fluid was stirred by large-diameter impellers, resulting in a high dissolved oxygen content and good bulk circulation, which positively affected hyphal growth and metabolism. However, a large-diameter six-blade impeller created overly high shear compared to a large-diameter four-blade impeller, thereby decreasing the conversion ratio. The average shear rates of the former and latter cases were 43.25 s<sup>-1</sup> and 35.31 s<sup>-1</sup>, respectively. We therefore concluded that appropriate shear should be applied in the 11α-hydroxylation of canrenone. Overall, this study provides basic data for the scaled-up production of 11α-hydroxycanrenone.

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